spermidine has been researched along with Reperfusion Injury in 10 studies
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 |
---|---|---|
"Kidney ischemia and reperfusion injury (IRI) is associated with a high mortality rate, which is attributed to tubular oxidative stress and necrosis; however, an effective approach to limit IRI remains elusive." | 5.46 | Spermidine rescues proximal tubular cells from oxidative stress and necrosis after ischemic acute kidney injury. ( Kim, J, 2017) |
" This study investigated the impact of polyamines (spermidine and spermine) on ischemia/reperfusion injury (IRI) and liver regeneration." | 3.83 | Oral administration of polyamines ameliorates liver ischemia/reperfusion injury and promotes liver regeneration in rats. ( Fujimoto, Y; Iida, T; Kaido, T; Kasahara, N; Masano, Y; Okumura, S; Teratani, T; Tsuruyama, T; Uemoto, S; Uemura, T; Yagi, S; Zhao, X, 2016) |
"Kidney ischemia and reperfusion injury (IRI) is associated with a high mortality rate, which is attributed to tubular oxidative stress and necrosis; however, an effective approach to limit IRI remains elusive." | 1.46 | Spermidine rescues proximal tubular cells from oxidative stress and necrosis after ischemic acute kidney injury. ( Kim, J, 2017) |
"Acute kidney injury is associated with the activation of NMDA receptors, as well as significant oxidative stress." | 1.39 | Effect of modulating the allosteric sites of N-methyl-D-aspartate receptors in ischemia-reperfusion induced acute kidney injury. ( Arora, S; Kaur, T; Pundir, M; Singh, AP; Singh, R, 2013) |
"Thymoquinone treatment caused the reversal of I/R-induced changes in MDA as well as GST and SOD activity." | 1.37 | Effect of thymoquinone on hepatorenal dysfunction and alteration of CYP3A1 and spermidine/spermine N-1-acetyl-transferase gene expression induced by renal ischaemia-reperfusion in rats. ( Awad, AS; Kamel, R; Sherief, MA, 2011) |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 3 (30.00) | 29.6817 |
2010's | 6 (60.00) | 24.3611 |
2020's | 1 (10.00) | 2.80 |
Authors | Studies |
---|---|
Sieckmann, T | 1 |
Schley, G | 1 |
Ögel, N | 1 |
Kelterborn, S | 1 |
Boivin, FJ | 1 |
Fähling, M | 1 |
Ashraf, MI | 1 |
Reichel, M | 1 |
Vigolo, E | 1 |
Hartner, A | 1 |
Lichtenberger, FB | 1 |
Breiderhoff, T | 1 |
Knauf, F | 1 |
Rosenberger, C | 1 |
Aigner, F | 1 |
Schmidt-Ott, K | 1 |
Scholz, H | 1 |
Kirschner, KM | 1 |
Liu, H | 1 |
Dong, J | 1 |
Song, S | 1 |
Zhao, Y | 1 |
Wang, J | 1 |
Fu, Z | 1 |
Yang, J | 1 |
Yang, Y | 1 |
Chen, S | 1 |
Zhang, Y | 1 |
Lin, X | 1 |
Song, Y | 1 |
Xue, Z | 1 |
Qian, H | 1 |
Wang, S | 1 |
Wan, G | 1 |
Zheng, X | 1 |
Zhang, L | 1 |
Kim, J | 1 |
Pundir, M | 1 |
Arora, S | 1 |
Kaur, T | 1 |
Singh, R | 1 |
Singh, AP | 1 |
Okumura, S | 1 |
Teratani, T | 1 |
Fujimoto, Y | 1 |
Zhao, X | 1 |
Tsuruyama, T | 1 |
Masano, Y | 1 |
Kasahara, N | 1 |
Iida, T | 1 |
Yagi, S | 1 |
Uemura, T | 1 |
Kaido, T | 1 |
Uemoto, S | 1 |
Awad, AS | 1 |
Kamel, R | 1 |
Sherief, MA | 1 |
Diler, AS | 1 |
Ziylan, YZ | 1 |
Uzum, G | 1 |
Lefauconnier, JM | 1 |
Seylaz, J | 1 |
Pinard, E | 1 |
Reid, KM | 1 |
Tsung, A | 1 |
Kaizu, T | 1 |
Jeyabalan, G | 1 |
Ikeda, A | 1 |
Shao, L | 1 |
Wu, G | 1 |
Murase, N | 1 |
Geller, DA | 1 |
Rao, AM | 1 |
Hatcher, JF | 1 |
Doğan, A | 1 |
Dempsey, RJ | 1 |
10 other studies available for spermidine and Reperfusion Injury
Article | Year |
---|---|
Strikingly conserved gene expression changes of polyamine regulating enzymes among various forms of acute and chronic kidney injury.
Topics: Acetyltransferases; Amine Oxidase (Copper-Containing); Animals; Gene Expression; Humans; Kidney; Mic | 2023 |
Spermidine ameliorates liver ischaemia-reperfusion injury through the regulation of autophagy by the AMPK-mTOR-ULK1 signalling pathway.
Topics: AMP-Activated Protein Kinases; Animals; Autophagy; Autophagy-Related Protein-1 Homolog; Liver; Male; | 2019 |
Induction of autophagy by spermidine is neuroprotective via inhibition of caspase 3-mediated Beclin 1 cleavage.
Topics: Animals; Autophagy; Beclin-1; Caspase 3; Cerebral Cortex; Hippocampus; Neurons; Neuroprotective Agen | 2017 |
Spermidine rescues proximal tubular cells from oxidative stress and necrosis after ischemic acute kidney injury.
Topics: Animals; Antioxidants; Cell Culture Techniques; Disease Models, Animal; Gene Knockdown Techniques; H | 2017 |
Effect of modulating the allosteric sites of N-methyl-D-aspartate receptors in ischemia-reperfusion induced acute kidney injury.
Topics: Acute Kidney Injury; Allosteric Site; Animals; Catalase; Glutamic Acid; Glutathione; Ketamine; Kynur | 2013 |
Oral administration of polyamines ameliorates liver ischemia/reperfusion injury and promotes liver regeneration in rats.
Topics: Administration, Oral; Alanine Transaminase; Animals; Apoptosis; Aspartate Aminotransferases; Cell Pr | 2016 |
Effect of thymoquinone on hepatorenal dysfunction and alteration of CYP3A1 and spermidine/spermine N-1-acetyl-transferase gene expression induced by renal ischaemia-reperfusion in rats.
Topics: Acetyltransferases; Alanine Transaminase; Animals; Antioxidants; Benzoquinones; Creatinine; Cytochro | 2011 |
Passage of spermidine across the blood-brain barrier in short recirculation periods following global cerebral ischemia: effects of mild hyperthermia.
Topics: Aminoisobutyric Acids; Animals; Blood-Brain Barrier; Brain; Brain Ischemia; Hypothermia, Induced; Ma | 2002 |
Liver I/R injury is improved by the arginase inhibitor, N(omega)-hydroxy-nor-L-arginine (nor-NOHA).
Topics: Alanine Transaminase; Animals; Arginase; Arginine; Aspartate Aminotransferases; Biogenic Polyamines; | 2007 |
Elevated N1-acetylspermidine levels in gerbil and rat brains after CNS injury.
Topics: Animals; Arterial Occlusive Diseases; Blood-Brain Barrier; Brain; Brain Injuries; Cerebral Arteries; | 2000 |