1-anilino-8-naphthalenesulfonate has been researched along with Reperfusion Injury in 34 studies
1-anilino-8-naphthalenesulfonate: RN given refers to parent cpd
8-anilinonaphthalene-1-sulfonic acid : A naphthalenesulfonic acid that is naphthalene-1-sulfonic acid substituted by a phenylamino group at position 8.
Reperfusion Injury: Adverse functional, metabolic, or structural changes in tissues that result from the restoration of blood flow to the tissue (REPERFUSION) following ISCHEMIA.
Excerpt | Relevance | Reference |
---|---|---|
"Histological examination showed that treatment with acenocoumarol reduces pancreatic edema, necrosis, and hemorrhages in rats with pancreatitis." | 7.85 | Therapeutic Effect of Low Doses of Acenocoumarol in the Course of Ischemia/Reperfusion-Induced Acute Pancreatitis in Rats. ( Ambroży, T; Bonior, J; Ceranowicz, P; Cieszkowski, J; Dembiński, A; Dembiński, M; Jaworek, J; Kuśnierz-Cabala, B; Olszanecki, R; Sendur, P; Sendur, R; Tomasz, K; Tomaszewska, R; Warzecha, Z, 2017) |
"Treatment with warfarin reduces pancreatic damage and accelerates recovery in histological examination and this effect is accompanied by a faster reduction in serum activity of pancreatic digestive enzymes, lipase and amylase." | 5.56 | Administration of warfarin accelerates the recovery in ischemia/reperfusion-induced acute pancreatitis. ( Ceranowicz, P; Chmura, A; Cieszkowski, J; Galazka, K; Kusnierz-Cabala, B; Maduzia, D; Warzecha, Z, 2020) |
"Pretreatment with acenocoumarol given at the dose of 50 or 100 μg/kg/dose reduced morphological signs of acute pancreatitis." | 5.42 | Pretreatment with low doses of acenocoumarol inhibits the development of acute ischemia/reperfusion-induced pancreatitis. ( Ceranowicz, P; Cieszkowski, J; Dembinski, A; Dembinski, M; Kusnierz-Cabala, B; Sendur, P; Tomaszewska, R; Warzecha, Z, 2015) |
"Melatonin was intraperitoneally administered before or/and after IR injury." | 5.33 | Melatonin reduces apoptosis and necrosis induced by ischemia/reperfusion injury of the pancreas. ( Briceño, J; Collado, JA; Cruz, A; Montilla, P; Muñoz-Casares, FC; Muñoz-Castañeda, JR; Muntané, J; Ortega, R; Padillo, FJ; Pera, C; Túnez, I, 2006) |
"Acute pancreatitis is accompanied by the enhanced expression of EGF in the pancreas and the administration of EGF was found to exhibit the beneficial effect on edematous cerulein-induced pancreatitis." | 5.31 | The influence of epidermal growth factor on the course of ischemia-reperfusion induced pancreatitis in rats. ( Ceranowicz, P; Dembiński, A; Konturek, SJ; Stachura, J; Tomaszewska, R; Warzecha, Z, 2002) |
"Histological examination showed that treatment with acenocoumarol reduces pancreatic edema, necrosis, and hemorrhages in rats with pancreatitis." | 3.85 | Therapeutic Effect of Low Doses of Acenocoumarol in the Course of Ischemia/Reperfusion-Induced Acute Pancreatitis in Rats. ( Ambroży, T; Bonior, J; Ceranowicz, P; Cieszkowski, J; Dembiński, A; Dembiński, M; Jaworek, J; Kuśnierz-Cabala, B; Olszanecki, R; Sendur, P; Sendur, R; Tomasz, K; Tomaszewska, R; Warzecha, Z, 2017) |
"Deferoxamine mesylate is known to ameliorate tissue ischemia-reperfusion injury." | 3.77 | Protective effects of deferoxamine mesylate preconditioning on pancreatic tissue in orthotopic liver autotransplantation in rats. ( Feng, M; Jin, C; Li, Y; Liu, XY; Tao, LD; Zhang, PJ; Zhou, B, 2011) |
"Ablation of sensory nerves was made by capsaicin 10 days before induction of pancreatitis." | 3.72 | Stimulation of sensory nerves and CGRP attenuate pancreatic damage in ischemia/reperfusion induced pancreatitis. ( Bilski, J; Ceranowicz, P; Dembiński, A; Dembiński, M; Jaworek, J; Knafel, A; Konturek, SJ; Pawlik, WW; Sendur, R; Stachura, J; Tomaszewska, R; Warzecha, Z, 2003) |
"Treatment with warfarin reduces pancreatic damage and accelerates recovery in histological examination and this effect is accompanied by a faster reduction in serum activity of pancreatic digestive enzymes, lipase and amylase." | 1.56 | Administration of warfarin accelerates the recovery in ischemia/reperfusion-induced acute pancreatitis. ( Ceranowicz, P; Chmura, A; Cieszkowski, J; Galazka, K; Kusnierz-Cabala, B; Maduzia, D; Warzecha, Z, 2020) |
"Acute pancreatitis was induced by pancreatic ischemia followed by reperfusion of the pancreas." | 1.42 | Obestatin Accelerates the Recovery in the Course of Ischemia/Reperfusion-Induced Acute Pancreatitis in Rats. ( Bukowczan, J; Ceranowicz, P; Kuśnierz-Cabala, B; Tomaszewska, R; Warzecha, Z, 2015) |
"Pretreatment with acenocoumarol given at the dose of 50 or 100 μg/kg/dose reduced morphological signs of acute pancreatitis." | 1.42 | Pretreatment with low doses of acenocoumarol inhibits the development of acute ischemia/reperfusion-induced pancreatitis. ( Ceranowicz, P; Cieszkowski, J; Dembinski, A; Dembinski, M; Kusnierz-Cabala, B; Sendur, P; Tomaszewska, R; Warzecha, Z, 2015) |
"Acute pancreatitis was induced by warm ischemia (60 min) in Wistar rats, and its effects with and without antagonist treatment were investigated." | 1.34 | Pathophysiological role of platelets in acute experimental pancreatitis: influence of endothelin A receptor blockade. ( Fiedler, M; Hauss, J; Lauer, H; Ludwig, S; Serr, F; Tannapfel, A; Uhlmann, D; Witzigmann, H, 2007) |
"Graft pancreatitis is a major complication after pancreas transplantation." | 1.33 | Reduction of ischemia/reperfusion injury by antithrombin III after experimental pancreas transplantation. ( Büchler, MW; Gebhard, MM; Hackert, T; Schmidt, J; Uhl, W; Werner, J, 2005) |
"Melatonin was intraperitoneally administered before or/and after IR injury." | 1.33 | Melatonin reduces apoptosis and necrosis induced by ischemia/reperfusion injury of the pancreas. ( Briceño, J; Collado, JA; Cruz, A; Montilla, P; Muñoz-Casares, FC; Muñoz-Castañeda, JR; Muntané, J; Ortega, R; Padillo, FJ; Pera, C; Túnez, I, 2006) |
"Acute pancreatitis was induced by clamping of inferior splenic artery for 30 min followed by reperfusion." | 1.33 | Effect of ischemic preconditioning on pancreatic regeneration and pancreatic expression of vascular endothelial growth factor and platelet-derived growth factor-A in ischemia/reperfusion-induced pancreatitis. ( Ceranowicz, P; Cieszkowski, J; Dembiński, A; Dembiński, M; Konturek, PC; Konturek, SJ; Pawlik, WW; Tomaszewska, R; Warzecha, Z, 2006) |
"Transient hyperinsulinemia was noted in all the groups on postoperative day 1 (mean range: 8." | 1.32 | Functional and structural integrity of porcine pancreatic grafts subjected to a period of warm ischemia and cold preservation with histidine-tryptophan-ketoglutarate (custodiol) or University of Wisconsin solution. ( Cuvelier, CA; de Hemptinne, B; Fiers, T; Hesse, UJ; Meester, D; Troisi, R; Van Den Broecke, C, 2003) |
"Acute pancreatitis is accompanied by the enhanced expression of EGF in the pancreas and the administration of EGF was found to exhibit the beneficial effect on edematous cerulein-induced pancreatitis." | 1.31 | The influence of epidermal growth factor on the course of ischemia-reperfusion induced pancreatitis in rats. ( Ceranowicz, P; Dembiński, A; Konturek, SJ; Stachura, J; Tomaszewska, R; Warzecha, Z, 2002) |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 7 (20.59) | 18.2507 |
2000's | 19 (55.88) | 29.6817 |
2010's | 7 (20.59) | 24.3611 |
2020's | 1 (2.94) | 2.80 |
Authors | Studies |
---|---|
Maduzia, D | 1 |
Ceranowicz, P | 8 |
Cieszkowski, J | 4 |
Chmura, A | 1 |
Galazka, K | 1 |
Kusnierz-Cabala, B | 4 |
Warzecha, Z | 8 |
Sendur, P | 2 |
Dembiński, M | 5 |
Sendur, R | 2 |
Bonior, J | 1 |
Jaworek, J | 2 |
Ambroży, T | 1 |
Olszanecki, R | 1 |
Tomasz, K | 1 |
Tomaszewska, R | 7 |
Dembiński, A | 6 |
Rocha-Santos, V | 1 |
Ferro, OC | 1 |
Pantanali, CA | 1 |
Seixas, MP | 1 |
Pecora, RA | 1 |
Pinheiro, RS | 1 |
Claro, LC | 1 |
Abdo, EE | 1 |
Chaib, E | 1 |
D'Albuquerque, LA | 1 |
Bukowczan, J | 1 |
Weinbroum, AA | 2 |
Nikeghbalian, S | 1 |
Mansoorian, MR | 1 |
Hosseini, SM | 1 |
Mardani, P | 1 |
Geramizadeh, B | 1 |
Hosseini, SA | 1 |
Stiegler, P | 1 |
Stadlbauer, V | 1 |
Hackl, F | 1 |
Schaffellner, S | 1 |
Iberer, F | 1 |
Greilberger, J | 1 |
Hallstroem, S | 1 |
Zelzer, S | 1 |
Lackner, C | 1 |
Tscheliessnigg, K | 1 |
Yang, D | 1 |
Zeng, Y | 1 |
Tian, C | 1 |
Liu, J | 1 |
Guo, SB | 1 |
Zheng, YH | 1 |
Li, HH | 1 |
Li, Y | 1 |
Zhang, PJ | 1 |
Jin, C | 1 |
Zhou, B | 1 |
Liu, XY | 1 |
Tao, LD | 1 |
Feng, M | 1 |
Lanitis, S | 1 |
Lolis, E | 1 |
Dafnios, N | 1 |
Sgourakis, G | 1 |
Voros, DC | 1 |
Vassiliou, I | 1 |
Konturek, SJ | 4 |
Stachura, J | 3 |
Benz, S | 3 |
Obermaier, R | 2 |
Wiessner, R | 1 |
Breitenbuch, PV | 1 |
Burska, D | 1 |
Weber, H | 2 |
Schnabel, R | 2 |
Mayer, J | 1 |
Pfeffer, F | 2 |
Nizze, H | 1 |
Hopt, UT | 3 |
Troisi, R | 1 |
Meester, D | 1 |
Van Den Broecke, C | 1 |
Cuvelier, CA | 1 |
Fiers, T | 1 |
de Hemptinne, B | 1 |
Hesse, UJ | 1 |
Pabiańczyk, M | 1 |
Witzigmann, H | 2 |
Ludwig, S | 2 |
Armann, B | 1 |
Gäbel, G | 1 |
Teupser, D | 1 |
Kratzsch, J | 1 |
Pietsch, UC | 1 |
Tannapfel, A | 2 |
Geissler, F | 1 |
Hauss, J | 2 |
Uhlmann, D | 2 |
Knafel, A | 1 |
Bilski, J | 1 |
Pawlik, WW | 2 |
Hackert, T | 1 |
Werner, J | 1 |
Uhl, W | 1 |
Gebhard, MM | 1 |
Büchler, MW | 1 |
Schmidt, J | 1 |
Muñoz-Casares, FC | 1 |
Padillo, FJ | 1 |
Briceño, J | 1 |
Collado, JA | 1 |
Muñoz-Castañeda, JR | 1 |
Ortega, R | 1 |
Cruz, A | 1 |
Túnez, I | 1 |
Montilla, P | 1 |
Pera, C | 1 |
Muntané, J | 1 |
Konturek, PC | 1 |
Fertmann, JM | 1 |
Wimmer, CD | 1 |
Arbogast, HP | 1 |
Illner, WD | 1 |
Tarabichi, A | 1 |
Calasan, I | 1 |
Dieterle, C | 1 |
Land, W | 1 |
Jauch, KW | 1 |
Hoffmann, JN | 1 |
Johannes, NH | 1 |
Lauer, H | 1 |
Serr, F | 1 |
Fiedler, M | 1 |
Tamura, K | 1 |
Manabe, T | 1 |
Kyogoku, T | 1 |
Andoh, K | 1 |
Ohshio, G | 1 |
Tobe, T | 1 |
Hotter, G | 4 |
Closa, D | 3 |
Gelpí, E | 4 |
Prats, N | 3 |
Roselló-Catafau, J | 3 |
Menger, MD | 1 |
Bonkhoff, H | 1 |
Vollmar, B | 1 |
Pi, F | 3 |
Fernández-Cruz, L | 1 |
Badosa, F | 3 |
Peralta, C | 1 |
Morgenroth, K | 1 |
McDonald, MC | 1 |
Mota-Filipe, H | 1 |
Paul, A | 1 |
Cuzzocrea, S | 1 |
Abdelrahman, M | 1 |
Harwood, S | 1 |
Plevin, R | 1 |
Chatterjee, PK | 1 |
Yaqoob, MM | 1 |
Thiemermann, C | 1 |
Kortmann, B | 1 |
Benthues, A | 1 |
Ansorge, N | 1 |
Sola, A | 1 |
Roselló Catafau, J | 1 |
Xaus, C | 1 |
Fujino, Y | 1 |
Suzuki, Y | 1 |
Tsujimura, T | 1 |
Takahashi, T | 1 |
Tanioka, Y | 1 |
Tominaga, M | 1 |
Ku, Y | 1 |
Kuroda, Y | 1 |
Griffiths, EJ | 1 |
Brunt, RV | 1 |
34 other studies available for 1-anilino-8-naphthalenesulfonate and Reperfusion Injury
Article | Year |
---|---|
Administration of warfarin accelerates the recovery in ischemia/reperfusion-induced acute pancreatitis.
Topics: Amylases; Animals; Anticoagulants; Biomarkers; Disease Models, Animal; Fibrin Fibrinogen Degradation | 2020 |
Therapeutic Effect of Low Doses of Acenocoumarol in the Course of Ischemia/Reperfusion-Induced Acute Pancreatitis in Rats.
Topics: Acenocoumarol; Acute Disease; Amylases; Animals; DNA; Dose-Response Relationship, Drug; Drug Adminis | 2017 |
The effects of profound hypothermia on pancreas ischemic injury: a new experimental model.
Topics: Amylases; Animals; Cold Temperature; Disease Models, Animal; Hypothermia, Induced; Inflammation Medi | 2014 |
Obestatin Accelerates the Recovery in the Course of Ischemia/Reperfusion-Induced Acute Pancreatitis in Rats.
Topics: Acute Disease; Animals; Drugs, Chinese Herbal; Eating; Ghrelin; Interleukin-1beta; Ischemia; Lipase; | 2015 |
Pretreatment with low doses of acenocoumarol inhibits the development of acute ischemia/reperfusion-induced pancreatitis.
Topics: Acenocoumarol; Acute Disease; Animals; Anticoagulants; Disease Models, Animal; DNA; Dose-Response Re | 2015 |
Mannitol prevents acute lung injury after pancreas ischemia-reperfusion: a dose-response, ex vivo study.
Topics: Acute Lung Injury; Amylases; Animals; Antioxidants; Disease Models, Animal; Dose-Response Relationsh | 2009 |
Methylene blue attenuates pancreas ischemia-reperfusion (IR)-induced lung injury: a dose response study in a rat model.
Topics: Acute Lung Injury; Allopurinol; Amylases; Analysis of Variance; Animals; Antioxidants; Bronchoalveol | 2009 |
Reduction of the severity of ischemia reperfusion-induced pancreatitis by ischemic pre-conditioning of the liver.
Topics: Animals; Biomarkers; Disease Models, Animal; Enzymes; Interleukin-10; Interleukin-1beta; Ischemic Pr | 2009 |
Ductal injection of University of Wisconsin solution prior to pancreas preservation prevents oxidative cell damage.
Topics: Adenosine; Allopurinol; Animals; Glutathione; Insulin; Lipase; Models, Animal; Organ Preservation; O | 2009 |
Transcriptomic analysis of mild hypothermia-dependent alterations during endothelial reperfusion injury.
Topics: Apoptosis; Cell Cycle; Cell Line; Cell Proliferation; Chemokines; Cytokines; Endothelial Cells; Gene | 2010 |
Protective effects of deferoxamine mesylate preconditioning on pancreatic tissue in orthotopic liver autotransplantation in rats.
Topics: Amylases; Animals; Deferoxamine; Hypoxia-Inducible Factor 1, alpha Subunit; Immunohistochemistry; Li | 2011 |
The effect of warm liver ischaemia & reperfusion injury on circulating plasma lipid levels & lipolytic enzyme activity in rat & the impact of ischaemic preconditioning.
Topics: Alanine Transaminase; Animals; Aspartate Aminotransferases; Ischemic Preconditioning; Lipase; Lipids | 2012 |
The influence of epidermal growth factor on the course of ischemia-reperfusion induced pancreatitis in rats.
Topics: Amylases; Animals; DNA; Epidermal Growth Factor; Interleukin-1; Interleukin-10; Ischemia; Lipase; Ma | 2002 |
Effect of nitric oxide in ischemia/reperfusion of the pancreas.
Topics: Acute Disease; Adenosine Triphosphate; Animals; Arginine; Blood Pressure; Enzyme Inhibitors; Female; | 2002 |
Functional and structural integrity of porcine pancreatic grafts subjected to a period of warm ischemia and cold preservation with histidine-tryptophan-ketoglutarate (custodiol) or University of Wisconsin solution.
Topics: Adenosine; Allopurinol; Amylases; Animals; Cold Temperature; Edema; Glutathione; Graft Survival; Hot | 2003 |
Ischemic preconditioning reduces the severity of ischemia/reperfusion-induced pancreatitis.
Topics: Acute Disease; Animals; DNA; Interleukin-1; Interleukin-10; Ischemic Preconditioning; Lipase; Male; | 2003 |
Endothelin(A) receptor blockade reduces ischemia/reperfusion injury in pig pancreas transplantation.
Topics: Amylases; Animals; Blood Flow Velocity; C-Reactive Protein; Computer Graphics; Disease Models, Anima | 2003 |
Stimulation of sensory nerves and CGRP attenuate pancreatic damage in ischemia/reperfusion induced pancreatitis.
Topics: Amylases; Animals; Calcitonin Gene-Related Peptide; Capsaicin; Lipase; Male; Neurons, Afferent; Panc | 2003 |
Reduction of ischemia/reperfusion injury by antithrombin III after experimental pancreas transplantation.
Topics: Amylases; Animals; Antithrombin III; Immunohistochemistry; Lipase; Male; Microcirculation; Pancreas; | 2005 |
Melatonin reduces apoptosis and necrosis induced by ischemia/reperfusion injury of the pancreas.
Topics: Amylases; Animals; Apoptosis; Caspase 3; Caspases; Catalase; DNA Fragmentation; Glutathione; Glutath | 2006 |
Effect of ischemic preconditioning on pancreatic regeneration and pancreatic expression of vascular endothelial growth factor and platelet-derived growth factor-A in ischemia/reperfusion-induced pancreatitis.
Topics: Animals; DNA; Interleukin-1; Interleukin-10; Ischemic Preconditioning; Lipase; Male; Pancreas; Pancr | 2006 |
Single-shot antithrombin in human pancreas-kidney transplantation: reduction of reperfusion pancreatitis and prevention of graft thrombosis.
Topics: Adult; Antithrombins; Female; Humans; Immunosuppressive Agents; Kidney Transplantation; Lipase; Male | 2006 |
Pathophysiological role of platelets in acute experimental pancreatitis: influence of endothelin A receptor blockade.
Topics: Acute Disease; Amylases; Animals; Blood Platelets; Disease Models, Animal; Endothelin A Receptor Ant | 2007 |
Effect of postischemic reperfusion on the pancreas.
Topics: Amylases; Animals; Ischemia; Lipase; Male; Pancreas; Rats; Rats, Sprague-Dawley; Reactive Oxygen Spe | 1993 |
Role of xanthine oxidase and eicosanoids in development of pancreatic ischemia-reperfusion injury.
Topics: 6-Ketoprostaglandin F1 alpha; Allopurinol; Animals; Biomarkers; Cyclooxygenase Inhibitors; Dinoprost | 1995 |
Ischemia-reperfusion-induced pancreatic microvascular injury. An intravital fluorescence microscopic study in rats.
Topics: Acute Disease; Animals; Disease Models, Animal; Hemodynamics; Lipase; Microcirculation; Microscopy, | 1996 |
Differential effect of nitric oxide inhibition as a function of preservation period in pancreas transplantation.
Topics: 6-Ketoprostaglandin F1 alpha; Animals; Arginine; Cold Temperature; Enzyme Inhibitors; Leukotriene B4 | 1997 |
Nitric oxide enhances endothelin production in pancreas transplantation.
Topics: Animals; Arginine; Endothelins; Lipase; Male; NG-Nitroarginine Methyl Ester; Nitric Oxide; Nitric Ox | 1997 |
Ischemia/reperfusion injury of the pancreas: a new animal model.
Topics: Adenine Nucleotides; Animals; Female; Hematocrit; Ischemia; Lipase; Microscopy, Electron; Oxygen; Ox | 1998 |
Calpain inhibitor I reduces the activation of nuclear factor-kappaB and organ injury/dysfunction in hemorrhagic shock.
Topics: Animals; Blood Pressure; Cyclooxygenase 2; DNA; Glycoproteins; Heart Rate; I-kappa B Proteins; Intes | 2001 |
Ischemia/reperfusion-induced pancreatitis in rats: a new model of complete normothermic in situ ischemia of a pancreatic tail-segment.
Topics: Animals; Disease Models, Animal; Hemoglobins; Ischemia; Lipase; Male; Microcirculation; Oxygen; Panc | 2001 |
Effects of adenosine on ischaemia-reperfusion injury associated with rat pancreas transplantation.
Topics: Adenosine; Animals; Graft Survival; Inflammation; Lipase; Male; Neutrophils; Nitric Oxide; Nucleotid | 2001 |
Possible role of heat shock protein 60 in reducing ischemic-reperfusion injury in canine pancreas grafts after preservation by the two-layer method.
Topics: Adenosine Triphosphate; Amylases; Animals; Chaperonin 60; Dogs; Female; Graft Survival; HSP90 Heat-S | 2001 |
The effect of calcium antagonists on the activities of lipid metabolizing enzymes in the isolated ischaemically perfused and reperfused rat heart.
Topics: Acyltransferases; Animals; Calcium; Calcium Channel Blockers; Coronary Disease; Diltiazem; Glycerol- | 1990 |