nifedipine has been researched along with Injury, Ischemia-Reperfusion in 31 studies
Nifedipine: A potent vasodilator agent with calcium antagonistic action. It is a useful anti-anginal agent that also lowers blood pressure.
Excerpt | Relevance | Reference |
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"To evaluate the neuroprotective effects of benidipine hydrochloride on the cerebral cortex tissues in rats exposed to cerebral ischemia-reperfusion (I/R) injury." | 8.02 | Effects of Benidipine Hydrochloride on Ischemia Reperfusion Injury of Rat Brain. ( Arslan, YK; Cakir, T; Suleyman, H; Sunar, M; Yazici, GN; Yucetas, SC, 2021) |
" Therefore, this study was aimed to investigate the effects of mebudipine on myocardial arrhythmias and tissue injury induced by ischemia/reperfusion injury in isolated rat hearts." | 7.83 | The effects of mebudipine on myocardial arrhythmia induced by ischemia-reperfusion injury in isolated rat heart. ( Badalzadeh, R; Ghiasi, A; Ghiasi, R; Majidinia, M; Mohammadi, M; Yousefi, B, 2016) |
"The aim of the study was to determine if pretreatment with misoprostol (a prostaglandin analogue) or nifedipine (a calcium antagonist), know protectants of the whole liver, would ameliorate the ischemia-reperfusion injury (IRI) of resected liver associated with vascular occlusion." | 7.69 | Hepatic ischemia-reperfusion injury modification during liver surgery in rats: pretreatment with nifedipine or misoprostol. ( Hardy, KJ; Shulkes, A; Tancheroen, S, 1995) |
"The effects of verapamil and nifedipine on cellular mechanisms of arrhythmia were examined in isolated canine Purkinje fiber-papillary muscles." | 7.68 | Effects of verapamil and nifedipine on mechanisms of arrhythmia in an in vitro model of ischemia and reperfusion. ( Ferrier, GR; Mohabir, R, 1991) |
"To evaluate the neuroprotective effects of benidipine hydrochloride on the cerebral cortex tissues in rats exposed to cerebral ischemia-reperfusion (I/R) injury." | 4.02 | Effects of Benidipine Hydrochloride on Ischemia Reperfusion Injury of Rat Brain. ( Arslan, YK; Cakir, T; Suleyman, H; Sunar, M; Yazici, GN; Yucetas, SC, 2021) |
" Therefore, this study was aimed to investigate the effects of mebudipine on myocardial arrhythmias and tissue injury induced by ischemia/reperfusion injury in isolated rat hearts." | 3.83 | The effects of mebudipine on myocardial arrhythmia induced by ischemia-reperfusion injury in isolated rat heart. ( Badalzadeh, R; Ghiasi, A; Ghiasi, R; Majidinia, M; Mohammadi, M; Yousefi, B, 2016) |
" This study investigated the effects of nifedipine, an L-type voltage-gated Ca(2+) channel blocker, on ischemic lesion volume after focal cerebral ischemia and reperfusion in rats." | 3.77 | Nifedipine treatment reduces brain damage after transient focal ischemia, possibly through its antioxidative effects. ( Honda, Y; Ide, T; Shiba, T; Tsutsui, H; Yamada, K; Yamato, M, 2011) |
"The effects of three drugs including ketamine(KT), a noncompetitive antagonist of NMDA receptor (NR), nifedipine(ND), a voltage gated calcium channel (VGCC) antagonist and 6, 7dinitroquinoxaline -2, 3-dione(DNQX), a non-NMDA receptor antagonist on the contents of phospho-tyrosine proteins (p-tyr-pr) in the synaptosomal(P2), the crude membrane (P3), and the cytosolic (S3) fractions of hippocampus in forebrain ischemia of mongolian gerbils were studied." | 3.71 | [Effects of ischemia/reperfusion on the phosphotyrosine proteins contents in hippocampus]. ( Gui, ZH; Li, Y; Pei, L; Zhang, GY; Zhu, ZM, 2001) |
"To determine whether topical application of flunarizine reduces intraocular pressure (IOP) and acts as a retinal neuroprotectant and to compare the effectiveness of flunarizine with betaxolol and nifedipine at reducing the influx of calcium and sodium." | 3.71 | Topical flunarizine reduces IOP and protects the retina against ischemia-excitotoxicity. ( Chidlow, G; Cupido, A; Melena, J; Osborne, NN; Wood, JP, 2002) |
"The aim of the study was to determine if pretreatment with misoprostol (a prostaglandin analogue) or nifedipine (a calcium antagonist), know protectants of the whole liver, would ameliorate the ischemia-reperfusion injury (IRI) of resected liver associated with vascular occlusion." | 3.69 | Hepatic ischemia-reperfusion injury modification during liver surgery in rats: pretreatment with nifedipine or misoprostol. ( Hardy, KJ; Shulkes, A; Tancheroen, S, 1995) |
"The effects of verapamil and nifedipine on cellular mechanisms of arrhythmia were examined in isolated canine Purkinje fiber-papillary muscles." | 3.68 | Effects of verapamil and nifedipine on mechanisms of arrhythmia in an in vitro model of ischemia and reperfusion. ( Ferrier, GR; Mohabir, R, 1991) |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 11 (35.48) | 18.2507 |
2000's | 13 (41.94) | 29.6817 |
2010's | 6 (19.35) | 24.3611 |
2020's | 1 (3.23) | 2.80 |
Authors | Studies |
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Tenti, G | 1 |
Parada, E | 1 |
León, R | 1 |
Egea, J | 1 |
Martínez-Revelles, S | 1 |
Briones, AM | 1 |
Sridharan, V | 1 |
López, MG | 1 |
Ramos, MT | 1 |
Menéndez, JC | 1 |
Cakir, T | 1 |
Yucetas, SC | 1 |
Yazici, GN | 1 |
Sunar, M | 1 |
Arslan, YK | 1 |
Suleyman, H | 1 |
Santa-Helena, E | 1 |
Teixeira, S | 1 |
Castro, MR | 1 |
Cabrera, DDC | 1 |
D'Oca, CDRM | 1 |
D'Oca, MGM | 1 |
Votto, APS | 1 |
Nery, LEM | 1 |
Gonçalves, CAN | 1 |
Eraslan, E | 1 |
Tanyeli, A | 1 |
Polat, E | 2 |
Ghiasi, R | 1 |
Mohammadi, M | 1 |
Majidinia, M | 1 |
Yousefi, B | 1 |
Ghiasi, A | 1 |
Badalzadeh, R | 1 |
Cipolla, MJ | 1 |
Bullinger, LV | 1 |
Tavakoli-Far, B | 1 |
Rahbar-Roshandel, N | 1 |
Rahimi-Moghaddam, P | 1 |
Mahmoudian, M | 1 |
Pei, L | 4 |
Li, Y | 4 |
Zhang, GY | 4 |
Gui, ZH | 1 |
Zhu, ZM | 3 |
Yamato, M | 1 |
Shiba, T | 1 |
Ide, T | 1 |
Honda, Y | 1 |
Yamada, K | 1 |
Tsutsui, H | 1 |
Rinker, B | 1 |
Fink, BF | 1 |
Stoker, AR | 1 |
Milan, ME | 1 |
Nelson, PT | 1 |
Zhang, C | 2 |
Shen, W | 2 |
Zhang, G | 2 |
El-Abhar, HS | 1 |
Shaalan, M | 1 |
Barakat, M | 1 |
El-Denshary, ES | 1 |
Chidlow, G | 2 |
Schmidt, KG | 1 |
Wood, JP | 2 |
Melena, J | 2 |
Osborne, NN | 2 |
Bagate, K | 1 |
Meiring, JJ | 1 |
Gerlofs-Nijland, ME | 1 |
Cassee, FR | 1 |
Wiegand, H | 1 |
Osornio-Vargas, A | 1 |
Borm, PJ | 1 |
Toronyi, E | 2 |
Haverich, A | 2 |
Karck, M | 2 |
Matsuda, T | 1 |
Takuma, K | 1 |
Nishiguchi, E | 1 |
Hashimoto, H | 1 |
Azuma, J | 1 |
Baba, A | 1 |
al-Dohayan, AD | 1 |
al-Tuwaijri, AS | 1 |
Hardy, KJ | 1 |
Tancheroen, S | 1 |
Shulkes, A | 1 |
Bouskela, E | 1 |
Cyrino, FZ | 1 |
Conde, CM | 1 |
Garcia, AA | 1 |
Hamar, J | 1 |
Perner, F | 1 |
Szende, B | 1 |
Cui, ZC | 2 |
Yan, JZ | 1 |
Cupido, A | 1 |
Mohabir, R | 1 |
Ferrier, GR | 1 |
Pickford, MA | 1 |
Green, CJ | 1 |
Sarathchandra, P | 1 |
Fryer, PR | 1 |
Ferguson, CJ | 1 |
Hillis, AN | 1 |
Williams, JD | 1 |
Griffin, PJ | 1 |
Salaman, JR | 1 |
Griffiths, EJ | 1 |
Brunt, RV | 1 |
1 review available for nifedipine and Injury, Ischemia-Reperfusion
Article | Year |
---|---|
[Role of apoptosis in the kidney after reperfusion].
Topics: Animals; Apoptosis; Bepridil; Calcium Channel Blockers; Disease Models, Animal; Fendiline; Humans; K | 2008 |
30 other studies available for nifedipine and Injury, Ischemia-Reperfusion
Article | Year |
---|---|
New 5-unsubstituted dihydropyridines with improved CaV1.3 selectivity as potential neuroprotective agents against ischemic injury.
Topics: Animals; Brain Ischemia; Calcium; Calcium Channels, L-Type; Calcium Signaling; Cell Line, Tumor; Dih | 2014 |
Effects of Benidipine Hydrochloride on Ischemia Reperfusion Injury of Rat Brain.
Topics: Animals; Brain; Brain Ischemia; Male; Neuroprotective Agents; Nifedipine; Random Allocation; Rats; R | 2021 |
Protective role of the novel hybrid 3,5-dipalmitoyl-nifedipine in a cardiomyoblast culture subjected to simulated ischemia/reperfusion.
Topics: Animals; Calcium Channel Blockers; Cardiotonic Agents; Cell Survival; Cells, Cultured; Dose-Response | 2017 |
8-Br-cADPR, a TRPM2 ion channel antagonist, inhibits renal ischemia-reperfusion injury.
Topics: Animals; Anti-Inflammatory Agents; Apoptosis; Blood Urea Nitrogen; Calcium Channel Blockers; Catalas | 2019 |
The effects of mebudipine on myocardial arrhythmia induced by ischemia-reperfusion injury in isolated rat heart.
Topics: Animals; Arrhythmias, Cardiac; Creatine Kinase; Heart; Heart Rate; In Vitro Techniques; L-Lactate De | 2016 |
Reactivity of brain parenchymal arterioles after ischemia and reperfusion.
Topics: Animals; Arterioles; Brain; Brain Ischemia; Cerebrovascular Circulation; Enzyme Inhibitors; Male; Mi | 2008 |
Neuroprotective effects of mebudipine and dibudipine on cerebral oxygen-glucose deprivation/reperfusion injury.
Topics: alpha-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid; Animals; Cell Death; Cell Survival; Cells, | 2009 |
[Effects of ischemia/reperfusion on the phosphotyrosine proteins contents in hippocampus].
Topics: Animals; Brain Ischemia; Calcium Channel Blockers; Calcium Channels; Excitatory Amino Acid Antagonis | 2001 |
Nifedipine treatment reduces brain damage after transient focal ischemia, possibly through its antioxidative effects.
Topics: Animals; Antioxidants; Brain; Brain Ischemia; Male; Mitochondria; Nifedipine; Oxidative Stress; Rats | 2011 |
Calcium channel blockers reduce the effects of cigarette smoking on peripheral nerve ischemia/reperfusion injury.
Topics: Animals; Calcium Channel Blockers; Cotinine; Disease Models, Animal; Male; Nifedipine; Rats; Rats, W | 2013 |
N-methyl-D-aspartate receptor and L-type voltage-gated Ca(2+) channel antagonists suppress the release of cytochrome c and the expression of procaspase-3 in rat hippocampus after global brain ischemia.
Topics: Animals; Brain Ischemia; Calcium Channel Blockers; Calcium Channels, L-Type; Caspase 3; Caspase Inhi | 2002 |
Effect of melatonin and nifedipine on some antioxidant enzymes and different energy fuels in the blood and brain of global ischemic rats.
Topics: 3-Hydroxybutyric Acid; Animals; Antioxidants; Blood; Brain; Calcium Channel Blockers; Disease Models | 2002 |
Alpha-lipoic acid protects the retina against ischemia-reperfusion.
Topics: Anesthetics, Local; Animals; Antioxidants; Binding, Competitive; Brain-Derived Neurotrophic Factor; | 2002 |
Ambient particulate matter affects cardiac recovery in a Langendorff ischemia model.
Topics: Air Pollutants; Animals; Calcium; Calcium Channel Blockers; Calcium Channels; Coronary Circulation; | 2006 |
Role of calcium channel blockers in postischemic lungs.
Topics: Animals; Diltiazem; Hemodynamics; Lung; Nifedipine; Rabbits; Reperfusion Injury; Water-Electrolyte B | 1994 |
Involvement of Na+-Ca2+ exchanger in reperfusion-induced delayed cell death of cultured rat astrocytes.
Topics: Amiloride; Animals; Astrocytes; Calcium; Calcium Channel Blockers; Carrier Proteins; Cell Death; Cel | 1996 |
The potential synergistic effect of calcium channel blockers and alpha-tocopherol on gastric mucosal injury induced by ischaemia-reperfusion.
Topics: Administration, Oral; Animals; Calcium Channel Blockers; Diltiazem; Disease Models, Animal; Dose-Res | 1996 |
Hepatic ischemia-reperfusion injury modification during liver surgery in rats: pretreatment with nifedipine or misoprostol.
Topics: Animals; Calcium Channel Blockers; Disease Models, Animal; Hepatectomy; Liver; Liver Diseases; Liver | 1995 |
Microvascular permeability with sulfonylureas in normal and diabetic hamsters.
Topics: Animals; Calcium Channel Blockers; Calcium Channels; Capillary Permeability; Cricetinae; Dextrans; D | 1997 |
Prevention of apoptosis reperfusion renal injury by calcium channel blockers.
Topics: Animals; Apoptosis; Bepridil; Calcium Channel Blockers; Fendiline; Kidney; Kidney Tubules; Male; Nif | 1999 |
Mechanisms of regulation of tyrosine phosphorylation of NMDA receptor subunit 2B after cerebral ischemia/reperfusion.
Topics: Animals; Calcium Channel Blockers; Genistein; Gerbillinae; Hippocampus; Ischemic Attack, Transient; | 2000 |
Changes and mechanisms of protein-tyrosine kinase and protein-tyrosine phosphatase activities after brain ischemia/reperfusion.
Topics: Animals; Calcium Channel Blockers; Gerbillinae; Hippocampus; Ischemic Attack, Transient; Ketamine; N | 2000 |
Nuclear factor kappaB activation is mediated by NMDA and non-NMDA receptor and L-type voltage-gated Ca(2+) channel following severe global ischemia in rat hippocampus.
Topics: Animals; Brain Ischemia; Calcium Channel Blockers; Calcium Channels, L-Type; Cytoplasm; Excitatory A | 2002 |
[Effect of ischemia/reperfusion on the phosphorylation of synaptosomal tyrosine of hippocampus of Mongolian gerbils].
Topics: Animals; Brain Ischemia; Calcium Channels, L-Type; Gerbillinae; Hippocampus; Ketamine; Nifedipine; P | 2000 |
Topical flunarizine reduces IOP and protects the retina against ischemia-excitotoxicity.
Topics: Administration, Topical; Adrenergic beta-Antagonists; Animals; Betaxolol; Calcium; Calcium Channel B | 2002 |
Nifedipine and diltiazem reduce pulmonary edema formation during postischemic reperfusion of the rabbit lung.
Topics: Animals; Diltiazem; Hemodynamics; Lung Transplantation; Nifedipine; Pulmonary Edema; Rabbits; Reperf | 1992 |
Effects of verapamil and nifedipine on mechanisms of arrhythmia in an in vitro model of ischemia and reperfusion.
Topics: Animals; Arrhythmias, Cardiac; Calcium Channel Blockers; Diastole; Dogs; Electrophysiology; Heart Co | 1991 |
Ultrastructural changes in rat lungs after 48 h cold storage with and without reperfusion.
Topics: Allopurinol; Animals; Basement Membrane; Cryopreservation; Deferoxamine; Endothelium, Vascular; Epop | 1990 |
Calcium-channel blockers and other factors influencing delayed function in renal allografts.
Topics: Adult; Calcium Channel Blockers; Graft Survival; Humans; Immunosuppression Therapy; Kidney Transplan | 1990 |
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 |