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histamine and Injury, Ischemia-Reperfusion

histamine has been researched along with Injury, Ischemia-Reperfusion in 52 studies

Research Excerpts

ExcerptRelevanceReference
"Microdialysis was used to study how ischemia-evoked gastric mucosal injury affects rat stomach histamine, which resides in enterochromaffin-like (ECL) cells and mast cells."7.73Ischemia of rat stomach mobilizes ECL cell histamine. ( Bernsand, M; Haenuki, Y; Håkanson, R; Hasegawa, J; Kishimoto, Y; Kitano, M; Kudo, M; Norlén, P, 2005)
"A(3) adenosine receptor (AR) activation and inhibition worsen and improve, respectively, renal function after ischemia-reperfusion (I/R) injury in rats."7.72A3 adenosine receptor knockout mice are protected against ischemia- and myoglobinuria-induced renal failure. ( D'Agati, VD; Emala, CW; Jacobson, MA; Lee, HT; Ota-Setlik, A; Xu, H, 2003)
"Ranitidine significantly increased, while histamine significantly decreased survival following renal ischemia."7.72Effects of histamine and the h2 receptor antagonist ranitidine on ischemia-induced acute renal failure: involvement of IL-6 and vascular endothelial growth factor. ( Fekete, A; Müller, V; Reusz, G; Strehlau, J; Szabó, AJ; Tulassay, T; Vannay, A; Veres, T; Viklicky, O, 2004)
"We studied changes in arteriolar and venular diameters and macromolecular leakage altered by ischemia/reperfusion (I/R) and topically applied histamine after I/R and how these changes were modulated by cromakalim (KATP-channel opener) and glibenclamide (KATP-channel blocker)."7.71Effects of cromakalim and glibenclamide on arteriolar and venular diameters and macromolecular leakage in the microcirculation during ischemia/reperfusion. ( Bouskela, E; Simões, C; Svensjö, E, 2002)
"This study aimed to examine the relationship between a harmful effect of histamine and apoptosis following ischemia-reperfusion in the rat intestine."7.70Histaminergic effect on apoptosis of rat small intestinal mucosa after ischemia-reperfusion. ( Fujimoto, K; Fukuyama, K; Iwakiri, R; Kojima, M; Noda, T; Okamoto, K; Yoshida, T, 2000)
"Recent studies have demonstrated a connection between xanthine oxidase-generated reactive oxygen intermediates and histamine release during ischemia-reperfusion."7.68Studies on the relationship between xanthine oxidase and histamine release during intestinal ischemia-reperfusion. ( Bakó, L; Boros, M; Kaszaki, J; Nagy, S, 1992)
"Thirty-two Sprague-Dawley (SD) rats were randomly divided into four groups: sham group (group S), model group (group M), high and low dosage of CS groups, (treated with CS 50 mg/kg or 25 mg/kg, group C1 and C2)."5.34Pretreatment of cromolyn sodium prior to reperfusion attenuates early reperfusion injury after the small intestine ischemia in rats. ( Cai, J; Gan, XL; Hei, ZQ; Li, SR; Luo, GJ, 2007)
"Acute mesenteric ischemia is highly lethal and therefore a serious problem for surgery and intensive care medicine; accordingly its pathophysiology warrants further study."5.28Oxygen free radical-induced histamine release during intestinal ischemia and reperfusion. ( Boros, M; Kaszaki, J; Nagy, S, 1989)
"This review provides an update on histamine, on diamine oxidase (DAO) and on their implications in allergy and various conditions or affections, such as food histaminosis, ischemia and inflammatory bowel diseases (IBD)."4.89Effects of amine oxidases in allergic and histamine-mediated conditions. ( Calinescu, C; Federico, R; Fogel, WA; Masini, E; Mateescu, MA; Mondovi, B; Rosa, AC, 2013)
"Hydrogen-rich water has a significant protective effect on OGD/R-causing HT22 cell injury, and the mechanism may be related to the inhibition of autophagy."4.40Effect of 12-week of aerobic exercise on hormones and lipid profile status in adolescent girls with polycystic ovary syndrome: A study during COVID-19. ( , 2023)
" We have studied the effect of (+)-catechin on a gastric ulcer model involving damage to gastric injury by ischaemia- reperfusion (I/R) in rats."3.74Protective effect of (+)-catechin against gastric mucosal injury induced by ischaemia-reperfusion in rats. ( Rao, ChV; Vijayakumar, M, 2007)
"Microdialysis was used to study how ischemia-evoked gastric mucosal injury affects rat stomach histamine, which resides in enterochromaffin-like (ECL) cells and mast cells."3.73Ischemia of rat stomach mobilizes ECL cell histamine. ( Bernsand, M; Haenuki, Y; Håkanson, R; Hasegawa, J; Kishimoto, Y; Kitano, M; Kudo, M; Norlén, P, 2005)
"A(3) adenosine receptor (AR) activation and inhibition worsen and improve, respectively, renal function after ischemia-reperfusion (I/R) injury in rats."3.72A3 adenosine receptor knockout mice are protected against ischemia- and myoglobinuria-induced renal failure. ( D'Agati, VD; Emala, CW; Jacobson, MA; Lee, HT; Ota-Setlik, A; Xu, H, 2003)
"Ranitidine significantly increased, while histamine significantly decreased survival following renal ischemia."3.72Effects of histamine and the h2 receptor antagonist ranitidine on ischemia-induced acute renal failure: involvement of IL-6 and vascular endothelial growth factor. ( Fekete, A; Müller, V; Reusz, G; Strehlau, J; Szabó, AJ; Tulassay, T; Vannay, A; Veres, T; Viklicky, O, 2004)
"We studied changes in arteriolar and venular diameters and macromolecular leakage altered by ischemia/reperfusion (I/R) and topically applied histamine after I/R and how these changes were modulated by cromakalim (KATP-channel opener) and glibenclamide (KATP-channel blocker)."3.71Effects of cromakalim and glibenclamide on arteriolar and venular diameters and macromolecular leakage in the microcirculation during ischemia/reperfusion. ( Bouskela, E; Simões, C; Svensjö, E, 2002)
"To elucidate the role of histamine in the pathogenesis of post-ischemic reperfusion injury of tissues, the effect of diamine oxidase (DAO) was studied on the changes in renal functions induced by 30 min occlusion followed by reperfusion of the renal vessels of unilaterally nephrectomized rats."3.70Inhibition of post-ischemic reperfusion injury of the kidney by diamine oxidase. ( Hiraoka, T; Inoue, M; Kaneko, H; Kitamura, N; Koshi, S; Miyauchi, Y, 1998)
"This study aimed to examine the relationship between a harmful effect of histamine and apoptosis following ischemia-reperfusion in the rat intestine."3.70Histaminergic effect on apoptosis of rat small intestinal mucosa after ischemia-reperfusion. ( Fujimoto, K; Fukuyama, K; Iwakiri, R; Kojima, M; Noda, T; Okamoto, K; Yoshida, T, 2000)
"Recent studies have demonstrated a connection between xanthine oxidase-generated reactive oxygen intermediates and histamine release during ischemia-reperfusion."3.68Studies on the relationship between xanthine oxidase and histamine release during intestinal ischemia-reperfusion. ( Bakó, L; Boros, M; Kaszaki, J; Nagy, S, 1992)
"S)."1.40Effects of anti-histamine treatment on liver injury triggered by small intestinal ischemia reperfusion in rats. ( Gan, XL; Hei, ZQ; Huang, PJ; Liu, DZ; Liu, JP; Wang, YL, 2014)
"The dimaprit treatment depressed the values to 40-64% of those in the corresponding control group 4-24 hr after reperfusion."1.35Suppression of ischaemia-induced cytokine release by dimaprit and amelioration of liver injury in rats. ( Adachi, N; Arai, T; Liu, K; Motoki, A; Nagaro, T; Nishibori, M; Takahashi, HK; Yorozuya, T, 2008)
"Thirty-two Sprague-Dawley (SD) rats were randomly divided into four groups: sham group (group S), model group (group M), high and low dosage of CS groups, (treated with CS 50 mg/kg or 25 mg/kg, group C1 and C2)."1.34Pretreatment of cromolyn sodium prior to reperfusion attenuates early reperfusion injury after the small intestine ischemia in rats. ( Cai, J; Gan, XL; Hei, ZQ; Li, SR; Luo, GJ, 2007)
"Thirty-two Wistar rats were randomly divided into the normal group, model group, low dosage group, (treated with Astragalus membranacaus injection, 10 g crude medication/kg) and high dosage group (treated with Astragalus membranacaus injection, 20 g crude medication/kg)."1.33Effect of Astragalus membranaceus injection on the activity of the intestinal mucosal mast cells after hemorrhagic shock-reperfusion in rats. ( Cai, J; Chen, LX; Gan, XL; Hei, ZQ; Huang, HQ; Li, SR, 2006)
"Cold cardioplegic arrest causes reperfusion injury to both endothelium and myocardium."1.30Release of markers of myocardial and endothelial injury following cold cardioplegic arrest in pigs. ( Eriksson, E; Kallner, A; Owall, A; Risberg, B; Sellei, P; Vaage, J; Valen, G; Waldum, H, 1997)
"Acute mesenteric ischemia is highly lethal and therefore a serious problem for surgery and intensive care medicine; accordingly its pathophysiology warrants further study."1.28Oxygen free radical-induced histamine release during intestinal ischemia and reperfusion. ( Boros, M; Kaszaki, J; Nagy, S, 1989)

Research

Studies (52)

TimeframeStudies, this research(%)All Research%
pre-19901 (1.92)18.7374
1990's19 (36.54)18.2507
2000's23 (44.23)29.6817
2010's8 (15.38)24.3611
2020's1 (1.92)2.80

Authors

AuthorsStudies
Halim, AA1
Alsayed, B1
Embarak, S1
Yaseen, T1
Dabbous, S1
Fontaine, O1
Dueluzeau, R1
Raibaud, P1
Chabanet, C1
Popoff, MR1
Badoual, J1
Gabilan, JC1
Andremont, A1
Gómez, L1
Andrés, S1
Sánchez, J1
Alonso, JM1
Rey, J1
López, F1
Jiménez, A1
Yan, Z1
Zhou, L1
Zhao, Y3
Wang, J6
Huang, L2
Hu, K1
Liu, H4
Wang, H3
Guo, Z1
Song, Y1
Huang, H4
Yang, R1
Owen, TW1
Al-Kaysi, RO1
Bardeen, CJ1
Cheng, Q1
Wu, S1
Cheng, T1
Zhou, X1
Wang, B4
Zhang, Q4
Wu, X2
Yao, Y3
Ochiai, T1
Ishiguro, H2
Nakano, R2
Kubota, Y2
Hara, M1
Sunada, K1
Hashimoto, K1
Kajioka, J1
Fujishima, A1
Jiao, J3
Gai, QY3
Wang, W2
Zang, YP2
Niu, LL2
Fu, YJ3
Wang, X4
Yao, LP1
Qin, QP1
Wang, ZY1
Liu, J4
Aleksic Sabo, V1
Knezevic, P1
Borges-Argáez, R1
Chan-Balan, R1
Cetina-Montejo, L1
Ayora-Talavera, G1
Sansores-Peraza, P1
Gómez-Carballo, J1
Cáceres-Farfán, M1
Jang, J1
Akin, D1
Bashir, R1
Yu, Z1
Zhu, J2
Jiang, H1
He, C2
Xiao, Z1
Xu, J2
Sun, Q1
Han, D1
Lei, H1
Zhao, K2
Zhu, L1
Li, X4
Fu, H2
Wilson, BK1
Step, DL1
Maxwell, CL1
Gifford, CA1
Richards, CJ1
Krehbiel, CR1
Warner, JM1
Doerr, AJ1
Erickson, GE1
Guretzky, JA1
Rasby, RJ1
Watson, AK1
Klopfenstein, TJ1
Sun, Y4
Liu, Z3
Pham, TD1
Lee, BK1
Yang, FC1
Wu, KH1
Lin, WP1
Hu, MK1
Lin, L3
Shao, J1
Sun, M1
Xu, G1
Zhang, X6
Xu, N1
Wang, R1
Liu, S1
He, H1
Dong, X2
Yang, M2
Yang, Q1
Duan, S1
Yu, Y2
Han, J2
Zhang, C3
Chen, L2
Yang, X1
Li, W3
Wang, T2
Campbell, DA1
Gao, K1
Zager, RA1
Johnson, ACM1
Guillem, A1
Keyser, J1
Singh, B1
Steubl, D1
Schneider, MP1
Meiselbach, H1
Nadal, J1
Schmid, MC1
Saritas, T1
Krane, V1
Sommerer, C1
Baid-Agrawal, S1
Voelkl, J1
Kotsis, F1
Köttgen, A1
Eckardt, KU1
Scherberich, JE1
Li, H4
Yao, L2
Sun, L3
Zhu, Z1
Naren, N1
Zhang, XX2
Gentile, GL1
Rupert, AS1
Carrasco, LI1
Garcia, EM1
Kumar, NG1
Walsh, SW1
Jefferson, KK1
Guest, RL1
Samé Guerra, D1
Wissler, M1
Grimm, J1
Silhavy, TJ1
Lee, JH2
Yoo, JS1
Kim, Y1
Kim, JS2
Lee, EJ1
Roe, JH1
Delorme, M1
Bouchard, PA1
Simon, M1
Simard, S1
Lellouche, F1
D'Urzo, KA1
Mok, F1
D'Urzo, AD1
Koneru, B1
Lopez, G1
Farooqi, A1
Conkrite, KL1
Nguyen, TH1
Macha, SJ1
Modi, A1
Rokita, JL1
Urias, E1
Hindle, A1
Davidson, H1
Mccoy, K1
Nance, J1
Yazdani, V1
Irwin, MS1
Yang, S1
Wheeler, DA1
Maris, JM1
Diskin, SJ1
Reynolds, CP1
Abhilash, L1
Kalliyil, A1
Sheeba, V1
Hartley, AM2
Meunier, B2
Pinotsis, N1
Maréchal, A2
Xu, JY1
Genko, N1
Haraux, F1
Rich, PR1
Kamalanathan, M1
Doyle, SM1
Xu, C1
Achberger, AM1
Wade, TL1
Schwehr, K1
Santschi, PH1
Sylvan, JB1
Quigg, A1
Leong, W1
Xu, W2
Gao, S1
Zhai, X1
Wang, C2
Gilson, E1
Ye, J1
Lu, Y1
Yan, R1
Zhang, Y6
Hu, Z1
You, Q1
Cai, Q1
Yang, D1
Gu, S1
Dai, H1
Zhao, X1
Gui, C1
Gui, J1
Wu, PK1
Hong, SK1
Starenki, D1
Oshima, K1
Shao, H1
Gestwicki, JE1
Tsai, S1
Park, JI1
Wang, Y7
Zhao, R1
Gu, Z1
Dong, C2
Guo, G1
Li, L4
Barrett, HE1
Meester, EJ1
van Gaalen, K1
van der Heiden, K1
Krenning, BJ1
Beekman, FJ1
de Blois, E1
de Swart, J1
Verhagen, HJ1
Maina, T1
Nock, BA1
Norenberg, JP1
de Jong, M1
Gijsen, FJH1
Bernsen, MR1
Martínez-Milla, J1
Galán-Arriola, C1
Carnero, M1
Cobiella, J1
Pérez-Camargo, D1
Bautista-Hernández, V1
Rigol, M1
Solanes, N1
Villena-Gutierrez, R1
Lobo, M1
Mateo, J1
Vilchez-Tschischke, JP1
Salinas, B1
Cussó, L1
López, GJ1
Fuster, V1
Desco, M1
Sanchez-González, J1
Ibanez, B1
van den Berg, P1
Schweitzer, DH1
van Haard, PMM1
Geusens, PP1
van den Bergh, JP1
Zhu, X1
Huang, X2
Xu, H3
Yang, G2
Lin, Z1
Salem, HF1
Nafady, MM1
Kharshoum, RM1
Abd El-Ghafar, OA1
Farouk, HO1
Domiciano, D1
Nery, FC1
de Carvalho, PA1
Prudente, DO1
de Souza, LB1
Chalfun-Júnior, A1
Paiva, R1
Marchiori, PER1
Lu, M2
An, Z1
Jiang, J2
Li, J8
Du, S1
Zhou, H1
Cui, J1
Wu, W1
Liu, Y7
Song, J1
Lian, Q1
Uddin Ahmad, Z1
Gang, DD1
Konggidinata, MI1
Gallo, AA1
Zappi, ME1
Yang, TWW1
Johari, Y1
Burton, PR1
Earnest, A1
Shaw, K1
Hare, JL1
Brown, WA1
Kim, GA1
Han, S1
Choi, GH1
Choi, J1
Lim, YS1
Gallo, A1
Cancelli, C1
Ceron, E1
Covino, M1
Capoluongo, E1
Pocino, K1
Ianiro, G1
Cammarota, G1
Gasbarrini, A1
Montalto, M1
Somasundar, Y1
Lu, IC1
Mills, MR1
Qian, LY1
Olivares, X1
Ryabov, AD1
Collins, TJ1
Zhao, L1
Doddipatla, S1
Thomas, AM1
Nikolayev, AA1
Galimova, GR1
Azyazov, VN1
Mebel, AM1
Kaiser, RI1
Guo, S1
Yang, P1
Yu, X3
Wu, Y2
Zhang, H1
Yu, B2
Han, B1
George, MW1
Moor, MB1
Bonny, O1
Langenberg, E1
Paik, H1
Smith, EH1
Nair, HP1
Hanke, I1
Ganschow, S1
Catalan, G1
Domingo, N1
Schlom, DG1
Assefa, MK1
Wu, G2
Hayton, TW1
Becker, B1
Enikeev, D1
Netsch, C1
Gross, AJ1
Laukhtina, E1
Glybochko, P1
Rapoport, L1
Herrmann, TRW1
Taratkin, M1
Dai, W1
Shi, J2
Carreno, J1
Kloner, RA1
Pickersgill, NA1
Vetter, JM1
Kim, EH1
Cope, SJ1
Du, K1
Venkatesh, R1
Giardina, JD1
Saad, NES1
Bhayani, SB1
Figenshau, RS1
Eriksson, J1
Landfeldt, E1
Ireland, S1
Jackson, C1
Wyatt, E1
Gaudig, M1
Stancill, JS1
Happ, JT1
Broniowska, KA1
Hogg, N1
Corbett, JA1
Tang, LF1
Bi, YL1
Fan, Y2
Sun, YB1
Wang, AL1
Xiao, BH1
Wang, LF1
Qiu, SW1
Guo, SW1
Wáng, YXJ1
Sun, J2
Chu, S1
Pan, Q1
Li, D2
Zheng, S2
Ma, L1
Wang, L3
Hu, T1
Wang, F1
Han, Z1
Yin, Z1
Ge, X1
Xie, K1
Lei, P1
Dias-Santagata, D1
Lennerz, JK1
Sadow, PM1
Frazier, RP1
Govinda Raju, S1
Henry, D1
Chung, T1
Kherani, J1
Rothenberg, SM1
Wirth, LJ1
Marti, CN1
Choi, NG1
Bae, SJ1
Ni, L1
Luo, X1
Dai, T1
Yang, Y3
Lee, R1
Fleischer, AS1
Wemhoff, AP1
Ford, CR1
Kleppinger, EL1
Helms, K1
Bush, AA1
Luna-Abanto, J1
García Ruiz, L1
Laura Martinez, J1
Álvarez Larraondo, M1
Villoslada Terrones, V1
Dukic, L1
Maric, N1
Simundic, AM1
Chogtu, B1
Ommurugan, B1
Thomson, SR1
Kalthur, SG1
Benidir, M1
El Massoudi, S1
El Ghadraoui, L1
Lazraq, A1
Benjelloun, M1
Errachidi, F1
Cassar, M1
Law, AD1
Chow, ES1
Giebultowicz, JM1
Kretzschmar, D1
Salonurmi, T1
Nabil, H1
Ronkainen, J1
Hyötyläinen, T1
Hautajärvi, H1
Savolainen, MJ1
Tolonen, A1
Orešič, M1
Känsäkoski, P1
Rysä, J1
Hakkola, J1
Hukkanen, J1
Zhu, N1
Li, Y4
Du, Q1
Hao, P1
Cao, X1
Li, CX1
Zhao, S1
Luo, XM1
Feng, JX1
Gonzalez-Cotto, M1
Guo, L1
Karwan, M1
Sen, SK1
Barb, J1
Collado, CJ1
Elloumi, F1
Palmieri, EM1
Boelte, K1
Kolodgie, FD1
Finn, AV1
Biesecker, LG1
McVicar, DW1
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Xie, Y2
Tang, J3
Chen, Z3
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Xiong, D1
Zhao, D1
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Song, B1
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Liu, T2
Chen, D5
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van Hest, JCM1
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Tronnet, A1
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Corvaisier, S1
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Gao, M1
Gao, H1
Bi, W1
Tang, H1
Cui, Y1
Zhang, L3
Fan, H1
Yu, H1
Mathison, CJN1
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Rucker, PV1
Nelson, J1
Roland, J1
Huang, Z2
Xie, YF1
Epple, R1
Bursulaya, B1
Lee, C1
Gao, MY1
Shaffer, J1
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Galkin, A1
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Kasibhatla, S1
Kinyamu-Akunda, J1
Kikkawa, R1
Molteni, V1
Tellew, JE1
Jin, X1
Pang, B1
Liu, Q2
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Josephine Fauci, A1
Ma, Y1
Soo Lee, M1
Yuan, W1
Gao, R1
Qi, H1
Zheng, W1
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Zhao, M2
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Wang, Q2
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Jena, P1
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Ma, G1
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Schwartzer, JJ1
Fiseha, T1
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Ba, YF1
Zhang, RX1
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Fan, CC1
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Yu, YK1
Wang, HR1
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Anasir, MI1
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Zhang, W2
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Noer, PR1
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Kong, X1
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Luo, M1
Wu, J1
Cai, S1
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Yuan, Q1
Sherrell, PC1
Chen, J2
Bi, X1
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Mahalapbutr, P1
Hengphasatporn, K1
Pattaranggoon, NC1
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Shigeta, Y1
Hannongbua, S1
Rungrotmongkol, T1
Caffrey, PJ1
Kher, R1
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Delaney, S1
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Wu, P1
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Yuan, Y1
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Lan, X1
Song, E1
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de Woestijne, PCV1
der Meulen, MHV1
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Yan, W1
Luo, L1
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Fan, MZ1
Wang, SR1
Zhao, WG1
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Jiang, Z1
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Jakob, SM1
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Thomas, SG1
Goodman, JM1
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Anini, Y1
Panahi, S1
Anderson, GH1
Luhovyy, BL1
Nafie, MS1
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Alakhdar, AA1
Arafa, RK1
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Hu, H1
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Hu, BC1
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Liu, YY1
Chu, Q1
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Peng, X1
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Zhao, FL1
Sun, YN1
Wang, HY1
Han, BH1
Jintao, X1
Shasha, Y1
Jincai, W1
Chunyan, L1
Mengya, Y1
Yongli, S1
Rasoanirina, BNV1
Lassoued, MA1
Miladi, K1
Razafindrakoto, Z1
Chaâbane-Banaoues, R1
Ramanitrahasimbola, D1
Cornet, M1
Sfar, S1
Liang, C1
Xing, Q1
Yi, JL1
Zhang, YQ1
Li, CY1
Tang, SJ1
Gao, C1
Sun, X2
Peng, M1
Sun, XF1
Zhang, T1
Shi, JH1
Liao, CX1
Gao, WJ1
Sun, LL1
Gao, Y1
Cao, WH1
Lyu, J1
Yu, CQ1
Wang, SF1
Pang, ZC1
Cong, LM1
Dong, Z1
Wu, F1
Wu, XP1
Jiang, GH1
Wang, XJ1
Wang, BY1
Li, LM1
Pan, L1
Wan, SP1
Yi, HWL1
He, HJ1
Yong, ZP1
Shan, GL1
Weng, TT1
Yan, SQ1
Gao, GP1
Wei, C1
Tao, FB1
Shao, ZH1
Yao, T1
Dong, S1
Shi, S1
Feng, YL1
Zhang, YW1
Wang, SP1
Shi, AX1
Operario, D1
Zhang, ZH1
Zhu, XF1
Zaller, N1
Gao, P1
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Zhang, HB1
Hou, Y2
Ge, M2
Gan, X2
Liu, D2
Gao, W2
Hei, Z2
Luo, C1
Huang, PJ1
Gan, XL3
Liu, JP1
Liu, DZ1
Hei, ZQ3
Cuzzocrea, S1
Masini, E3
He, P1
Fan, YY1
Zhang, LY1
Hu, WW1
Mondovi, B1
Fogel, WA1
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Rosa, AC1
Conceição, FG1
Conde, CM2
Svensjö, E3
Bottino, DA1
Bouskela, E5
Barbosa, Mdo C1
Cyrino, FZ2
Azevedo, AP1
Costa, MC1
de Souza, Md1
Santos, DS1
Barbosa, FL1
Guerra, LF1
Nascimento, Mdo D1
Lee, HT1
Ota-Setlik, A1
D'Agati, VD1
Jacobson, MA1
Emala, CW1
Kalchmair, B1
Klocker, J1
Perkmann, R1
Biebl, M1
Bodner, G1
Kolbitsch, C1
Fraedrich, G1
Schwelberger, HG1
Erkasap, N1
Uzuner, K1
Serteser, M1
Köken, T1
Aydin, Y1
Vannay, A1
Fekete, A1
Müller, V1
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Veres, T1
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Tulassay, T1
Szabó, AJ1
Rivo, J1
Zeira, E1
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Matot, I1
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Bernsand, M1
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Norlén, P1
Håkanson, R1
Haenuki, Y1
Kudo, M1
Hasegawa, J1
Adachi, N3
Liu, K3
Motoki, A3
Nishibori, M2
Arai, T3
Hiraga, N1
Irisawa, Y1
Semba, K1
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Demiryürek, AT1
Lippton, H1
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Chen, LX1
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Schneider, SW1
Rao, ChV1
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Charriaut-Marlangue, C1
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Temesvári, P1
Czesznak, A1
Abrahám, CS1
Joó, F1
Koyama, T1
Fujimoto, K4
Kang, M1
Yoshimatsu, H1
Sakata, T3
Tsunada, S1
Morita, H1
Iwakiri, R3
Sakai, T1
Boros, M6
Szabó, A1
Nagy, S6
Langer, JC1
Sohal, SS1
Marshall, J1
Fujiskai, J1
Oohara, A1
Hirano, M1
Ohyama, T1
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Valen, G1
Sellei, P1
Owall, A1
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Kallner, A1
Waldum, H1
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Vaage, J1
Giraldez, RR1
Panda, A1
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Ostrovsky, L1
Woodman, RC1
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Kubes, P1
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Fujiyama, Y1
Sasaki, M1
Andoh, A1
Fukuda, M1
Nakajima, S1
Bamba, T1
Kaneko, H1
Koshi, S1
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Konturek, PC1
Konturek, SJ1
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Fukuyama, K1
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Caty, MG1
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Oldham, KT1
Guice, KS1
Till, GO3
Imamura, I1
Granger, DN1
Wada, H1
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Clinical Trials (2)

Trial Overview

TrialPhaseEnrollmentStudy TypeStart DateStatus
Effect of Preoperative Intravenous High Dose Methylprednisolone on Endothelial Function in Patients Scheduled for Total Knee-arthroplasty[NCT02332629]Phase 370 participants (Actual)Interventional2015-01-31Completed
Evaluation of High-dose Corticosteroids on Microcirculation Alterations in Cardiac Surgery, by FMD (Flow Mediated vasoDilation), Near Infrared Spectrophotometry (NIRS) and Biological Analysis (Syndecan-1)[NCT02798068]Phase 460 participants (Anticipated)Interventional2016-05-31Recruiting
[information is prepared from clinicaltrials.gov, extracted Sep-2024]

Reviews

4 reviews available for histamine and Injury, Ischemia-Reperfusion

ArticleYear
Effect of 12-week of aerobic exercise on hormones and lipid profile status in adolescent girls with polycystic ovary syndrome: A study during COVID-19.
    Science & sports, 2023, Apr-04

    Topics: Actin Cytoskeleton; Actins; Adaptor Proteins, Signal Transducing; Adenocarcinoma; Adenosine Triphosp

2023
    The Egyptian journal of chest diseases and tuberculosis, 2016, Volume: 65, Issue:1

    Topics: A549 Cells; Acetylmuramyl-Alanyl-Isoglutamine; Acinetobacter baumannii; Acute Lung Injury; Adaptor P

2016
Plant histaminase as an investigational drug in splanchnic artery occlusion and reperfusion.
    Expert opinion on investigational drugs, 2008, Volume: 17, Issue:8

    Topics: Amine Oxidase (Copper-Containing); Animals; Arterial Occlusive Diseases; Drugs, Investigational; His

2008
Effects of amine oxidases in allergic and histamine-mediated conditions.
    Recent patents on inflammation & allergy drug discovery, 2013, Jan-01, Volume: 7, Issue:1

    Topics: Amine Oxidase (Copper-Containing); Animals; Benzylamine Oxidase; Cattle; Histamine; Humans; Hypersen

2013

Trials

2 trials available for histamine and Injury, Ischemia-Reperfusion

ArticleYear
Effect of 12-week of aerobic exercise on hormones and lipid profile status in adolescent girls with polycystic ovary syndrome: A study during COVID-19.
    Science & sports, 2023, Apr-04

    Topics: Actin Cytoskeleton; Actins; Adaptor Proteins, Signal Transducing; Adenocarcinoma; Adenosine Triphosp

2023
    The Egyptian journal of chest diseases and tuberculosis, 2016, Volume: 65, Issue:1

    Topics: A549 Cells; Acetylmuramyl-Alanyl-Isoglutamine; Acinetobacter baumannii; Acute Lung Injury; Adaptor P

2016

Other Studies

48 other studies available for histamine and Injury, Ischemia-Reperfusion

ArticleYear
Propofol attenuates myocardial ischemia reperfusion injury partly through inhibition of resident cardiac mast cell activation.
    International immunopharmacology, 2018, Volume: 54

    Topics: Anesthetics, Intravenous; Animals; Antioxidants; Cell Degranulation; Cell Line; Cytokines; Heart; Hi

2018
Time-course analysis of counts and degranulation of mast cells during early intestinal ischemia-reperfusion injury in mice.
    Molecular medicine reports, 2013, Volume: 8, Issue:2

    Topics: Animals; Cell Degranulation; Disease Models, Animal; Histamine; Intestinal Mucosa; Intestines; Male;

2013
Treatment of mice with cromolyn sodium after reperfusion, but not prior to ischemia, attenuates small intestinal ischemia-reperfusion injury.
    Molecular medicine reports, 2013, Volume: 8, Issue:3

    Topics: Animals; Anti-Asthmatic Agents; Cromolyn Sodium; Down-Regulation; Endothelin-1; Histamine; Interleuk

2013
Effects of anti-histamine treatment on liver injury triggered by small intestinal ischemia reperfusion in rats.
    The Chinese journal of physiology, 2014, Oct-31, Volume: 57, Issue:5

    Topics: Alanine Transaminase; Animals; Aspartate Aminotransferases; Cell Degranulation; Histamine; Histamine

2014
[Effect of endogenous histamine on ischemic preconditioning induced cerebral ischemic tolerance].
    Zhejiang da xue xue bao. Yi xue ban = Journal of Zhejiang University. Medical sciences, 2009, Volume: 38, Issue:6

    Topics: Animals; Brain Ischemia; Histamine; Ischemic Preconditioning; Male; Mice; Mice, Inbred C57BL; Mice,

2009
Preconditioning of the response to ischemia/ reperfusion-induced plasma leakage in hamster cheek pouch microcirculation.
    Clinics (Sao Paulo, Brazil), 2012, Volume: 67, Issue:8

    Topics: Animals; Bradykinin; Capillary Permeability; Cheek; Cricetinae; Disease Models, Animal; Histamine; H

2012
Effects of babassu nut oil on ischemia/reperfusion-induced leukocyte adhesion and macromolecular leakage in the microcirculation: observation in the hamster cheek pouch.
    Lipids in health and disease, 2012, Nov-16, Volume: 11

    Topics: Animals; Brazil; Capillary Permeability; Cell Adhesion; Cheek; Cricetinae; Histamine; Humans; Leukoc

2012
A3 adenosine receptor knockout mice are protected against ischemia- and myoglobinuria-induced renal failure.
    American journal of physiology. Renal physiology, 2003, Volume: 284, Issue:2

    Topics: Acute Kidney Injury; Adenosine; Animals; Genotype; Histamine; Ischemia; Kidney; Mice; Mice, Inbred C

2003
Alterations in plasma amine oxidase activities in a compartment syndrome model.
    Inflammation research : official journal of the European Histamine Research Society ... [et al.], 2003, Volume: 52 Suppl 1

    Topics: Amine Oxidase (Copper-Containing); Animals; Compartment Syndromes; Female; Hindlimb; Histamine; Hist

2003
Gastroprotective effect of leptin on gastric mucosal injury induced by ischemia-reperfusion is related to gastric histamine content in rats.
    Peptides, 2003, Volume: 24, Issue:8

    Topics: Animals; Female; Gastric Mucosa; Histamine; Leptin; Oxidative Stress; Rats; Rats, Sprague-Dawley; Re

2003
Effects of histamine and the h2 receptor antagonist ranitidine on ischemia-induced acute renal failure: involvement of IL-6 and vascular endothelial growth factor.
    Kidney & blood pressure research, 2004, Volume: 27, Issue:2

    Topics: Acute Kidney Injury; Animals; Histamine; Histamine H2 Antagonists; Interleukin-6; Ischemia; Kidney;

2004
Activation of A3 adenosine receptors attenuates lung injury after in vivo reperfusion.
    Anesthesiology, 2004, Volume: 101, Issue:5

    Topics: Adamantane; Adenosine; Adenosine A3 Receptor Agonists; Adenosine A3 Receptor Antagonists; Animals; A

2004
Ischemia of rat stomach mobilizes ECL cell histamine.
    American journal of physiology. Gastrointestinal and liver physiology, 2005, Volume: 288, Issue:5

    Topics: Animals; Cimetidine; Enterochromaffin-like Cells; Gastric Mucosa; Histamine; Histamine H2 Antagonist

2005
Suppression of ischemia/reperfusion liver injury by histamine H4 receptor stimulation in rats.
    European journal of pharmacology, 2006, Aug-21, Volume: 544, Issue:1-3

    Topics: Alanine Transaminase; Animals; Aspartate Aminotransferases; Clozapine; Dimaprit; Dose-Response Relat

2006
A comparison of protective effects between L-histidine and hypothermia against ischemia-induced neuronal damage in gerbil hippocampus.
    European journal of pharmacology, 2006, Sep-28, Volume: 546, Issue:1-3

    Topics: Animals; Brain Ischemia; Drug Therapy, Combination; Gerbillinae; Hippocampus; Histamine; Histamine A

2006
Preconditioning modulates pulmonary endothelial dysfunction following ischemia-reperfusion injury in the rat lung: role of potassium channels.
    Life sciences, 2006, Nov-02, Volume: 79, Issue:23

    Topics: Acetylcholine; Animals; Anti-Arrhythmia Agents; Benzamides; Decanoic Acids; Endothelium, Vascular; G

2006
Effect of Astragalus membranaceus injection on the activity of the intestinal mucosal mast cells after hemorrhagic shock-reperfusion in rats.
    Chinese medical journal, 2006, Nov-20, Volume: 119, Issue:22

    Topics: Animals; Astragalus propinquus; Histamine; Injections; Intestinal Mucosa; Malondialdehyde; Mast Cell

2006
Delay of acute intracellular pH recovery after acidosis decreases endothelial cell activation.
    Journal of cellular physiology, 2007, Volume: 211, Issue:2

    Topics: Acidosis; Amiloride; Calcium; Cell Adhesion; Cells, Cultured; Chloride-Bicarbonate Antiporters; Cycl

2007
Protective effect of (+)-catechin against gastric mucosal injury induced by ischaemia-reperfusion in rats.
    The Journal of pharmacy and pharmacology, 2007, Volume: 59, Issue:8

    Topics: Administration, Oral; Alkaline Phosphatase; Animals; Antioxidants; Catalase; Catechin; Corticosteron

2007
Pretreatment of cromolyn sodium prior to reperfusion attenuates early reperfusion injury after the small intestine ischemia in rats.
    World journal of gastroenterology, 2007, Oct-14, Volume: 13, Issue:38

    Topics: Animals; Anti-Asthmatic Agents; Cromolyn Sodium; Histamine; Intestinal Mucosa; Intestine, Small; Mal

2007
Stroke induces histamine accumulation and mast cell degranulation in the neonatal rat brain.
    Brain pathology (Zurich, Switzerland), 2008, Volume: 18, Issue:1

    Topics: Age Factors; Animals; Animals, Newborn; Biomarkers; Brain; Cell Count; Cell Death; Chemotaxis, Leuko

2008
Hydrocortisone preserves the vascular barrier by protecting the endothelial glycocalyx.
    Anesthesiology, 2007, Volume: 107, Issue:5

    Topics: Animals; Anti-Inflammatory Agents; Blood Pressure; Capillary Permeability; Endothelium, Vascular; Ex

2007
Hydrocortisone preserves the vascular barrier by protecting the endothelial glycocalyx.
    Anesthesiology, 2007, Volume: 107, Issue:5

    Topics: Animals; Anti-Inflammatory Agents; Blood Pressure; Capillary Permeability; Endothelium, Vascular; Ex

2007
Hydrocortisone preserves the vascular barrier by protecting the endothelial glycocalyx.
    Anesthesiology, 2007, Volume: 107, Issue:5

    Topics: Animals; Anti-Inflammatory Agents; Blood Pressure; Capillary Permeability; Endothelium, Vascular; Ex

2007
Hydrocortisone preserves the vascular barrier by protecting the endothelial glycocalyx.
    Anesthesiology, 2007, Volume: 107, Issue:5

    Topics: Animals; Anti-Inflammatory Agents; Blood Pressure; Capillary Permeability; Endothelium, Vascular; Ex

2007
Suppression of ischaemia-induced cytokine release by dimaprit and amelioration of liver injury in rats.
    Basic & clinical pharmacology & toxicology, 2008, Volume: 102, Issue:4

    Topics: Adenosine Triphosphate; Alanine Transaminase; Animals; Aspartate Aminotransferases; Cytokines; Dimap

2008
Mast cell inhibition and reduced ventricular arrhythmias in a swine model of acute myocardial infarction upon therapeutic administration of relaxin.
    Inflammation research : official journal of the European Histamine Research Society ... [et al.], 2008, Volume: 57 Suppl 1

    Topics: Animals; Arrhythmias, Cardiac; Disease Models, Animal; Heart Ventricles; Histamine; Humans; Male; Ma

2008
The role of cerebral microvessels in the elimination of histamine released during postasphyxial reperfusion in newborn piglets.
    Neuroscience letters, 1995, Jul-28, Volume: 195, Issue:1

    Topics: Animals; Animals, Newborn; Asphyxia; Brain Edema; Capillaries; Cerebrovascular Circulation; Extracel

1995
Histamine effect on ornithine decarboxylase of rat intestine in cases of ischemia-reperfusion compared with refeeding.
    Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine (New York, N.Y.), 1995, Volume: 209, Issue:1

    Topics: Animals; Food; Histamine; Histamine Release; Histidine Decarboxylase; Intestinal Mucosa; Jejunum; Ly

1995
Role of histamine in the intestinal flow response following mesenteric ischemia.
    Shock (Augusta, Ga.), 1994, Volume: 2, Issue:6

    Topics: Animals; Blood Flow Velocity; Cimetidine; Cromolyn Sodium; Dogs; Female; Guanidines; Histamine; Ileu

1994
Histamine does not mediate mucosal permeability changes after subclinical intestinal ischemia-reperfusion injury.
    Journal of pediatric surgery, 1993, Volume: 28, Issue:9

    Topics: Animals; Chromium Radioisotopes; Edetic Acid; Enterocolitis, Pseudomembranous; Histamine; Ileum; Int

1993
Roles of histamine and diamine oxidase in mucosa of rat small intestine after ischemia-reperfusion.
    Digestive diseases and sciences, 1993, Volume: 38, Issue:7

    Topics: Amine Oxidase (Copper-Containing); Animals; Histamine; Intestinal Mucosa; Intestine, Small; Male; Or

1993
Release of markers of myocardial and endothelial injury following cold cardioplegic arrest in pigs.
    Scandinavian cardiovascular journal : SCJ, 1997, Volume: 31, Issue:1

    Topics: Animals; Biomarkers; Cold Temperature; Coronary Circulation; Endothelium, Vascular; Heart Arrest, In

1997
Decreased nitric-oxide synthase activity causes impaired endothelium-dependent relaxation in the postischemic heart.
    The Journal of biological chemistry, 1997, Aug-22, Volume: 272, Issue:34

    Topics: Animals; Blotting, Western; Endothelium, Vascular; Enzyme Inhibitors; Female; Histamine; Hydrogen-Io

1997
Antithrombin III prevents and rapidly reverses leukocyte recruitment in ischemia/reperfusion.
    Circulation, 1997, Oct-07, Volume: 96, Issue:7

    Topics: Animals; Antithrombin III; Blood Flow Velocity; Blood Pressure; Cats; Cell Adhesion; Cells, Cultured

1997
Microvascular permeability with sulfonylureas in normal and diabetic hamsters.
    Metabolism: clinical and experimental, 1997, Volume: 46, Issue:12 Suppl 1

    Topics: Animals; Calcium Channel Blockers; Calcium Channels; Capillary Permeability; Cricetinae; Dextrans; D

1997
The role of mucosal mast cell degranulation and free-radical generation in intestinal ischaemia-reperfusion injury in rats.
    European journal of gastroenterology & hepatology, 1998, Volume: 10, Issue:8

    Topics: Animals; Anti-Ulcer Agents; Cell Degranulation; Free Radicals; Histamine; Immunohistochemistry; Inte

1998
Inhibition of post-ischemic reperfusion injury of the kidney by diamine oxidase.
    Biochimica et biophysica acta, 1998, Sep-30, Volume: 1407, Issue:3

    Topics: Amine Oxidase (Copper-Containing); Animals; Coloring Agents; Creatinine; Histamine; Iodine Radioisot

1998
Mast cell degranulation prior to ischemia decreases ischemia-reperfusion injury in the canine small intestine.
    Inflammation research : official journal of the European Histamine Research Society ... [et al.], 1999, Volume: 48, Issue:4

    Topics: Animals; Cell Degranulation; Dogs; Histamine; Histidine Decarboxylase; Hydrogen-Ion Concentration; I

1999
The role of mast cell degranulation in ischaemia-reperfusion-induced mucosal injury in the small intestine.
    Annals of the Academy of Medicine, Singapore, 1999, Volume: 28, Issue:1

    Topics: Animals; Cell Degranulation; Dogs; Glycerol; Histamine; Histidine Decarboxylase; Hydrogen-Ion Concen

1999
Role of gastric acid secretion in progression of acute gastric erosions induced by ischemia-reperfusion into gastric ulcers.
    European journal of pharmacology, 2000, Jun-09, Volume: 398, Issue:1

    Topics: Acute Disease; Animals; Anti-Ulcer Agents; Blood Flow Velocity; Disease Progression; Gastric Acid; G

2000
Histaminergic effect on apoptosis of rat small intestinal mucosa after ischemia-reperfusion.
    Digestive diseases and sciences, 2000, Volume: 45, Issue:6

    Topics: Animals; Apoptosis; Chlorpheniramine; Cimetidine; Guanidines; Histamine; Histamine Antagonists; Inte

2000
Effects of L-NA and sodium nitroprusside on ischemia/reperfusion-induced leukocyte adhesion and macromolecular leakage in hamster cheek pouch venules.
    Microvascular research, 2001, Volume: 62, Issue:2

    Topics: Animals; Cell Adhesion; Cheek; Cricetinae; Enzyme Inhibitors; Histamine; Leukocytes; Male; Nitric Ox

2001
Effects of cromakalim and glibenclamide on arteriolar and venular diameters and macromolecular leakage in the microcirculation during ischemia/reperfusion.
    Journal of cardiovascular pharmacology, 2002, Volume: 39, Issue:3

    Topics: Adenosine Triphosphate; Animals; Arterioles; Capillary Permeability; Cheek; Cricetinae; Cromakalim;

2002
Studies on the relationship between xanthine oxidase and histamine release during intestinal ischemia-reperfusion.
    Circulatory shock, 1992, Volume: 38, Issue:2

    Topics: Animals; Cromolyn Sodium; Disease Models, Animal; Dogs; Female; Guanidines; Histamine; Histamine Rel

1992
Histamine: a promoter of xanthine oxidase activity in intestinal ischemia/reperfusion.
    Journal of pediatric surgery, 1990, Volume: 25, Issue:2

    Topics: Animals; Germ-Free Life; Histamine; Histamine Release; Intestines; Ischemia; Male; Rats; Rats, Inbre

1990
Histamine release during intestinal ischemia-reperfusion: role of iron ions and hydrogen peroxide.
    Circulatory shock, 1991, Volume: 35, Issue:3

    Topics: Animals; Deferoxamine; Dogs; Female; Histamine; Histamine Release; Hydrogen Peroxide; Intestinal Muc

1991
Histamine and histidine decarboxylase are correlated with mucosal repair in rat small intestine after ischemia-reperfusion.
    The Journal of clinical investigation, 1992, Volume: 89, Issue:1

    Topics: Amine Oxidase (Copper-Containing); Animals; Dietary Fats; Histamine; Histidine Decarboxylase; Intest

1992
Role of oxygen radicals in tourniquet-related ischemia-reperfusion injury of human patients.
    Klinische Wochenschrift, 1991, Dec-15, Volume: 69, Issue:21-23

    Topics: Adult; Arm; Free Radicals; Histamine; Humans; Oxygen; Reperfusion Injury; Tourniquets; Uric Acid; Xa

1991
Histamine and xanthine oxidase in hepatic ischemia-reperfusion injury.
    Transplantation proceedings, 1990, Volume: 22, Issue:2

    Topics: Alanine Transaminase; Animals; Aspartate Aminotransferases; Disease Models, Animal; Histamine; Ische

1990
Oxygen free radical-induced histamine release during intestinal ischemia and reperfusion.
    European surgical research. Europaische chirurgische Forschung. Recherches chirurgicales europeennes, 1989, Volume: 21, Issue:6

    Topics: Allopurinol; Animals; Antioxidants; Dogs; Female; Free Radicals; Histamine; Histamine Release; Ileum

1989