malondialdehyde has been researched along with Burns in 144 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 6 (4.17) | 18.7374 |
1990's | 42 (29.17) | 18.2507 |
2000's | 55 (38.19) | 29.6817 |
2010's | 38 (26.39) | 24.3611 |
2020's | 3 (2.08) | 2.80 |
Authors | Studies |
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Alev, B; Emekli-Alturfan, E; Ipekci, H; Ozcan, O; Sen, A; Sener, G; Tunali-Akbay, T; Ustundag, UV; Yarat, A | 1 |
Boe, DM; Idrovo, JP; Kaahui, S; Kovacs, EJ; McMahan, RH; Walrath, T | 1 |
Savtekin, G; Sayiner, S; Şehirli, AÖ; Velioğlu-Öğünç, A | 1 |
Akhlaghi, M; Ayaz, M; Babajafari, S; Hojhabrimanesh, A; Jafari, P; Mazloomi, SM; Noorafshan, A | 1 |
Évora, PRB; Faria, FM; Farina, JA; Oliveira, CC; Rosique, MJ; Rosique, RG | 1 |
Bian, H; Duan, J; Li, W; Lin, R; Ma, T; Mu, F; Wei, G; Wen, A; Wu, X; Xi, M; Yang, Q | 1 |
Chen, XF; Hu, ZH; Huang, DB; Huang, J; Yu, ZF | 1 |
Demircan, M; Gözükara Bağ, H; Gürünlüoğlu, K; Taşçi, A; Türköz, Y; Üremiş, MM | 1 |
Chen, XL; Su, MX; Sun, CS; Sun, YX; Wang, CH; Wang, HY; Wang, Q; Wang, QC; Wu, XS; Yuan, CY | 1 |
Bellanfante, O; Chen, HZ; Chen, XL; Fang, H; Liu, S; Wang, F; Xu, ZD | 1 |
Akıncı, A; Bağ, HG; Bayrakçı, E; Demircan, M; Gürünlüoğlu, K; Taşçı, A; Türköz, Y; Üremiş, MM | 1 |
Ahmad, A; Herndon, DN; Szabo, C | 1 |
Ak, E; Akbay, TT; Alev, B; Alturfan, EE; Cetinel, S; Ipekci, H; Ozcan, O; Sen, A; Sener, G; Ustundag, UV; Yarat, A | 1 |
Chen, XL; Guo, F; Liang, X; Liu, S; Sun, L; Sun, YX; Wang, F; Wang, RS; Wang, YJ | 1 |
Jiang, HM; Li, WR; Tao, L; Wang, W; Yu, X; Zuo, L | 1 |
Chhibber, S; Gupta, P; Harjai, K | 1 |
Didenko, NV; Martucevich, AK; Peretiagin, SP; Solov'eva, AG | 1 |
Lazarenko, VA; Lyashev, YD; Shevchenko, NI | 1 |
Atabey, M; Deveci, K; Duger, C; Gökakın, AK; Sancakdar, E; Topcu, O; Tuzcu, M | 1 |
Ansari, NH; Ayadi, AE; Enkhbaatar, P; Finnerty, CC; Goswamy, J; Herndon, DN; Mifflin, R; Papaconstantinou, J; Sousse, L; Wang, CZ | 1 |
Chen, XL; Liu, S; Ren, HB; Sun, YX; Wang, C; Wang, F; Wang, RS; Wang, YJ; Zhou, B | 1 |
Chen, R; Wang, S; Wang, Z; Zhang, X; Zhu, Z | 1 |
Aykaç, A; Çetinel, Ş; Satılmış, B; Şehirli, AÖ; Şener, G; Tetik, Ş; Yeğen, B | 1 |
Ahmad, A; Herndon, DN; Olah, G; Szabo, C | 1 |
Chen, X; Jin, Q; Liu, DM; Sun, BW; Sun, Y; Sun, ZW | 1 |
Dong, HL; Qiao, L; Wang, WK; Xu, WS; Yang, HZ; Yuan, KJ | 1 |
Arikök, AT; Aydin, R; Gökakin, AK; Gömceli, I; Gülbahar, O; Gürer, A; Kulaçoğlu, H; Ozdoğan, M | 1 |
Gao, C; Huan, J; Li, W; Tang, J | 1 |
Csontos, C | 1 |
Bekyarova, G; Galunska, B; Ivanova, D; Yankova, T | 1 |
El-Din, AB; El-Hadidy, AM; Hassan, M; Sabry, A; Wafa, I | 1 |
Arbak, S; Düşünceli, F; Erzik, C; Işeri, SO; Uslu, B; Yeğen, BC | 1 |
El-Din, AB; El-Hadidy, AM; Hassan, M; Sabry, A | 1 |
Basaran, O; Belli, S; Haberal, M; Karabay, G; Karakayali, H; Kut, A; Ozdemir, BH; Türkoğlu, S | 1 |
Bekyarova, G; Hristova, M; Tancheva, S | 1 |
Enkhbaatar, P; Hamahata, A; Herndon, DN; Lange, M; Parkinson, JF; Rehberg, S; Saunders, F; Traber, DL; Traber, LD; Wang, J | 1 |
Kostina, OV; Peretiagin, SP | 1 |
Bogár, L; Csontos, C; Drenkovics, L; Ghosh, S; Lantos, J; Mühl, D; Varga, A; Wéber, G; Woth, G | 1 |
Chesnokova, NP; Ostrovskiĭ, NV; Polutova, NV; Romantsov, MG | 1 |
Bogar, L; Csontos, C; Drenkovics, L; Foldi, V; Lantos, J; Rezman, B; Röth, E; Weber, G | 1 |
Jiake, C; Ligen, L; Tongzhu, S; Yuhua, S | 1 |
Duru, FI; Fadeyibi, IO; Jewo, PI; Noronha, CC; Saalu, LC | 1 |
Gao, C; Peng, H; Wang, S; Zhang, X | 1 |
Cetinel, S; Cevik, O; Kaya, OT; Macit, C; Oba, R; Sener, E; Sener, G | 1 |
Gao, C; Liu, Y; Ma, L; Wang, S; Zhang, X | 1 |
Gao, C; Liu, Y; Ma, L; Wang, S | 1 |
Han, XH; Xu, L | 1 |
Deveci, K; Duger, C; Gokakin, AK; Karakus, BC; Kurt, A; Topcu, O; Tuzcu, M | 1 |
Almeida, JC; Cruz, RH; Lourenço, E; Oliveira-Júnior, IS; Ramallo, BT; Silva, PY; Taha, MO | 1 |
Keyer-Uysal, M; Satiroğlu, H; Sehirli, AO; Sener, G; Yeğen, BC | 1 |
Bairy, KL; Ghosh, A; Mallikarjuna Rao, C; Raghothama, C | 1 |
Cao, Y; Hu, Q; Li, G; Liu, Q; Wang, N; Wang, W; Wu, X; Zhang, Y; Zhong, X | 1 |
Ayanoglu-Dülger, G; Kaçmaz, A; Satiroglu, H; Sehirli, AO; Sener, G; Yegen, BC | 1 |
Cox, RA; Enkhbaatar, P; Hawkins, HK; Komjati, K; Mabley, JG; Murakami, K; Salzman, AL; Schmalstieg, FC; Shimoda, K; Szabo, C; Traber, DL; Traber, LD | 1 |
Wang, J; Yang, Z | 1 |
Chebotarev, VY; Churilova, IV; Paramonov, BA; Zinov'ev, EV | 1 |
Aksoy, A; Arslan, E; Bagdatoglu, O; Demirkan, F; Milcan, A; Polat, A; Polat, G; Unal, S | 1 |
Kaçmaz, A; Ozer Sehirli, A; Satýroğlu, H; Sener, G | 1 |
Chen, X; Qin, FJ; Sun, YH | 1 |
Cheng, S; Ding, HQ; Liu, L; Qin, FJ; Zhou, ZB | 1 |
Bekpinar, S; Cetinkale, O; Deniz, G; Kiran, B; Olgaç, V; Unlüçerçi, Y; Zilan, A | 1 |
Armutcu, F; Babucçu, O; Gürel, A; Hoşnuter, M; Işikdemir, A; Kargi, E | 1 |
Arbak, S; Güzel, E; Jahovic, N; Yeğen, BC | 1 |
Cetinel, S; Erkanli, G; Gedik, N; Sehirli, O; Sener, G; Yeğen, B | 1 |
Ding, YN; Li, G; Wu, BJ; Xing, H; Xu, JL; Yu, GF | 1 |
Avlan, D; Aydin, S; Camdeviren, H; Cinel, I; Dirlik, M; Ocal, K; Ozturk, C; Unlu, A; Yaylak, F | 1 |
Aksöyek, S; Avlan, D; Cinel, I; Cinel, L; Nayci, A; Oztürk, C; Taşkinlar, H; Unlü, A | 1 |
Altinyazar, C; Armutcu, F; Gurel, A; Hosnuter, M; Kargi, E; Unalacak, M | 1 |
Li, YJ; Luo, BD; Wang, Y; Xu, CX; Zhai, HM | 1 |
Akca, G; Aksoy, M; Arslan, M; Baltaci, B; Dikmen, B; Yagmurder, H; Yagmurdur, H | 1 |
Huang, YS; Li, XD; Zhang, DX; Zhao, ST | 1 |
Jin, SW; Liao, ZJ; Lu, SL; Shi, JX; Wang, ZY; Xiang, J; Yang, LY | 1 |
Cetinel, S; Contuk, G; Gedik, N; Kabasakal, L; Sener, G; Yeğen, BC | 2 |
Aksöyek, S; Avlan, D; Ayaz, L; Camdeviren, H; Nayci, A; Unlü, A | 1 |
Aksöyek, S; Avlan, D; Camdeviren, H; Ozturhan, H; Oztürk, C; Tamer, L; Taşkinlar, H | 1 |
Coskun, O; Gurel, A; Hosnuter, M; Kanter, M; Ocakci, A; Tumkaya, L; Uzun, L | 1 |
Li, GH; Wan, FS | 1 |
Arbak, S; Jahovic, N; Sener, G; Toklu, HZ; Uslu, B; Yeğen, BC | 1 |
Aksoy, M; Arslan, M; Baltaci, B; Yagmurdur, H | 1 |
Ercan, F; Erkanli, G; Gedik, N; Sehirli, O; Sener, G; Velioğlu-Oğünç, A; Yeğen, BC | 1 |
Koizumi, T; Sakaki, S; Shimazaki, S; Tanaka, H | 1 |
Dülger, GA; Gedik, N; Sehirli, AO; Sener, G | 1 |
Chen, Z; Li, A; Wang, S; Yu, B | 1 |
Hua, R; Huang, XH; Li, QH; Rong, XZ; Yang, RH; Zhang, T | 1 |
Bilgihan, A; Bozkurt, B; Cengiz, O; Dolapçi, I; Karabeyoğlu, I; Karabeyoğlu, M; Unal, B | 1 |
Alican, I; Ercan, F; Ersoy, Y; Gedik, N; Iseri, SO | 1 |
Han, XH; Wen, GQ; Xu, L | 1 |
Cetinel, S; Erzik, C; Sehirli, O; Sener, E; Sener, G; Yeğen, BC | 1 |
Kozel'skaia, LV; Lukoianova, TI | 1 |
Baxter, CR; Norton, SJ; Sabeh, F | 1 |
Chai, J; Guo, Z; Sheng, Z | 1 |
Matsuda, H; Ohta, S; Shimazaki, E; Shimazaki, S; Tanaka, H; Yukioka, T | 1 |
Bhargava, JS; Kumar, R; Sekhon, MS; Seth, RK | 1 |
Yagi, K | 1 |
Cheng, F; Cui, L; Yang, Z | 1 |
Guo, ZR; Sheng, ZY; Yang, HM | 1 |
Berger, M; Cavadini, C; Crozier, G; Guichardant, M; Valette-Talbi, L | 1 |
Yang, HM | 1 |
Campbell, C; Demling, R; Lalonde, C; Picard, L | 1 |
Bondarenko, TP; Datsenko, BM; Dikiĭ, IL; Shchur, VA | 1 |
Berger, MM; Chioléro, R | 1 |
Chen, Y; Ge, S; Huan, J | 1 |
Bekyarova, G; Kozarev, I; Yankov, D; Yankova, T | 1 |
Belce, A; Cetinkale, O; Gumustas, MK; Konukoglu, D; Senyuva, C; Tas, T | 1 |
Bekyarova, G; Kozarev, I; Yankova, T | 1 |
Chen, B; Su, Y; Tang, C | 1 |
Chen, HR; Ma, WX; Tan, Q; Wang, L | 1 |
Albrecht, S; Börner, J; Roesner, D; Zimmermann, T | 1 |
Ge, S; Liu, S; Zhu, S | 1 |
Chai, J; Guo, Z; Lu, J; Sheng, Z; Shi, Z; Sun, C; Yang, H | 1 |
Chen, FM; Crowther, RS; He, BB; Huang, YS; Li, A; Liu, XS; Yang, ZC | 1 |
Chen, FM; Crowther, RS; Huang, YS; Li, A; Yan, BG; Yang, JM; Yang, ZC | 1 |
Cetinkale, O; Kemerli, GD; Konukoğlu, D; Senel, O; Yazar, S | 1 |
Hu, J; Ren, L | 1 |
Jiang, M; Li, S; Zhang, Y | 1 |
Guo, S; Ma, E; Xie, Y | 1 |
Bernier, J; Garrel, DR; Jobin, N | 1 |
Bongiorno, A; D'Amelio, L; D'Arpa, D; D'Arpa, N; Livrea, MA; Masellis, M; Pintaudi, AM; Tesoriere, L | 1 |
Hong, JH; Kang, HK; Kang, JS; Kim, DK; Koh, HC; Lee, BH; Lee, CH; Om, AS; Shin, IC | 1 |
Chen, Y; He, W; Wang, T | 1 |
Dubick, MA; Goodwin, CW; Pruitt, BA; Tasaki, O | 1 |
Fang, P; Wang, S; Xu, W | 1 |
Chen, X; Cheng, S; Qin, F | 1 |
Chen, T; Fu, C; Wang, C; Wu, S; Zhang, D | 1 |
Demling, RH; Knox, J; LaLonde, C; Youn, YK | 1 |
Yang, ZC | 1 |
Daryani, R; Demling, R; Knox, J; LaLonde, C; Youn, YK; Zhu, D | 1 |
Meng, XM | 1 |
Bekiarova, G; Kozarev, I | 1 |
Daryani, R; Demling, RH; Knox, J; LaLonde, C; Neumann, M; Zhu, DG | 1 |
Barber, AE; Fahey, TJ; Jones, WG; Minei, JP; Shires, GT | 1 |
Li, CZ | 1 |
Demling, RH; LaLonde, C | 5 |
Chai, JK | 1 |
Demling, RH; LaLonde, C; Liu, YP; Zhu, DG | 1 |
Bekiarova, GI; Kagan, VG; Markova, MP | 1 |
Demling, RH; Lalonde, C; Zhu, D | 1 |
Baluda, VP; Iashvili, BP; Kozelskaya, LV; Lukhoyanova, TI; Staroselskaya, AN; Vakulenko, AD; Zyablitsky, VM | 1 |
Demling, RH; Jin, LJ; Katz, A; Lalonde, C; Ryan, P | 1 |
1 review(s) available for malondialdehyde and Burns
Article | Year |
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Lipid peroxides and related radicals in clinical medicine.
Topics: Animals; Biomarkers; Burns; Free Radicals; Humans; Lipid Peroxides; Malondialdehyde; Spectrometry, Fluorescence; Spectrophotometry; Thiobarbituric Acid Reactive Substances; Vascular Diseases | 1994 |
8 trial(s) available for malondialdehyde and Burns
Article | Year |
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The effect of isolated soy protein adjunctive with flaxseed oil on markers of inflammation, oxidative stress, acute phase proteins, and wound healing of burn patients; a randomized clinical trial.
Topics: Acute-Phase Proteins; Adolescent; Adult; Biomarkers; Burns; C-Reactive Protein; Dietary Supplements; Double-Blind Method; Female; Humans; Inflammation; Linseed Oil; Male; Malondialdehyde; Middle Aged; Oxidative Stress; Soybean Proteins; Superoxide Dismutase; Wound Healing; Young Adult | 2018 |
The Effects of Two Different Burn Dressings on Serum Oxidative Stress Indicators in Children with Partial Burn.
Topics: Anti-Infective Agents, Local; Burns; Child; Female; Glutathione; Humans; Male; Malondialdehyde; Membranes, Artificial; Oxidative Stress; Polyesters; Prospective Studies; Trauma Severity Indices; Wound Healing | 2019 |
[Positive effect of cytoflavin on metabolic status changes in patients with burn disorder].
Topics: Adult; Antioxidants; Burns; Case-Control Studies; Catalase; Drug Combinations; Female; Flavin Mononucleotide; Heat-Shock Response; Humans; Inosine Diphosphate; Lipid Peroxidation; Male; Malondialdehyde; Middle Aged; Niacinamide; Succinates; Superoxide Dismutase; Vitamin E | 2011 |
Effect of N-acetylcysteine treatment on oxidative stress and inflammation after severe burn.
Topics: Acetylcysteine; Adult; Aged; Antioxidants; Biomarkers; Burns; Catalase; Cytokines; Female; Free Radical Scavengers; Glutathione; Humans; Leukocyte Count; Male; Malondialdehyde; Middle Aged; Multiple Organ Failure; Oxidative Stress; Peroxidase; Prospective Studies; Superoxide Dismutase; Systemic Inflammatory Response Syndrome | 2012 |
A comparison study between early enteral nutrition and parenteral nutrition in severe burn patients.
Topics: Adult; Biomarkers; Burns; Endotoxins; Enteral Nutrition; Enzyme-Linked Immunosorbent Assay; Female; Gastrins; Humans; Lactulose; Male; Malondialdehyde; Mannitol; Motilin; Parenteral Nutrition; Skin; Superoxide Dismutase; Treatment Outcome; Tumor Necrosis Factor-alpha | 2007 |
[Effect of Soluvit on stress reaction and leucocyte function in serious burn patients in shock stage].
Topics: Adolescent; Adult; Aged; Burns; Chemotaxis, Leukocyte; Child; Female; Humans; Hydrocortisone; Leukocytes; Male; Malondialdehyde; Middle Aged; Phagocytosis; Shock, Traumatic; Vitamins; Young Adult | 2007 |
[Protective effects of vitamin E on impaired neutrophil phagocytic function in patients with severe burn].
Topics: Adolescent; Adult; Burns; Female; Free Radical Scavengers; Humans; Male; Malondialdehyde; Middle Aged; Neutrophils; Phagocytosis; Superoxide Dismutase; Vitamin E | 1995 |
Relations between copper, zinc and selenium intakes and malondialdehyde excretion after major burns.
Topics: Adult; Aged; Aged, 80 and over; Burns; Copper; Female; Glutathione Peroxidase; Humans; Lipid Peroxidation; Male; Malondialdehyde; Middle Aged; Prospective Studies; Selenium; Vitamins; Zinc | 1995 |
135 other study(ies) available for malondialdehyde and Burns
Article | Year |
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The effect of Myrtus communis L. ethanol extract on the small intestine and lungs in experimental thermal burn injury.
Topics: Animals; Antioxidants; Burns; Catalase; Glutathione; Intestine, Small; Lung; Malondialdehyde; Myrtus; Plant Extracts; Rats; Rats, Wistar; Superoxide Dismutase; Wound Healing | 2020 |
Advanced age heightens hepatic damage in a murine model of scald burn injury.
Topics: Age Factors; Alanine Transaminase; Animals; Aspartate Aminotransferases; Burns; Disease Models, Animal; Female; Glutathione; Lipid Peroxidation; Liver Diseases; Malondialdehyde; Mice | 2021 |
Protective effect of bromelain on corrosive burn in rats.
Topics: Animals; Antioxidants; Bromelains; Burns; Caustics; Esophagus; Glutathione; Interleukin-1beta; Malondialdehyde; Peroxidase; Rats; Rats, Wistar; Sodium Hydroxide; Tumor Necrosis Factor-alpha | 2021 |
Methylene blue reduces progression of burn and increases skin survival in an experimental rat model.
Topics: Animals; Antioxidants; Burns; Disease Models, Animal; Disease Progression; Injections, Intraperitoneal; Male; Malondialdehyde; Methylene Blue; Necrosis; Nitric Oxide; Oxidative Stress; Rats; Rats, Wistar; Skin; Wound Healing | 2017 |
Beneficial effects of extracts from Lucilia sericata maggots on burn wounds in rats.
Topics: Animals; Anti-Bacterial Agents; Anti-Inflammatory Agents; Burns; Chromones; Diptera; Disease Models, Animal; Escherichia coli; Hydroxyproline; Interleukin-6; Larva; Male; Malondialdehyde; Morpholines; NF-kappa B; Proto-Oncogene Proteins c-akt; Rats; Superoxide Dismutase; Tumor Necrosis Factor-alpha; Vascular Endothelial Growth Factor A; Wound Healing | 2017 |
[Effects of Coriaria Sinica Maxim's extract on microcirculation and oxidative stress of wounds in rats with deep second-degree burn].
Topics: Animals; Burns; Drugs, Chinese Herbal; Hydroxyproline; Malondialdehyde; Microcirculation; Oxidative Stress; Random Allocation; Rats; Superoxide Dismutase; Vascular Endothelial Growth Factor A; Wound Healing | 2018 |
Effects of high-voltage electrical burns and other burns on levels of serum oxidative stress and telomerase in children.
Topics: Adolescent; Amputation, Surgical; Antioxidants; Burns; Burns, Electric; Case-Control Studies; Child; Child, Preschool; Female; Glutathione; Humans; Infant; Male; Malondialdehyde; Oxidants; Oxidative Stress; Prospective Studies; Risk Assessment; Telomerase | 2018 |
Hypertonic saline resuscitation protects against kidney injury induced by severe burns in rats.
Topics: Acute Kidney Injury; Animals; Burns; Creatinine; Cystatin C; Edema; Fluid Therapy; HMGB1 Protein; Hyponatremia; Interleukin-1beta; Kidney; Malondialdehyde; Oxidative Stress; Random Allocation; Rats; Resuscitation; Ringer's Lactate; Saline Solution, Hypertonic; Sodium; Superoxide Dismutase; Tumor Necrosis Factor-alpha | 2019 |
Sodium butyrate inhibits the production of HMGB1 and attenuates severe burn plus delayed resuscitation-induced intestine injury via the p38 signaling pathway.
Topics: Amine Oxidase (Copper-Containing); Animals; Body Surface Area; Burns; Butyric Acid; Fatty Acid-Binding Proteins; Fluid Therapy; Histamine Antagonists; HMGB1 Protein; Ileum; Intercellular Adhesion Molecule-1; Malondialdehyde; MAP Kinase Signaling System; Oxidative Stress; Rats; Resuscitation; Ringer's Lactate | 2019 |
Oxandrolone protects against the development of multiorgan failure, modulates the systemic inflammatory response and promotes wound healing during burn injury.
Topics: Amylases; Anabolic Agents; Animals; Burns; Cytokines; Heart; Inflammation; Kidney; Liver; Lung; Malondialdehyde; Mice; Myocardium; Oxandrolone; Oxidative Stress; Pancreas; Peroxidase; Wound Healing | 2019 |
Protective effect of Myrtle (Myrtus communis) on burn induced skin injury.
Topics: Administration, Cutaneous; Administration, Oral; Animals; Antioxidants; Burns; Catalase; Glutathione; Malondialdehyde; Myrtus; Nitric Oxide; Oxidative Stress; Plant Extracts; Rats; Rats, Wistar; Skin; Superoxide Dismutase; Thromboplastin | 2019 |
Sodium butyrate protects against severe burn-induced remote acute lung injury in rats.
Topics: Acute Lung Injury; Animals; Bronchoalveolar Lavage Fluid; Burns; Butyric Acid; Female; Granulocyte Colony-Stimulating Factor; HMGB1 Protein; Inflammation; Interleukin-3; Interleukin-8; Lung; Malondialdehyde; Neutrophil Infiltration; Oxidative Stress; Peroxidase; Rats; Rats, Sprague-Dawley; Recombinant Fusion Proteins; Tumor Necrosis Factor-alpha | 2013 |
[Effects of low-dose insulin on oxidation-reduction in rat organs after major burns].
Topics: Animals; Blood Glucose; Burns; Disease Models, Animal; Heart; Insulin; Kidney; Male; Malondialdehyde; Myocardium; Oxidation-Reduction; Oxidative Stress; Rats; Rats, Sprague-Dawley; Superoxide Dismutase; Superoxide Dismutase-1 | 2013 |
Efficacy of purified lactonase and ciprofloxacin in preventing systemic spread of Pseudomonas aeruginosa in murine burn wound model.
Topics: Animals; Anti-Bacterial Agents; Burns; Chemokine CXCL2; Ciprofloxacin; Disease Models, Animal; Interleukin-10; Interleukin-6; Malondialdehyde; Metalloendopeptidases; Mice; Pseudomonas aeruginosa; Pseudomonas Infections; Quorum Sensing; Reactive Nitrogen Species; Virulence; Wound Infection | 2015 |
[System analysis of metabolic profile of blood in patients with thermal trauma].
Topics: Alanine Transaminase; alpha-Amylases; Aspartate Aminotransferases; Blood; Blood Glucose; Burns; Case-Control Studies; Creatine Kinase; Enzymes; Erythrocytes; Humans; Lactic Acid; Lipid Metabolism; Malondialdehyde; Predictive Value of Tests | 2014 |
Effect of a synthetic indolicidin analogue on lipid peroxidation in thermal burns.
Topics: Animals; Anti-Infective Agents; Antimicrobial Cationic Peptides; Antioxidants; Burns; Catalase; Injections, Intraperitoneal; Lipid Peroxidation; Male; Malondialdehyde; Rats; Rats, Wistar; Skin; Superoxide Dismutase | 2014 |
The effects of sildenafil in liver and kidney injury in a rat model of severe scald burn: a biochemical and histopathological study.
Topics: Animals; Burns; Female; Inflammation; Kidney; Lipid Peroxidation; Liver; Malondialdehyde; Models, Animal; Oxidative Stress; Random Allocation; Rats; Rats, Wistar; Sildenafil Citrate; Soft Tissue Injuries; Tumor Necrosis Factor-alpha; Vascular Endothelial Growth Factor A; Vasodilator Agents | 2014 |
Topically applied metal chelator reduces thermal injury progression in a rat model of brass comb burn.
Topics: Acrolein; Administration, Cutaneous; Aldehyde Dehydrogenase; Aldehyde Dehydrogenase 1 Family; Aldehyde Dehydrogenase, Mitochondrial; Aldehydes; Animals; Burns; Chelating Agents; Copper; Dimethyl Sulfoxide; Disease Models, Animal; Edetic Acid; Immunohistochemistry; Malondialdehyde; Mitochondrial Proteins; Oxidative Stress; Permeability; Rats; Retinal Dehydrogenase; Skin; Sulfones; Trauma Severity Indices; Zinc | 2015 |
Puerarin attenuates severe burn-induced acute myocardial injury in rats.
Topics: Animals; Burns; Creatine Kinase, MB Form; Heart; Inflammation; Isoflavones; Malondialdehyde; Myocardial Ischemia; Myocardium; Neutrophil Infiltration; Oxidative Stress; p38 Mitogen-Activated Protein Kinases; Peroxidase; Rats; Rats, Wistar; Trauma Severity Indices; Troponin T; Vasodilator Agents | 2015 |
Effects of insulin combined with ethyl pyruvate on inflammatory response and oxidative stress in multiple-organ dysfunction syndrome rats with severe burns.
Topics: Alanine Transaminase; Animals; Antioxidants; Blood Glucose; Burns; Creatine; Creatine Kinase; Drug Therapy, Combination; HMGB1 Protein; Hypoglycemic Agents; Inflammation; Insulin; Malondialdehyde; Multiple Organ Failure; Oxidative Stress; Pyruvates; Rats; Rats, Sprague-Dawley; Time Factors; Tumor Necrosis Factor-alpha | 2016 |
Protective effect of betaine against burn-induced pulmonary injury in rats.
Topics: Administration, Oral; Animals; Antioxidants; Betaine; Burns; Cytokines; Disease Models, Animal; Female; Glutathione; L-Lactate Dehydrogenase; Lung Injury; Male; Malondialdehyde; Peroxidase; Rats; Rats, Wistar; Sodium-Potassium-Exchanging ATPase | 2016 |
The clinically used PARP inhibitor olaparib improves organ function, suppresses inflammatory responses and accelerates wound healing in a murine model of third-degree burn injury.
Topics: Animals; Burns; Disease Models, Animal; Inflammation; Inflammation Mediators; Lung; Male; Malondialdehyde; Mice; Myocardium; Peroxidase; Phthalazines; Piperazines; Poly(ADP-ribose) Polymerase Inhibitors; Troponin T; Wound Healing | 2018 |
Suppression of inflammatory cytokine production and oxidative stress by CO-releasing molecules-liberated CO in the small intestine of thermally-injured mice.
Topics: Animals; Burns; Caco-2 Cells; Carbon Monoxide; Cells, Cultured; Cytokines; Humans; Intestine, Small; Male; Malondialdehyde; Mice; Mice, Inbred C57BL; Oxidative Stress; Reactive Oxygen Species | 2008 |
[Protective effect of lytic cocktail (inhibition of stress) on lung injury in severe burn rat].
Topics: Animals; Burns; Fluid Therapy; Interferon-gamma; Lung Injury; Malondialdehyde; Meperidine; Peroxidase; Random Allocation; Rats; Rats, Sprague-Dawley; Tumor Necrosis Factor-alpha | 2008 |
Tissue oxidative stress level and remote organ injury in two-hit trauma model of sequential burn injury and peritoneal sepsis are attenuated with N-acetylcysteine treatment in rats.
Topics: Acetylcysteine; Animals; Antioxidants; Burns; Cecum; Disease Models, Animal; Glutathione; Intestinal Perforation; Ligation; Liver; Lung; Male; Malondialdehyde; Oxidative Stress; Random Allocation; Rats; Rats, Wistar | 2009 |
Protective effects of ulinastatin on pancreatic and renal damage in rats following early scald injury.
Topics: Amylases; Animals; Blood Urea Nitrogen; Burns; Creatinine; Down-Regulation; Glycoproteins; Immunohistochemistry; Kidney; Male; Malondialdehyde; Oxidative Stress; Pancreas; Random Allocation; Rats; Superoxide Dismutase; Trypsin Inhibitors | 2009 |
[Hypovolemia and oxidative stress in patients with burn injuries].
Topics: Adolescent; Adult; Biomarkers; Blood Cell Count; Body Mass Index; Burns; Catalase; Clinical Protocols; Diuresis; Edema; Female; Fluid Therapy; Free Radical Scavengers; Glutathione; Hemoglobins; Humans; Hypovolemia; Injury Severity Score; Male; Malondialdehyde; Middle Aged; Multiple Organ Failure; Oxidative Stress; Peroxidase; Superoxide Dismutase; Time Factors; Young Adult | 2009 |
Effect of melatonin on burn-induced gastric mucosal injury in rats.
Topics: Animals; Antioxidants; Biomarkers; Burns; Drug Evaluation, Preclinical; Gastric Mucosa; Lipid Peroxidation; Male; Malondialdehyde; Melatonin; Rats; Sulfhydryl Compounds; Uric Acid | 2009 |
Early markers of renal injury in predicting outcome in thermal burn patients.
Topics: Acute Kidney Injury; Adolescent; Adult; Aged; Albuminuria; Blood Urea Nitrogen; Burns; Child; Female; Humans; Male; Malondialdehyde; Middle Aged; Oxidative Stress; Prognosis; Sodium; Young Adult | 2009 |
Oxytocin or social housing alleviates local burn injury in rats.
Topics: Animals; Apoptosis; Burns; DNA Fragmentation; Female; Housing, Animal; Ileal Diseases; Ileum; Intestinal Mucosa; Male; Malondialdehyde; Oxytocics; Oxytocin; Peroxidase; Rats; Rats, Sprague-Dawley; Skin; Social Environment; Tumor Necrosis Factor-alpha | 2010 |
Markers of tubular and glomerular injury in predicting acute renal injury outcome in thermal burn patients: a prospective study.
Topics: Acute Kidney Injury; Adolescent; Adult; Aged; Albuminuria; Biomarkers; Blood Urea Nitrogen; Burns; Chi-Square Distribution; Child; Cohort Studies; Creatinine; Female; Humans; Injury Severity Score; Kidney Function Tests; Kidney Glomerulus; Kidney Tubules; Male; Malondialdehyde; Middle Aged; Predictive Value of Tests; Probability; Prognosis; Prospective Studies; Regression Analysis; Renal Dialysis; Risk Assessment; Severity of Illness Index; Survival Analysis; Young Adult | 2009 |
Protective role of simvastatin on lung damage caused by burn and cotton smoke inhalation in rats.
Topics: Acute Lung Injury; Animals; Apoptosis; Burns; Cotton Fiber; Female; Hydroxymethylglutaryl-CoA Reductase Inhibitors; Lung; Malondialdehyde; Models, Animal; Nitric Oxide Synthase Type II; Peroxidase; Rats; Rats, Wistar; Simvastatin; Smoke Inhalation Injury | 2011 |
The effects of melatonin on burn-induced inflammatory responses and coagulation disorders in rats.
Topics: Animals; Blood Coagulation Disorders; Burns; C-Reactive Protein; Fibrinogen; Male; Malondialdehyde; Melatonin; Partial Thromboplastin Time; Platelet Aggregation; Rats | 2010 |
Mechanistic aspects of inducible nitric oxide synthase-induced lung injury in burn trauma.
Topics: Analysis of Variance; Animals; Burns; Disease Models, Animal; Female; Imidazoles; Immunohistochemistry; Interleukin-8; Lung; Malondialdehyde; NF-kappa B; Nitric Oxide Synthase Type II; Peroxidase; Piperazines; Pulmonary Gas Exchange; Pyrimidines; RNA, Messenger; Sheep; Smoke Inhalation Injury; Tyrosine | 2011 |
[The platelet hemostatic system and prooxidant and antioxidant potentials in the dynamics of burn disease].
Topics: Antioxidants; Body Surface Area; Burns; Hemostasis; Humans; Lipid Peroxidation; Malondialdehyde; Oxidative Stress; Platelet Count; Reactive Oxygen Species | 2011 |
Comparison of oxidative stress & leukocyte activation in patients with severe sepsis & burn injury.
Topics: Aged; Burns; Catalase; Cell Adhesion Molecules; Female; Glutathione; Granulocytes; Humans; Leukocytes; Male; Malondialdehyde; Middle Aged; Oxidative Stress; Peroxidase; Reactive Oxygen Species; Sepsis; Superoxide Dismutase; Systemic Inflammatory Response Syndrome | 2011 |
Effect of Poloxamer 188 on deepening of deep second-degree burn wounds in the early stage.
Topics: Animals; Burns; Immunohistochemistry; Injections, Intravenous; Malondialdehyde; Peroxidase; Poloxamer; Rats; Rats, Wistar; Sodium-Potassium-Exchanging ATPase; Succinate Dehydrogenase; Surface-Active Agents | 2012 |
The protective role of ascorbic acid in burn-induced testicular damage in rats.
Topics: Animals; Antioxidants; Ascorbic Acid; Burns; Catalase; Male; Malondialdehyde; Oxidative Stress; Rats; Rats, Wistar; Seminiferous Tubules; Sperm Motility; Spermatogenesis; Spermatozoa; Superoxide Dismutase; Testis; Testosterone | 2012 |
Effects of Ligustrazine on pancreatic and renal damage after scald injury.
Topics: Amylases; Analysis of Variance; Animals; Blood Urea Nitrogen; Burns; Creatinine; Histocompatibility Antigens Class I; Immunohistochemistry; Kidney; Male; Malondialdehyde; Models, Animal; Pancreas; Pyrazines; Rats; Rats, Inbred Lew; Superoxide Dismutase; Time Factors; Vasodilator Agents | 2012 |
Lycopene inhibits caspase-3 activity and reduces oxidative organ damage in a rat model of thermal injury.
Topics: Administration, Oral; Animals; Antioxidants; Biomarkers; Blotting, Western; Burns; Carotenoids; Caspase 3; Catalase; Cytokines; Disease Models, Animal; Female; Glutathione; Kidney Diseases; Lung Diseases; Lycopene; Male; Malondialdehyde; Oxidative Stress; Peroxidase; Rats; Rats, Sprague-Dawley; Superoxide Dismutase | 2012 |
Effects of Ligustrazine on pulmonary damage in rats following scald injury.
Topics: Acute Lung Injury; Animals; Anti-Inflammatory Agents, Non-Steroidal; Burns; Histocompatibility Antigens Class I; Immunohistochemistry; Lung; Male; Malondialdehyde; Proto-Oncogene Proteins c-bcl-2; Pyrazines; Random Allocation; Rats; Rats, Inbred Lew; Spleen; Superoxide Dismutase; Vasodilator Agents | 2012 |
Protective effects of ulinastatin on pulmonary damage in rats following scald injury.
Topics: Animals; Burns; Down-Regulation; Glycoproteins; Histocompatibility Antigens Class I; HLA-DR Antigens; Immunohistochemistry; Lung Injury; Male; Malondialdehyde; Proto-Oncogene Proteins c-bcl-2; Rats; Rats, Inbred Lew; Selectins; Superoxide Dismutase; Trypsin Inhibitors; Up-Regulation; Vascular Cell Adhesion Molecule-1 | 2012 |
[Protective effect of melatonin on myocardial injury in severely- burned rats].
Topics: Animals; Burns; Disease Models, Animal; Glutathione; Glutathione Peroxidase; Male; Malondialdehyde; Melatonin; Myocardium; Oxidative Stress; Peroxidase; Rats; Rats, Sprague-Dawley | 2012 |
The protective effects of sildenafil in acute lung injury in a rat model of severe scald burn: A biochemical and histopathological study.
Topics: Acute Lung Injury; Animals; Biomarkers; Burns; Catalase; Disease Models, Animal; Female; Glutathione Peroxidase; Malondialdehyde; Oxidative Stress; Phosphodiesterase 5 Inhibitors; Piperazines; Purines; Rats; Rats, Wistar; Sildenafil Citrate; Sulfones | 2013 |
A comparative study of pentoxifylline effects in adult and aged rats submitted to lung dysfunction by thermal injury.
Topics: Age Factors; Animals; Anti-Inflammatory Agents; Bronchoalveolar Lavage Fluid; Burns; Disease Models, Animal; Free Radical Scavengers; Inflammation Mediators; Lung Injury; Malondialdehyde; Oxidative Stress; Pentoxifylline; Peroxidase; Rats; Rats, Wistar; Tumor Necrosis Factor-alpha | 2013 |
Melatonin prevents oxidative kidney damage in a rat model of thermal injury.
Topics: Animals; Blood Urea Nitrogen; Burns; Creatinine; Female; Glutathione; Kidney; Male; Malondialdehyde; Melatonin; Oxidation-Reduction; Oxidative Stress; Peroxidase; Rats; Rats, Wistar; Reactive Oxygen Species; Skin | 2002 |
Does metronidazole reduce lipid peroxidation in burn injuries to promote healing?
Topics: Animals; Anti-Infective Agents; Antioxidants; Burns; Disease Models, Animal; Lipid Peroxidation; Male; Malondialdehyde; Metronidazole; Oxidative Stress; Rats; Rats, Wistar; Wound Healing | 2002 |
[An exploration of the preventive effects on lanthanum chloride on enteral bacterial translocation in scalded rats].
Topics: Animals; Burns; Endotoxins; Escherichia coli; Escherichia coli Infections; Female; Intestinal Mucosa; Intestines; Lanthanum; Lymph Nodes; Male; Malondialdehyde; Mesentery; Nitric Oxide; Nitric Oxide Synthase; Rats; Rats, Sprague-Dawley; Superoxide Dismutase | 2002 |
Octreotide improves burn-induced intestinal injury in the rat.
Topics: Animals; Burns; Female; Glutathione; Intestinal Mucosa; Intestines; Male; Malondialdehyde; Octreotide; Peroxidase; Rats; Rats, Wistar | 2003 |
Effect of poly(ADP ribose) synthetase inhibition on burn and smoke inhalation injury in sheep.
Topics: Airway Resistance; Animals; Blood Pressure; Burns; Extravascular Lung Water; Female; Hematocrit; Immunohistochemistry; Lung; Lymphatic System; Malondialdehyde; Nitric Oxide; Organ Size; Peroxidase; Poly(ADP-ribose) Polymerase Inhibitors; Pulmonary Circulation; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Sheep; Smoke Inhalation Injury; Urine | 2003 |
[An experimental study on the role of early postburn massive escharectomy on the prevention of internal organ dysfunction].
Topics: Adult; Animals; Burns; Cell Division; Cell Line; Cell Membrane Permeability; Culture Media, Conditioned; Dinoprostone; Endothelium, Vascular; Female; Humans; Interleukin-8; Lipopolysaccharides; Macrophages, Peritoneal; Male; Malondialdehyde; Multiple Organ Failure; Nitric Oxide; Phospholipases A; Random Allocation; Rats; Rats, Wistar; Time Factors; Tumor Necrosis Factor-alpha | 2002 |
Erysod, erythrocyte superoxide dismutase preparation: effects on LPO processes and morphological changes in the viscera of rats with burns under conditions of delayed antishock infusion therapy.
Topics: Animals; Antioxidants; Burns; Erythrocytes; Fluid Therapy; Lipid Peroxidation; Male; Malondialdehyde; Rats; Rats, Wistar; Shock; Superoxide Dismutase; Time Factors; Viscera | 2002 |
The effects of carnitine on distally-burned dorsal skin flap: an experimental study in rats.
Topics: Acetylcholinesterase; Animals; Burns; Carnitine; Ischemia; Malondialdehyde; Necrosis; Nitric Oxide; Rats; Rats, Sprague-Dawley; Skin | 2003 |
Protective effect of aqueous garlic extract against oxidative organ damage in a rat model of thermal injury.
Topics: Animals; Burns; Female; Free Radical Scavengers; Free Radicals; Garlic; Glutathione; Intestinal Mucosa; Intestines; Lipid Peroxidation; Liver; Male; Malondialdehyde; Oxidation-Reduction; Peroxidase; Plant Extracts; Proteins; Rats; Rats, Wistar | 2003 |
[An observation of the effects of Tiopronin on the oxygen free radicals in severely scalded rats receiving delayed fluid resuscitation].
Topics: Animals; Burns; Female; Male; Malondialdehyde; Oxidative Stress; Rats; Rats, Wistar; Reactive Oxygen Species; Superoxide Dismutase; Tiopronin | 2003 |
Effect of Zn7-metallothionein on oxidative stress in liver of rats with severe thermal injury.
Topics: alpha-Tocopherol; Animals; Antioxidants; Burns; Glutathione; Glutathione Peroxidase; Glutathione Reductase; Liver; Male; Malondialdehyde; Metallothionein; Oxidative Stress; Random Allocation; Rats; Rats, Wistar; Zinc | 2003 |
[The role of supplementation or inhibition of nitric oxide production in burn injury to reduce ischemic damage].
Topics: Animals; Arginine; Burns; Disease Models, Animal; Enzyme Inhibitors; Ischemia; Lipid Peroxidation; Lung; Lung Injury; Male; Malondialdehyde; Neutrophils; NG-Nitroarginine Methyl Ester; Nitric Oxide; Rats; Rats, Wistar; Tumor Necrosis Factor-alpha | 2003 |
The effect of CAPE on lipid peroxidation and nitric oxide levels in the plasma of rats following thermal injury.
Topics: Animals; Antioxidants; Burns; Caffeic Acids; Lipid Peroxidation; Male; Malondialdehyde; Nitric Oxide; Oxidative Stress; Phenylethyl Alcohol; Random Allocation; Rats; Rats, Wistar; Reactive Oxygen Species; Xanthine Oxidase | 2004 |
The healing-promoting effect of saliva on skin burn is mediated by epidermal growth factor (EGF): role of the neutrophils.
Topics: Animals; Burns; Epidermal Growth Factor; Female; Glutathione; Intestines; Liver; Male; Malondialdehyde; Neutrophils; Oxidants; Peroxidase; Rats; Rats, Wistar; Saliva; Skin; Wound Healing | 2004 |
2-Mercaptoethane sulfonate (MESNA) protects against burn-induced renal injury in rats.
Topics: Animals; Burns; Collagen; Female; Glutathione; Injections, Intraperitoneal; Kidney; Kidney Function Tests; Male; Malondialdehyde; Mesna; Oxidation-Reduction; Peroxidase; Protective Agents; Proteins; Rats; Rats, Wistar | 2004 |
[Therapeutic effect of infrared radiation on skin scald in rats].
Topics: Animals; Burns; Infrared Rays; Male; Malondialdehyde; Rats; Rats, Wistar | 2004 |
The effect of N-acetylcysteine on oxidative stress in intestine and bacterial translocation after thermal injury.
Topics: Acetylcysteine; Animals; Anti-Inflammatory Agents; Antioxidants; Bacterial Translocation; Burns; Colony Count, Microbial; Glutathione; Ileum; Liver; Lymph Nodes; Malondialdehyde; Mesentery; Oxidative Stress; Peroxidase; Rats; Rats, Wistar; Spleen | 2004 |
The role of poly(ADP-ribose) synthetase inhibition on the intestinal mucosal barrier after thermal injury.
Topics: Animals; Bacterial Translocation; Benzamides; Burns; Enzyme Inhibitors; Intestinal Mucosa; Intestine, Small; Liver; Lymph Nodes; Malondialdehyde; Mesentery; Poly(ADP-ribose) Polymerase Inhibitors; Random Allocation; Rats; Rats, Wistar; Spleen; Tyrosine | 2004 |
Caffeic acid phenethyl ester improves oxidative organ damage in rat model of thermal trauma.
Topics: Animals; Burns; Caffeic Acids; Disease Models, Animal; Injections, Intraperitoneal; Kidney Diseases; Lung Diseases; Male; Malondialdehyde; Multiple Organ Failure; Oxidoreductases; Phenylethyl Alcohol; Rats; Rats, Wistar; Treatment Outcome | 2004 |
[Effect of early nutritional support on plasma superoxide dismutase, malondialdehyde and nitric oxide in rats with burns in a hot and humid environment].
Topics: Animals; Burns; Climate; Hot Temperature; Humidity; Male; Malondialdehyde; Nitric Oxide; Nutritional Support; Rats; Rats, Wistar; Superoxide Dismutase; Time Factors | 2005 |
The effects of ketamine and propofol on bacterial translocation in rats after burn injury.
Topics: Analgesics; Anesthetics, Intravenous; Animals; Bacterial Translocation; Blood Pressure; Burns; Disease Models, Animal; Ileum; Ketamine; Lipid Peroxidation; Liver; Lymph Nodes; Male; Malondialdehyde; Mesentery; Propofol; Rats; Rats, Wistar; Spleen; Time Factors | 2005 |
[An experimental study on large fragment deletion of rat myocardial mitochondrial DNA during early postburn stage].
Topics: Animals; Burns; DNA, Mitochondrial; Female; Gene Deletion; Male; Malondialdehyde; Mitochondria, Heart; Myocardium; Rats; Rats, Sprague-Dawley; Superoxide Dismutase; Time Factors | 2004 |
[Influence of tangential excision within 24 postburn hours on the local wound inflammatory response in patients with deep partial thickness burn].
Topics: Adult; Burns; Female; Humans; Inflammation; Interleukin-8; Male; Malondialdehyde; Middle Aged; Peroxidase; Surgical Wound Infection; Wound Healing | 2005 |
Burn-induced oxidative injury of the gut is ameliorated by the leukotriene receptor blocker montelukast.
Topics: Acetates; Animals; Biomarkers; Burns; Cyclopropanes; Glutathione; Intestines; L-Lactate Dehydrogenase; Leukotriene Antagonists; Malondialdehyde; Neutrophils; Oxidative Stress; Quinolines; Rats; Rats, Wistar; Skin; Sulfides; Tumor Necrosis Factor-alpha | 2005 |
Poly (adp-ribose) synthetase inhibition reduces oxidative and nitrosative organ damage after thermal injury.
Topics: Animals; Benzamides; Burns; Lipid Peroxidation; Malondialdehyde; Peroxidase; Poly(ADP-ribose) Polymerase Inhibitors; Rats; Rats, Wistar | 2005 |
Leukotriene receptor blocker montelukast protects against burn-induced oxidative injury of the skin and remote organs.
Topics: Acetates; Animals; Blood Urea Nitrogen; Burns; Cyclopropanes; Enzymes; Female; Glutathione; Kidney; Leukotriene Antagonists; Liver; Lung; Male; Malondialdehyde; Neutrophils; Oxidative Stress; Quinolines; Rats; Rats, Wistar; Skin; Sulfides; Tumor Necrosis Factor-alpha | 2005 |
Protective effect of trapidil against oxidative organ damage in burn injury.
Topics: Animals; Burns; Lipid Peroxidation; Malondialdehyde; Oxidative Stress; Peroxidase; Peroxynitrous Acid; Protective Agents; Random Allocation; Rats; Rats, Wistar; Trapidil; Tumor Necrosis Factor-alpha; Tyrosine | 2005 |
Beneficial effects of Ebselen on corrosive esophageal burns of rats.
Topics: Analysis of Variance; Animals; Antioxidants; Azoles; Burns; Catalase; Esophagus; Fibrosis; Glutathione Peroxidase; Hydroxyproline; Isoindoles; Lipid Peroxidation; Male; Malondialdehyde; Organoselenium Compounds; Oxidative Stress; Random Allocation; Rats; Rats, Wistar; Superoxide Dismutase; Treatment Outcome | 2006 |
[Protective effects of taurine on myocardial injury in severely burned rats].
Topics: Angiotensin II; Animals; Burns; Calcium; Disease Models, Animal; Female; Male; Malondialdehyde; Myocardium; Rats; Rats, Wistar; Taurine; Troponin T; Tumor Necrosis Factor-alpha | 2005 |
beta-glucan protects against burn-induced oxidative organ damage in rats.
Topics: Animals; beta-Glucans; Burns; Female; Glutathione; Lipid Peroxidation; Male; Malondialdehyde; Oxidative Stress; Peroxidase; Rats; Tissue Distribution; Tumor Necrosis Factor-alpha | 2006 |
The effects of propofol and ketamine on gut mucosal epithelial apoptosis in rats after burn injury.
Topics: Animals; Apoptosis; Burns; Epithelial Cells; Intestinal Mucosa; Ketamine; Male; Malondialdehyde; Propofol; Rats; Rats, Wistar; Tumor Necrosis Factor-alpha | 2007 |
Propylthiouracil (PTU)-induced hypothyroidism alleviates burn-induced multiple organ injury.
Topics: Animals; Antithyroid Agents; Burns; Collagen; Enzymes; Female; Glutathione; Hypothyroidism; Male; Malondialdehyde; Multiple Trauma; Propylthiouracil; Rats; Tumor Necrosis Factor-alpha | 2006 |
The therapeutic efficacy of edaravone in extensively burned rats.
Topics: Animals; Antipyrine; Burns; Disease Models, Animal; Edaravone; Free Radical Scavengers; Free Radicals; Lung; Male; Malondialdehyde; Prospective Studies; Random Allocation; Rats; Rats, Wistar; Xanthine Oxidase | 2006 |
Rosiglitazone, a PPAR-gamma ligand, protects against burn-induced oxidative injury of remote organs.
Topics: Alanine Transaminase; Animals; Aspartate Aminotransferases; Burns; Female; Hypoglycemic Agents; Interleukin-1beta; Kidney Diseases; L-Lactate Dehydrogenase; Liver Diseases; Male; Malondialdehyde; Oxidative Stress; Peroxidase; Rats; Rats, Wistar; Rosiglitazone; Thiazolidinediones; Tumor Necrosis Factor-alpha; Urea | 2007 |
The effect of ethyl pyruvate on oxidative stress in intestine and bacterial translocation after thermal injury.
Topics: Animals; Bacterial Translocation; Burns; Intestinal Mucosa; Intestines; Liver; Lymph Nodes; Malondialdehyde; Oxidative Stress; Peroxidase; Pyruvates; Rats; Rats, Wistar; Reperfusion Injury; Spleen | 2008 |
Protective role of adrenomedullin in burn-induced remote organ damage in the rat.
Topics: Adrenomedullin; Animals; Burns; Disease Models, Animal; Kidney; Liver; Lung; Malondialdehyde; Peroxidase; Rats; Rats, Sprague-Dawley; Tumor Necrosis Factor-alpha | 2008 |
[Protective effect of melatonin against renal dysfunction following severe burn in rats].
Topics: Animals; Antioxidants; Blood Urea Nitrogen; Burns; Creatinine; Disease Models, Animal; Glutathione; Glutathione Peroxidase; Kidney; Male; Malondialdehyde; Melatonin; Oxidative Stress; Peroxidase; Random Allocation; Rats; Rats, Sprague-Dawley | 2007 |
Ghrelin improves burn-induced multiple organ injury by depressing neutrophil infiltration and the release of pro-inflammatory cytokines.
Topics: Animals; Burns; Cytokines; Drug Evaluation, Preclinical; Female; Ghrelin; Glutathione; L-Lactate Dehydrogenase; Lipid Peroxidation; Male; Malondialdehyde; Multiple Trauma; Neutrophil Infiltration; Peroxidase; Rats; Rats, Wistar; Sodium-Potassium-Exchanging ATPase | 2008 |
[Functional damage of blood vessels and intravascular platelet aggregation in burns].
Topics: Animals; Aorta, Abdominal; Blood Platelets; Burns; Endothelium; Epoprostenol; Male; Malondialdehyde; Platelet Aggregation; Rats; Rats, Inbred Strains | 1983 |
Skin burn injury and oxidative stress in liver and lung tissues of rabbit models.
Topics: Animals; Burns; Disease Models, Animal; Glutathione; Glutathione Peroxidase; Glutathione Reductase; Glutathione Transferase; Lipid Peroxides; Liver; Lung; Malondialdehyde; Oxidation-Reduction; Oxidative Stress; Rabbits; Reactive Oxygen Species; Skin | 1995 |
Effects of the antiprotease ulinastatin on mortality and oxidant injury in scalded rats.
Topics: Animals; Body Water; Burns; Glycoproteins; Lactates; Malondialdehyde; Oxidative Stress; Pyruvates; Pyruvic Acid; Rats; Rats, Wistar; Skin; Superoxide Dismutase; Trypsin Inhibitors | 1995 |
Serum lipid peroxide and other enzyme levels of patients suffering from thermal injury.
Topics: Adult; Aged; Alanine Transaminase; Alkaline Phosphatase; Aspartate Aminotransferases; Burns; Case-Control Studies; Humans; Injury Severity Score; Lipid Peroxides; Malondialdehyde; Middle Aged; Time Factors | 1995 |
[Changes in the contents of plasma SOD and MDA in 50% III degree burn dogs after delayed fluid replacement].
Topics: Animals; Burns; Dogs; Fluid Therapy; Male; Malondialdehyde; Superoxide Dismutase; Time Factors | 1994 |
[Delayed fluid resuscitation induced bacterial translocation after lethal thermal injury: role of oxygen free radical injury of intestinal mucosa].
Topics: Amine Oxidase (Copper-Containing); Animals; Burns; Endotoxins; Female; Fluid Therapy; Free Radicals; Intestinal Mucosa; Male; Malondialdehyde; Rats; Rats, Wistar; Superoxide Dismutase; Time Factors | 1994 |
Malondialdehyde measurement in urine.
Topics: Burns; Chromatography, High Pressure Liquid; Humans; Indicators and Reagents; Malondialdehyde; Spectrometry, Fluorescence; Spectrophotometry, Ultraviolet; Thiobarbituric Acid Reactive Substances | 1994 |
[Oxygen free radical injury after delayed fluid resuscitation in burn patients].
Topics: Adolescent; Adult; Burns; Female; Fluid Therapy; Free Radicals; Humans; Male; Malondialdehyde; Middle Aged; Multiple Organ Failure; Prospective Studies; Shock, Traumatic; Superoxide Dismutase; Time Factors | 1993 |
Relationship of burn-induced lung lipid peroxidation on the degree of injury after smoke inhalation and a body burn.
Topics: Animals; Blood Gas Analysis; Body Surface Area; Bronchi; Burns; Burns, Inhalation; Carboxyhemoglobin; Catalase; Disease Models, Animal; Female; Hemodynamics; Injury Severity Score; Lipid Peroxidation; Malondialdehyde; Mucous Membrane; Oxygen; Sheep; Trachea | 1993 |
[Effect of some drugs on the intensity of lipid peroxidation in surrounding tissues in the local treatment of suppuration].
Topics: Animals; Anti-Infective Agents; Anti-Infective Agents, Local; Burns; Drug Carriers; Drug Therapy, Combination; Gentamicins; Lipid Peroxidation; Liposomes; Male; Malondialdehyde; Models, Biological; Organic Chemicals; Random Allocation; Rats; Suppuration; Tissue Extracts | 1993 |
[Changes in myocardial ATPase activity and Ca2+ content in burned rats].
Topics: Adenosine Triphosphatases; Animals; Biological Transport, Active; Burns; Calcium; Malondialdehyde; Myocardium; Rats; Rats, Sprague-Dawley | 1995 |
Reduced erythrocyte deformability related to activated lipid peroxidation during the early postburn period.
Topics: Analysis of Variance; Animals; Burns; Erythrocyte Deformability; Erythrocyte Membrane; Glucosephosphate Dehydrogenase; Lipid Peroxidation; Male; Malondialdehyde; Rats; Rats, Wistar; Superoxide Dismutase; Thiobarbiturates; Vitamin E | 1996 |
Evaluation of lipid peroxidation and total antioxidant status in plasma of rats following thermal injury.
Topics: Animals; Antioxidants; Burns; Disease Models, Animal; Evaluation Studies as Topic; Free Radicals; Lipid Peroxidation; Male; Malondialdehyde; Rats; Rats, Wistar; Reference Values; Superoxide Dismutase | 1997 |
Suppressive effect of FC-43 perfluorocarbon emulsion on enhanced oxidative haemolysis in the early postburn phase.
Topics: Animals; Burns; Disease Models, Animal; Erythrocytes; Fluorocarbons; Free Radicals; Glutathione; Hemolysis; Lipid Peroxidation; Male; Malondialdehyde; Oxidation-Reduction; Rats; Rats, Wistar; Reference Values; Vitamin E | 1997 |
[Protective effect of ATP-MgCl2 on gut mucosa in burn rat].
Topics: Adenosine Triphosphate; Animals; Burns; Ileum; Intestinal Mucosa; Magnesium Chloride; Male; Malondialdehyde; Rats; Rats, Sprague-Dawley | 1996 |
Can superoxide dismutase prevent postburn dermal ischemia?
Topics: Animals; Biopsy; Burns; Carbon; Coloring Agents; Disease Models, Animal; Guinea Pigs; Injections, Intraperitoneal; Ischemia; Malondialdehyde; Microcirculation; Microscopy, Electron; Random Allocation; Skin; Spectrometry, Fluorescence; Superoxide Dismutase | 1997 |
[Selenium administration in severe inflammatory surgical diseases and burns in childhood].
Topics: Adolescent; Antioxidants; Burns; Child; Child, Preschool; Female; Glutathione Peroxidase; Humans; Infant; Lipid Peroxidation; Male; Malondialdehyde; Reactive Oxygen Species; Sodium Selenite; Systemic Inflammatory Response Syndrome | 1997 |
[Effects of hypertonic sodium lactate dextran resuscitation in severely burned dogs].
Topics: Animals; Burns; Dextrans; Dogs; Malondialdehyde; Saline Solution, Hypertonic; Shock, Traumatic; Superoxide Dismutase | 1996 |
Oxygen free radical injury and its relation to bacterial and endotoxin translocation after delayed fluid resuscitation: clinical and experimental study.
Topics: Adolescent; Adult; Animals; Bacterial Translocation; Burns; Endotoxemia; Female; Fluid Therapy; Free Radicals; Humans; Intestinal Mucosa; Male; Malondialdehyde; Middle Aged; Oxygen; Rats; Rats, Wistar; Superoxide Dismutase; Time Factors | 1997 |
Serial experimental and clinical studies on the pathogenesis of multiple organ dysfunction syndrome (MODS) in severe burns.
Topics: 6-Ketoprostaglandin F1 alpha; Adenosine Diphosphate; Adenosine Triphosphate; Adult; Animals; Body Water; Burns; Central Nervous System Agents; Dinoprostone; Dogs; Female; Fluid Therapy; Ginsenosides; Hemodynamics; Humans; Hypnotics and Sedatives; Interleukin-1; Male; Malondialdehyde; Mitochondria; Multiple Organ Failure; Oxygen Consumption; Panax; Plants, Medicinal; Platelet Aggregation; Random Allocation; Reperfusion Injury; Saponins; Sepsis; Shock; Succinate Dehydrogenase; Superoxide Dismutase; Syndrome; Systemic Inflammatory Response Syndrome; Thromboxane B2; Tumor Necrosis Factor-alpha | 1998 |
Pathogenesis of early cardiac myocyte damage after severe burns.
Topics: Animals; Biomarkers; Burns; Creatine Kinase; Disease Models, Animal; Endothelin-1; Heart Diseases; Inflammation; Male; Malondialdehyde; Myocardium; Myosin-Light-Chain Kinase; Nitric Oxide; Rats; Rats, Wistar; Superoxide Dismutase; Time Factors; Troponin T; Tumor Necrosis Factor-alpha | 1999 |
Modulating the functions of neutrophils and lipid peroxidation by FK506 in a rat model of thermal injury.
Topics: Animals; Biomarkers; Burns; Cell Migration Inhibition; Disease Models, Animal; Follow-Up Studies; Immunosuppressive Agents; Intestinal Mucosa; Kidney; Lipid Peroxidation; Liver; Lung; Male; Malondialdehyde; Neutrophils; Peroxidase; Rats; Rats, Wistar; Tacrolimus | 1999 |
[Experimental study of the effect of danshen on the viability of burned skin].
Topics: Animals; Burns; Drug Combinations; Drugs, Chinese Herbal; Female; Male; Malondialdehyde; Phenanthrolines; Plant Extracts; Rabbits; Random Allocation; Salvia miltiorrhiza; Skin; Succinate Dehydrogenase; Wound Healing | 1998 |
[Effects of endogenous beta-adrenoceptor agonist on lung edema in scalded rats].
Topics: Adrenergic beta-Agonists; Adrenergic beta-Antagonists; Animals; Bronchoalveolar Lavage Fluid; Burns; Male; Malondialdehyde; Propranolol; Pulmonary Edema; Rats; Rats, Sprague-Dawley | 1997 |
[The relationship between immunosuppression and oxygen free radicals in burned patients].
Topics: Adult; Antioxidants; Burns; Female; Free Radicals; Humans; Immunosuppression Therapy; Interleukin-2; Leukocytes, Mononuclear; Male; Malondialdehyde; Middle Aged; Receptors, Interleukin-2; Vitamin E | 1998 |
Increased burn-induced immunosuppression in lipopolysaccharide-resistant mice.
Topics: Analgesics, Opioid; Animals; Buprenorphine; Burns; CD4-Positive T-Lymphocytes; CD8-Positive T-Lymphocytes; Cell Division; Cells, Cultured; Drug Resistance; Eating; Female; Immunophenotyping; Lipopolysaccharides; Malondialdehyde; Mice; Mice, Inbred C3H; Oxidative Stress; Spleen; Sulfhydryl Compounds; Weight Gain | 2000 |
Oxidative stress after moderate to extensive burning in humans.
Topics: Adolescent; Adult; Aged; Alanine Transaminase; Aspartate Aminotransferases; beta Carotene; Burns; Child; Cholesterol; Erythrocyte Count; Erythrocytes; Humans; Lipid Peroxidation; Lipid Peroxides; Liver; Malondialdehyde; Middle Aged; Oxidative Stress; Time Factors; Vitamin A; Vitamin E | 2000 |
Urinary N-acetyl-beta-D-glucosaminidase and malondialdehyde as a markers of renal damage in burned patients.
Topics: Acetylglucosaminidase; Acute Kidney Injury; Adult; Aged; Albuminuria; Biomarkers; Burns; Female; Humans; Kidney Diseases; Lipid Peroxidation; Male; Malondialdehyde; Middle Aged | 2001 |
[Effects of nitric oxide (NO) on the cardiac function in severely scalded rats].
Topics: Animals; Arginine; Blood Pressure; Burns; Calcium; Drug Synergism; Heart; Male; Malondialdehyde; Myocardium; NG-Nitroarginine Methyl Ester; Nitric Oxide; Rats; Rats, Sprague-Dawley; Systole; Time Factors; Ventricular Function, Left | 2001 |
Effects of burns on inhalation injury in sheep: a 5-day study.
Topics: Analysis of Variance; Animals; Burns; Female; Fluid Therapy; Hemodynamics; Malondialdehyde; Sheep; Smoke Inhalation Injury; Time Factors | 2002 |
[The role of PMNs in early progressive injury of deep partial-thickness burn wound].
Topics: Animals; Burns; Collagen; Female; Male; Malondialdehyde; Necrosis; Neutrophils; Peroxidase; Rats; Rats, Sprague-Dawley; Vimentin | 2000 |
[The protective effects of Zn-metallothionein on severely scalded rats inflicted by oxygen free radicals].
Topics: Alanine Transaminase; Animals; Ascorbic Acid; Aspartate Aminotransferases; Blood Urea Nitrogen; Body Fluids; Burns; Creatine Kinase; Creatine Kinase, MB Form; Female; Hydroxybutyrate Dehydrogenase; Isoenzymes; L-Lactate Dehydrogenase; Male; Malondialdehyde; Metallothionein; Rats; Rats, Wistar; Reactive Oxygen Species; Superoxide Dismutase; Time Factors | 2001 |
Effect of helium-neon laser irradiation on serum lipid peroxide concentrations in burnt mice.
Topics: Animals; Burns; Evaluation Studies as Topic; Female; Laser Therapy; Lipid Peroxides; Malondialdehyde; Mice; Random Allocation; Wound Healing | 1992 |
Oxygen consumption early postburn becomes oxygen delivery dependent with the addition of smoke inhalation injury.
Topics: Animals; Burns; Capillary Permeability; Carboxyhemoglobin; Extravascular Lung Water; Female; Hemodynamics; Lung; Malondialdehyde; Oxygen; Oxygen Consumption; Sheep; Smoke Inhalation Injury; Trachea | 1992 |
[Clinical study of the pathogeneses of multiple organ failure after burns].
Topics: 6-Ketoprostaglandin F1 alpha; Adult; Burns; Female; Humans; Male; Malondialdehyde; Multiple Organ Failure; Shock, Traumatic; Superoxide Dismutase; Thromboxane B2; Xanthine Oxidase | 1992 |
Fluid resuscitation with deferoxamine prevents systemic burn-induced oxidant injury.
Topics: Animals; Burns; Deferoxamine; Edema; Fluid Therapy; Hydroxides; Hydroxyethyl Starch Derivatives; Isotonic Solutions; Lipid Peroxidation; Liver; Lung; Malondialdehyde; Oxygen; Oxygen Consumption; Ringer's Lactate; Sheep | 1991 |
[Mechanism of damage to erythrocytes after burn injury in rat--changes in lipid peroxidation, antioxidant function and sulfhydryl groups].
Topics: Animals; Burns; Erythrocytes; Free Radicals; Glucosephosphate Dehydrogenase; Glutathione Peroxidase; Lipid Peroxidation; Male; Malondialdehyde; Oxidation-Reduction; Rats; Sulfhydryl Compounds | 1991 |
[The correlation between the activity of free-radical peroxidation and erythrocyte hemolysis in experimental thermal trauma].
Topics: Animals; Burns; Erythrocytes; Hemolysis; Male; Malondialdehyde; Oxidation-Reduction; Rats; Rats, Inbred Strains; Schiff Bases; Time Factors; Vitamin E | 1991 |
Topical flurbiprofen decreases burn wound-induced hypermetabolism and systemic lipid peroxidation.
Topics: Administration, Cutaneous; Animals; Body Surface Area; Burns; Female; Flurbiprofen; Lipid Peroxidation; Liver; Lung; Malondialdehyde; Sheep | 1991 |
Differential pathophysiology of bacterial translocation after thermal injury and sepsis.
Topics: Animals; Biopsy; Body Water; Body Weight; Burns; Cell Membrane Permeability; Disease Models, Animal; Enterobacteriaceae; Gastrointestinal Diseases; Ileum; Intestinal Absorption; Ischemia; Lipid Peroxidation; Male; Malondialdehyde; Organ Size; Pseudomonas Infections; Rats; Rats, Inbred Strains; Sepsis | 1991 |
[Peroxidation of the small intestine and its effect on absorption of amino acids in burned rats].
Topics: Animals; Burns; Female; Intestinal Absorption; Intestine, Small; Leucine; Lipid Peroxidation; Male; Malondialdehyde; Rats; Rats, Inbred Strains; Sodium-Potassium-Exchanging ATPase; Superoxide Dismutase | 1990 |
Effect of a body burn on endotoxin-induced lipid peroxidation: comparison with physiologic and histologic changes.
Topics: Animals; Burns; Endotoxins; Escherichia coli; Lipid Peroxides; Liver; Lung; Lymph; Malondialdehyde | 1990 |
Identification and modifications of the pulmonary and systemic inflammatory and biochemical changes caused by a skin burn.
Topics: Allopurinol; Animals; Burns; Deferoxamine; Hemodynamics; Ibuprofen; Lipid Peroxidation; Liver; Lung; Malondialdehyde; Sheep | 1990 |
[Therapeutic effect of antioxidant on impaired neutrophil function after burns].
Topics: Animals; Antioxidants; Burns; Male; Malondialdehyde; Neutrophils; Phagocytosis; Rabbits; Superoxide Dismutase; Vitamin E | 1990 |
Systemic lipid peroxidation and inflammation induced by thermal injury persists into the post-resuscitation period.
Topics: 6-Ketoprostaglandin F1 alpha; Animals; Burns; Inflammation; Lipid Peroxidation; Liver; Lung; Malondialdehyde; Oxygen Consumption; Pneumonia; Sheep; Thromboxane B2; Time Factors | 1990 |
Early postburn lipid peroxidation: effect of ibuprofen and allopurinol.
Topics: Allopurinol; Animals; Burns; Disease Models, Animal; Edema; Ibuprofen; Inflammation; Lipid Peroxidation; Liver; Lung; Malondialdehyde; Neutrophils; Oxygen Consumption; Reference Values; Sheep | 1990 |
Early burn excision attenuates the postburn lung and systemic response to endotoxin.
Topics: Animals; Bacterial Toxins; Blood Pressure; Burns; Capillary Permeability; Cardiac Output; Lipid Peroxidation; Lung; Malondialdehyde; Oxygen Consumption; Pulmonary Artery; Sheep; Time Factors | 1990 |
The lung inflammatory response to thermal injury: relationship between physiologic and histologic changes.
Topics: Animals; Blood Pressure; Blood Proteins; Burns; Carbon Dioxide; Cardiac Output; Epoprostenol; Hemodynamics; Inflammation; Lung; Lymph; Malondialdehyde; Oxygen; Partial Pressure; Reference Values; Sheep; Thromboxane B2 | 1989 |
[Alpha-tocopherol protection of erythrocytes from hemolysis induced by thermal injury].
Topics: Animals; Burns; Drug Evaluation, Preclinical; Erythrocyte Membrane; Hemolysis; Lipid Peroxidation; Male; Malondialdehyde; Oleic Acids; Phospholipases A; Phospholipids; Rats; Rats, Inbred Strains; Vitamin E | 1989 |
Early pulmonary and hemodynamic effects of a chest wall burn (effect of ibuprofen).
Topics: Animals; Burns; Cardiac Output; Central Venous Pressure; Fluid Therapy; Hemodynamics; Humans; Ibuprofen; Lung; Lung Compliance; Malondialdehyde; Pulmonary Wedge Pressure; Sheep; Thoracic Injuries | 1988 |
Drug treatment of changes in platelet-vessel wall interactions in burned rats.
Topics: Animals; Blood Platelets; Blood Vessels; Burns; Female; Guinea Pigs; Male; Malondialdehyde; Mesenteric Veins; Platelet Aggregation; Rats; Rats, Inbred Strains; Time Factors | 1986 |
The immediate effect of burn wound excision on pulmonary function in sheep: the role of prostanoids, oxygen radicals, and chemoattractants.
Topics: 6-Ketoprostaglandin F1 alpha; Anesthesia; Animals; Burns; Chemotactic Factors; Disease Models, Animal; Lung; Lung Compliance; Lymph; Malondialdehyde; Oxygen; Prostaglandins; Pulmonary Wedge Pressure; Sheep; Thromboxane B2; Vascular Resistance | 1987 |