gamma-aminobutyric acid has been researched along with Reperfusion Injury in 54 studies
gamma-Aminobutyric Acid: The most common inhibitory neurotransmitter in the central nervous system.
gamma-aminobutyric acid : A gamma-amino acid that is butanoic acid with the amino substituent located at C-4.
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 |
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"To investigate the effects of dexmedetomidine (DEX) on amino acid contents and the cerebral ultrastructure of rats with cerebral ischemia-reperfusion injury (I/R)." | 7.85 | Impact of dexmedetomidine on amino acid contents and the cerebral ultrastructure of rats with cerebral ischemia-reperfusion injury. ( Fu, Z; Lin, S; Shao, W; Zhou, G, 2017) |
"Dexmedetomidine is capable of decreasing glutamergic content, and increasing GABAergic content, in order to decrease the injury of the cerebral ultrastructure, following cerebral ischemia-reperfusion injury." | 7.85 | Impact of dexmedetomidine on amino acid contents and the cerebral ultrastructure of rats with cerebral ischemia-reperfusion injury. ( Fu, Z; Lin, S; Shao, W; Zhou, G, 2017) |
" This study aims to investigate the neuroprotective effects of gabapentin in an experimental spinal cord ischemia reperfusion injury." | 7.77 | Neuroprotective effects of gabapentin on spinal cord ischemia-reperfusion injury in rabbits. ( Börcek, AÖ; Doğulu, F; Durdağ, E; Emmez, H; Kale, A; Kılıç, N; Kurt, G; Lortlar, N; Yildirim, Z, 2011) |
" Ouabain and monensin mimicked reperfusion injury and their toxicity was also reduced by taurine." | 7.69 | Protective effect of taurine against reperfusion injury in cultured rat astrocytes. ( Azuma, J; Baba, A; Kishida, Y; Matsuda, T; Takuma, K, 1996) |
"Ouabain and monensin mimicked reperfusion injury and their toxicity was also reduced by taurine." | 5.29 | Protective effect of taurine against reperfusion injury in cultured rat astrocytes. ( Azuma, J; Baba, A; Kishida, Y; Matsuda, T; Takuma, K, 1996) |
"To investigate the effects of dexmedetomidine (DEX) on amino acid contents and the cerebral ultrastructure of rats with cerebral ischemia-reperfusion injury (I/R)." | 3.85 | Impact of dexmedetomidine on amino acid contents and the cerebral ultrastructure of rats with cerebral ischemia-reperfusion injury. ( Fu, Z; Lin, S; Shao, W; Zhou, G, 2017) |
"Dexmedetomidine is capable of decreasing glutamergic content, and increasing GABAergic content, in order to decrease the injury of the cerebral ultrastructure, following cerebral ischemia-reperfusion injury." | 3.85 | Impact of dexmedetomidine on amino acid contents and the cerebral ultrastructure of rats with cerebral ischemia-reperfusion injury. ( Fu, Z; Lin, S; Shao, W; Zhou, G, 2017) |
" Although a number of studies have investigated that ginkgolide B, a purified terpene lactone component extracted from Ginkgo biloba leaves, is available "platelet activating factor (PAF) receptors antagonist", "antioxidant" with a variety of actions, very little has been performed to explore the effect of ginkgolide B on extracellular amino acids in experimental animal of focal cerebral ischemia/reperfusion." | 3.77 | Effect of ginkgolide B on striatal extracellular amino acids in middle cerebral artery occluded rats. ( Feng, W; Li, J; Li, SX; Wang, H; Yang, ZZ, 2011) |
" This study aims to investigate the neuroprotective effects of gabapentin in an experimental spinal cord ischemia reperfusion injury." | 3.77 | Neuroprotective effects of gabapentin on spinal cord ischemia-reperfusion injury in rabbits. ( Börcek, AÖ; Doğulu, F; Durdağ, E; Emmez, H; Kale, A; Kılıç, N; Kurt, G; Lortlar, N; Yildirim, Z, 2011) |
"Our latest study indicated that ethanol could attenuate cerebral ischemia/reperfusion-induced brain injury through activating Ionotropic glutamate receptors Kainate Family (Gluk1)-kainate (KA) receptors and gamma-aminobutyric acid (GABA) receptors." | 3.76 | Neuroprotection of ethanol against ischemia/reperfusion-induced brain injury through decreasing c-Jun N-terminal kinase 3 (JNK3) activation by enhancing GABA release. ( Gu, YH; Guan, QH; Hao, LY; Liu, Y; Qi, SH; Wang, M; Yan, H; Zhang, GY; Zhang, J, 2010) |
" Therefore, it was aimed to study whether dipyridamole (CAS 58-32-2), an adenosine uptake inhibitor, or adenosine (CAS 58-61-7) could affect the rat brain gamma-aminobutyric acid (GABA, CAS 56-12-2) level after induction of cerebral ischemia, and to test their effect on the lactate dehydrogenase (LDH) activity of the ischemic rat brain." | 3.71 | Influence of inhibition of adenosine uptake on the gamma-aminobutyric acid level of the ischemic rat brain. ( Khattab, M; Seif-el-Nasr, M, 2002) |
"The aim of this study was to determine wether flupirtine can slow down the changes seen in the rabbit retina after ischemia--reperfusion." | 3.69 | Protection of rabbit retina from ischemic injury by flupirtine. ( Osborne, NN; Pergande, G; Schwarz, M, 1996) |
"Combined data show that flupirtine is a neuroprotective agent in retinal ischemia and that one mode of its mechanism of action is to influence ATP levels." | 3.69 | Protection of rabbit retina from ischemic injury by flupirtine. ( Osborne, NN; Pergande, G; Schwarz, M, 1996) |
" Ouabain and monensin mimicked reperfusion injury and their toxicity was also reduced by taurine." | 3.69 | Protective effect of taurine against reperfusion injury in cultured rat astrocytes. ( Azuma, J; Baba, A; Kishida, Y; Matsuda, T; Takuma, K, 1996) |
"Icaritin (ICT) has been previously demonstrated to display protective effects against cerebral ischemic reperfusion (I/R) by inhibiting oxidative stress, but the mechanism remains unclear." | 1.91 | UHPLC-ESI-QE-Orbitrap-MS based metabolomics reveals the antioxidant mechanism of icaritin on mice with cerebral ischemic reperfusion. ( Feng, Z; Liu, Z; Sun, C; Sun, L; Tang, Y; Yao, J; Zhang, G; Zhao, Y, 2023) |
"TTC staining was used to detect cerebral infarction volume, and the brain water content of rats in each group was determined by wet and dry weight method." | 1.91 | [Effects of Governor Vessel electroacupuncture on chloridion homeostasis in the cortex of rats with limb spasm after cerebral ischemia-reperfusion]. ( Guo, J; Li, JW; Li, RQ; Mei, JJ; Wang, YY; Zhang, JY; Zhang, LH, 2023) |
"This study utilized a cerebral ischemia reperfusion (IR) model to produce a stressful brain condition that highlights the possible involvement of a hippocampal GC/pERK1/2/BDNF pathway in the resulting sexual consequences of this ailment." | 1.72 | Insights into the role of pERK1/2 signaling in post-cerebral ischemia reperfusion sexual dysfunction in rats. ( El-Sahar, AE; Khattab, MA; Mohammed, RA; Saad, MA; Sayed, RH, 2022) |
"Memantine was used as a positive control." | 1.43 | Low dose of L-glutamic acid attenuated the neurological dysfunctions and excitotoxicity in bilateral common carotid artery occluded mice. ( Abdul, KK; Justin, A; Ramanathan, M, 2016) |
"Those that developed cerebral ischemia after MCAO were randomized to receive propylene glycol salt water and ligustrazine respectively." | 1.40 | Effect of ligustrazine on levels of amino acid neurotransmitters in rat striatum after cerebral ischemia-reperfusion injury. ( Bie, XD; Ge, LJ; Han, J; Wan, HT; Yang, JH; Zhang, YY, 2014) |
"Mice exhibited spontaneous neuropathic pain behaviors, which were most obvious after ischemia for 5 h." | 1.38 | Patterns of nerve injury and neuropathic pain in ischemic neuropathy after ligation-reperfusion of femoral artery in mice. ( Chiang, HY; Hsieh, JH; Hsieh, ST; Lee, JE; Wang, KC, 2012) |
" Compared with the model group, the concentration of Glu in the middle and large dosage groups of TGF, during the 120 min of ischemia, reduced by 38." | 1.32 | [Effects of tianma gouteng fang on transmitter amino acids in the hippocampus extracellular liquids in freely moving rats subjected to brain ischemia]. ( Du, GY; Sun, XF; Wang, DQ; Wang, W; Ye, ZG; Zhang, CY; Zhao, DZ, 2004) |
"Lactic acidosis has been implicated; however, increases in the excitotoxic amino acid glutamate, which correlate with increased neuronal damage, may be the cause for the increased damage seen in hyperglycemic stroke." | 1.31 | The effect of streptozotocin-induced diabetes on the release of excitotoxic and other amino acids from the ischemic rat cerebral cortex. ( Diaz, FG; Guyot, LL; O'Regan, MH; Phillis, JW; Song, D, 2001) |
"Dipyridamole was administered alone and in combination with adenosine and the effect of the drugs on the brain GABA level as well as on LDH activity was determined." | 1.31 | Influence of inhibition of adenosine uptake on the gamma-aminobutyric acid level of the ischemic rat brain. ( Khattab, M; Seif-el-Nasr, M, 2002) |
"Flupirtine may lower the activity of NMDA receptors, thus causing ATP levels to be less affected in the presence of the drug as a secondary effect." | 1.29 | Protection of rabbit retina from ischemic injury by flupirtine. ( Osborne, NN; Pergande, G; Schwarz, M, 1996) |
"When tiagabine was injected 10 min following onset of reperfusion, GABA levels remained elevated (200-470%) for 90 min." | 1.29 | Postischemic inhibition of GABA reuptake by tiagabine slows neuronal death in the gerbil hippocampus. ( Inglefield, JR; Perry, JM; Schwartz, RD, 1995) |
" We used in vivo microdialysis to determine a suitable dosing regimen for tiagabine (NNC328) to elevate extracellular levels of GABA within the hippocampus." | 1.29 | Postischemic inhibition of GABA reuptake by tiagabine slows neuronal death in the gerbil hippocampus. ( Inglefield, JR; Perry, JM; Schwartz, RD, 1995) |
"Ouabain and monensin mimicked reperfusion injury and their toxicity was also reduced by taurine." | 1.29 | Protective effect of taurine against reperfusion injury in cultured rat astrocytes. ( Azuma, J; Baba, A; Kishida, Y; Matsuda, T; Takuma, K, 1996) |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 12 (22.22) | 18.2507 |
2000's | 17 (31.48) | 29.6817 |
2010's | 20 (37.04) | 24.3611 |
2020's | 5 (9.26) | 2.80 |
Authors | Studies |
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Kumar, M | 1 |
Singh, G | 1 |
Kushwah, AS | 1 |
Surampalli, G | 1 |
Singh, TG | 1 |
Gupta, S | 1 |
Mohammed, RA | 1 |
Sayed, RH | 1 |
El-Sahar, AE | 1 |
Khattab, MA | 1 |
Saad, MA | 2 |
Du, Y | 2 |
Li, C | 1 |
Xu, S | 1 |
Yang, J | 1 |
Wan, H | 1 |
He, Y | 1 |
Tang, Y | 1 |
Sun, L | 1 |
Zhao, Y | 1 |
Yao, J | 1 |
Feng, Z | 1 |
Liu, Z | 1 |
Zhang, G | 1 |
Sun, C | 1 |
Wang, YY | 1 |
Li, RQ | 1 |
Li, JW | 1 |
Mei, JJ | 1 |
Zhang, LH | 1 |
Zhang, JY | 1 |
Guo, J | 1 |
Chen, C | 1 |
Zhou, X | 1 |
He, J | 1 |
Xie, Z | 1 |
Xia, S | 1 |
Lu, G | 1 |
Lin, S | 1 |
Zhou, G | 1 |
Shao, W | 1 |
Fu, Z | 1 |
Yang, CY | 1 |
Liu, SY | 1 |
Wang, HY | 1 |
Li, YL | 1 |
Guo, D | 1 |
Wang, XY | 1 |
Hua, W | 1 |
Wang, GL | 1 |
Zhang, M | 1 |
Sun, X | 1 |
Guo, F | 1 |
Gong, Y | 1 |
Xu, L | 1 |
Kubota, A | 1 |
Kobayashi, M | 1 |
Sarashina, S | 1 |
Takeno, R | 1 |
Yasuda, G | 1 |
Narumi, K | 1 |
Furugen, A | 1 |
Takahashi-Suzuki, N | 1 |
Iseki, K | 1 |
Han, J | 1 |
Wan, HT | 1 |
Yang, JH | 1 |
Zhang, YY | 1 |
Ge, LJ | 1 |
Bie, XD | 1 |
Kobuchi, S | 3 |
Tanaka, R | 3 |
Shintani, T | 3 |
Suzuki, R | 3 |
Tsutsui, H | 3 |
Ohkita, M | 3 |
Matsumura, Y | 3 |
Ayajiki, K | 3 |
Abdelsalam, RM | 1 |
Kenawy, SA | 1 |
Attia, AS | 1 |
Safonova, OA | 1 |
Popova, TN | 1 |
Slivkin, AI | 1 |
Talmi, Y | 1 |
Ramanathan, M | 2 |
Abdul, KK | 1 |
Justin, A | 2 |
Hirooka, K | 1 |
Miyamoto, O | 1 |
Itano, T | 1 |
Tokuda, M | 1 |
Shiraga, F | 1 |
Sugiura, T | 1 |
Fujii, T | 1 |
Qi, SH | 1 |
Liu, Y | 2 |
Hao, LY | 1 |
Guan, QH | 1 |
Gu, YH | 1 |
Zhang, J | 2 |
Yan, H | 1 |
Wang, M | 1 |
Zhang, GY | 2 |
Yang, ZZ | 1 |
Li, J | 1 |
Li, SX | 1 |
Feng, W | 1 |
Wang, H | 1 |
Kale, A | 1 |
Börcek, AÖ | 1 |
Emmez, H | 1 |
Yildirim, Z | 1 |
Durdağ, E | 1 |
Lortlar, N | 1 |
Kurt, G | 1 |
Doğulu, F | 1 |
Kılıç, N | 1 |
Ricci, L | 1 |
Valoti, M | 1 |
Sgaragli, G | 1 |
Frosini, M | 1 |
Lv, Q | 1 |
Han, D | 1 |
Xu, J | 1 |
Zong, YY | 1 |
Wang, Y | 2 |
Babu, CS | 1 |
Shanthakumari, S | 1 |
Zhu, SP | 1 |
Fei, SJ | 1 |
Zhang, JF | 1 |
Zhu, JZ | 1 |
Li, Y | 1 |
Liu, ZB | 1 |
Qiao, X | 1 |
Li, TT | 1 |
Lee, JE | 1 |
Wang, KC | 1 |
Chiang, HY | 1 |
Hsieh, JH | 1 |
Hsieh, ST | 1 |
Du, DS | 1 |
Zhu, T | 1 |
Ren, ST | 1 |
Xie, GL | 1 |
Li, SB | 1 |
Chu, DC | 1 |
Liu, XT | 1 |
Liu, M | 1 |
Ma, XB | 1 |
Zhou, MH | 1 |
Zhu, DN | 1 |
Deng, ZX | 1 |
Wang, J | 1 |
Fu, JH | 1 |
Du, GY | 2 |
Büyükuysal, RL | 1 |
Dijk, F | 2 |
van Leeuwen, S | 1 |
Kamphuis, W | 2 |
Zhang, CY | 1 |
Wang, W | 1 |
Ye, ZG | 1 |
Wang, DQ | 1 |
Sun, XF | 1 |
Zhao, DZ | 1 |
Dohmen, C | 1 |
Kumura, E | 1 |
Rosner, G | 1 |
Heiss, WD | 1 |
Graf, R | 1 |
Kang, TH | 1 |
Oh, HR | 1 |
Jung, SM | 1 |
Ryu, JH | 1 |
Park, MW | 1 |
Park, YK | 1 |
Kim, SY | 1 |
Epsztein, J | 1 |
Milh, M | 1 |
Bihi, RI | 1 |
Jorquera, I | 1 |
Ben-Ari, Y | 1 |
Represa, A | 1 |
Crépel, V | 1 |
Millecamps, M | 1 |
Coderre, TJ | 1 |
Neumann-Haefelin, T | 1 |
Hagemann, G | 1 |
Witte, OW | 1 |
Barnett, NL | 1 |
Osborne, NN | 2 |
Delbarre, B | 1 |
Delbarre, G | 1 |
Calinon, F | 1 |
Matsumoto, K | 1 |
Lo, EH | 1 |
Pierce, AR | 1 |
Halpern, EF | 1 |
Newcomb, R | 1 |
Schwarz, M | 1 |
Pergande, G | 1 |
Perlman, JI | 1 |
McCole, SM | 1 |
Pulluru, P | 1 |
Chang, CJ | 1 |
Lam, TT | 1 |
Tso, MO | 1 |
Yao, ZB | 1 |
Li, X | 1 |
Xu, ZC | 1 |
Tan, WK | 1 |
Williams, CE | 1 |
During, MJ | 1 |
Mallard, CE | 1 |
Gunning, MI | 1 |
Gunn, AJ | 1 |
Gluckman, PD | 1 |
Inglefield, JR | 1 |
Perry, JM | 1 |
Schwartz, RD | 1 |
Matsuda, T | 1 |
Takuma, K | 1 |
Kishida, Y | 1 |
Azuma, J | 1 |
Baba, A | 1 |
Zhang, Y | 2 |
Liu, GQ | 1 |
Liu, XD | 1 |
Xiao, XQ | 1 |
Heim, C | 1 |
Lan, J | 1 |
Sieklucka, M | 1 |
Kurz, T | 1 |
Riederer, P | 1 |
Gerlach, M | 1 |
Sontag, KH | 1 |
Guyot, LL | 3 |
Diaz, FG | 3 |
O'Regan, MH | 3 |
Song, D | 2 |
Phillis, JW | 3 |
Ren, J | 1 |
Xie, K | 1 |
Seif-el-Nasr, M | 1 |
Khattab, M | 1 |
Kang, TC | 1 |
Park, SK | 1 |
Hwang, IK | 1 |
An, SJ | 1 |
Choi, SY | 1 |
Cho, SW | 1 |
Won, MH | 1 |
1 review available for gamma-aminobutyric acid and Reperfusion Injury
Article | Year |
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The Roles of GABA in Ischemia-Reperfusion Injury in the Central Nervous System and Peripheral Organs.
Topics: Central Nervous System; gamma-Aminobutyric Acid; Humans; Reperfusion Injury | 2019 |
53 other studies available for gamma-aminobutyric acid and Reperfusion Injury
Article | Year |
---|---|
Arbutin protects brain against middle cerebral artery occlusion-reperfusion (MCAo/R) injury.
Topics: Animals; Arbutin; Blood-Brain Barrier; Brain; Chromatography, High Pressure Liquid; Disease Models, | 2021 |
Insights into the role of pERK1/2 signaling in post-cerebral ischemia reperfusion sexual dysfunction in rats.
Topics: Animals; Brain Ischemia; Brain-Derived Neurotrophic Factor; Cerebral Infarction; gamma-Aminobutyric | 2022 |
LC-MS/MS combined with blood-brain dual channel microdialysis for simultaneous determination of active components of astragali radix-safflower combination and neurotransmitters in rats with cerebral ischemia reperfusion injury: Application in pharmacokine
Topics: Animals; Aspartic Acid; Astragalus Plant; Blood-Brain Barrier; Carthamus tinctorius; Chalcone; Chrom | 2022 |
UHPLC-ESI-QE-Orbitrap-MS based metabolomics reveals the antioxidant mechanism of icaritin on mice with cerebral ischemic reperfusion.
Topics: Animals; Antioxidants; Arachidonic Acid; Chromatography, High Pressure Liquid; gamma-Aminobutyric Ac | 2023 |
[Effects of Governor Vessel electroacupuncture on chloridion homeostasis in the cortex of rats with limb spasm after cerebral ischemia-reperfusion].
Topics: Animals; Baclofen; Cerebral Cortex; Cerebral Infarction; Electroacupuncture; gamma-Aminobutyric Acid | 2023 |
Impact of dexmedetomidine on amino acid contents and the cerebral ultrastructure of rats with cerebral ischemia-reperfusion injury.
Topics: Amino Acids; Animals; Brain Ischemia; Cerebral Cortex; Dexmedetomidine; gamma-Aminobutyric Acid; Glu | 2017 |
Neuroprotection by Propofol Post-Conditioning: Focus on PKMζ/KCC2 Pathway Activity.
Topics: Animals; gamma-Aminobutyric Acid; Hippocampus; Interneurons; K Cl- Cotransporters; Male; Neuroprotec | 2018 |
[Ghrelin protects against hippocampal injury after global cerebral ischemia/reperfusion and regulate glutamic acid/γ-aminobutyric acid sensitive neuron discharge]
Topics: Animals; Brain; Brain Ischemia; Cerebral Infarction; gamma-Aminobutyric Acid; Ghrelin; Glutamic Acid | 2016 |
Gamma-Aminobutyric Acid (GABA) Attenuates Ischemia Reperfusion-Induced Alterations in Intestinal Immunity.
Topics: alpha-Defensins; Animals; Dose-Response Relationship, Drug; gamma-Aminobutyric Acid; Ileum; Immunity | 2018 |
Effect of ligustrazine on levels of amino acid neurotransmitters in rat striatum after cerebral ischemia-reperfusion injury.
Topics: Amino Acids; Animals; Aspartic Acid; Brain; Brain Ischemia; Corpus Striatum; gamma-Aminobutyric Acid | 2014 |
Mechanisms underlying the renoprotective effect of GABA against ischaemia/reperfusion-induced renal injury in rats.
Topics: Acute Kidney Injury; Animals; Benzylamines; Bicuculline; Cytoprotection; GABA-A Receptor Antagonists | 2015 |
Ischemic preconditioning and postconditioning alleviates hippocampal tissue damage through abrogation of apoptosis modulated by oxidative stress and inflammation during transient global cerebral ischemia-reperfusion in rats.
Topics: Animals; Apoptosis; Biomarkers; Brain Ischemia; Encephalitis; gamma-Aminobutyric Acid; Glutamic Acid | 2015 |
Effects of a Preparation Containing Pantogam, Succinic Acid, and Chitosan on Activities of the Glutathione System and NADPH-Generating Enzymes in Rat Tissues under Conditions of Cerebral Ischemia/Reperfusion.
Topics: Animals; Brain Ischemia; Chitosan; Drug Combinations; Free Radicals; gamma-Aminobutyric Acid; Glucos | 2015 |
Low dose of L-glutamic acid attenuated the neurological dysfunctions and excitotoxicity in bilateral common carotid artery occluded mice.
Topics: Animals; Brain; Brain Ischemia; Carotid Artery, Common; Disease Models, Animal; Dose-Response Relati | 2016 |
Both amacrine and bipolar cells release glutamate in the rat retina after ischemia/reperfusion insult in vitro.
Topics: Amacrine Cells; Animals; Apoptosis; Calbindins; Female; gamma-Aminobutyric Acid; Glucose; Glutamic A | 2008 |
Renoprotective effects of gamma-aminobutyric acid on ischemia/reperfusion-induced renal injury in rats.
Topics: Animals; Baclofen; Benzylamines; GABA Agonists; GABA Antagonists; GABA-B Receptor Antagonists; gamma | 2009 |
Neuroprotection of ethanol against ischemia/reperfusion-induced brain injury through decreasing c-Jun N-terminal kinase 3 (JNK3) activation by enhancing GABA release.
Topics: Animals; Apoptosis; Bicuculline; Brain Ischemia; CA1 Region, Hippocampal; Cadmium Chloride; Calcium | 2010 |
Effect of ginkgolide B on striatal extracellular amino acids in middle cerebral artery occluded rats.
Topics: Amino Acids; Animals; Aspartic Acid; Brain Ischemia; Corpus Striatum; gamma-Aminobutyric Acid; Ginkg | 2011 |
Neuroprotective effects of gabapentin on spinal cord ischemia-reperfusion injury in rabbits.
Topics: Amines; Animals; Caspase 3; Cyclohexanecarboxylic Acids; Dose-Response Relationship, Drug; Gabapenti | 2011 |
Mechanisms underlying the renoprotective effect of GABA against ischemia/reperfusion-induced renal injury in rats.
Topics: Acute Kidney Injury; Animals; Baclofen; Benzylamines; Bicuculline; Blood Urea Nitrogen; GABA Agonist | 2011 |
Taurine-like GABA aminotransferase inhibitors prevent rabbit brain slices against oxygen-glucose deprivation-induced damage.
Topics: 4-Aminobutyrate Transaminase; Animals; Brain; Brain Ischemia; gamma-Aminobutyric Acid; Glucose; Male | 2012 |
Neuroprotection of GluK1 kainate receptor agonist ATPA against ischemic neuronal injury through inhibiting GluK2 kainate receptor-JNK3 pathway via GABA(A) receptors.
Topics: Animals; Enzyme Activation; gamma-Aminobutyric Acid; GluK2 Kainate Receptor; Isoxazoles; Male; Mitog | 2012 |
Elucidation of neuroprotective role of endogenous GABA and energy metabolites middle cerebral artery occluded model in rats.
Topics: Adenosine Triphosphate; Animals; Aspartic Acid; Brain; Disease Models, Animal; Excitatory Amino Acid | 2012 |
Lateral hypothalamic area mediated the protective effects of microinjection of glutamate into interpositus nucleus on gastric ischemia-reperfusion injury in rats.
Topics: Animals; Apoptosis; Cell Proliferation; Cerebellum; gamma-Aminobutyric Acid; Gastric Juice; Gastric | 2012 |
Patterns of nerve injury and neuropathic pain in ischemic neuropathy after ligation-reperfusion of femoral artery in mice.
Topics: Amines; Animals; Cyclohexanecarboxylic Acids; Dose-Response Relationship, Drug; Femoral Artery; Gaba | 2012 |
γ-Aminobutyric acid-mediated neurotransmission in cerebellar-hypothalamic circuit attenuates gastric mucosal injury induced by ischemia-reperfusion.
Topics: Animals; Celiac Artery; Cerebellum; Electric Stimulation; GABA Antagonists; gamma-Aminobutyric Acid; | 2013 |
[Effect of tianma cuzhi keli (TMCZKL) on contents of transmitter amino acids of brain tissue in the mouse repetitious cerebral ischemia reperfusion].
Topics: Animals; Aspartic Acid; Brain Ischemia; Cerebral Cortex; Drug Combinations; Drugs, Chinese Herbal; g | 2001 |
Ischemia and reoxygenation induced amino acid release release and tissue damage in the slices of rat corpus striatum.
Topics: Amino Acids; Animals; Aspartic Acid; Brain; Calcium; Citrulline; Corpus Striatum; Female; gamma-Amin | 2004 |
Differential effects of ischemia/reperfusion on amacrine cell subtype-specific transcript levels in the rat retina.
Topics: Amacrine Cells; Animals; Cluster Analysis; gamma-Aminobutyric Acid; Gene Expression Regulation; Glia | 2004 |
An immunocytochemical study on specific amacrine cell subpopulations in the rat retina after ischemia.
Topics: Amacrine Cells; Animals; Cell Count; Eye Diseases; gamma-Aminobutyric Acid; Gene Expression Regulati | 2004 |
[Effects of tianma gouteng fang on transmitter amino acids in the hippocampus extracellular liquids in freely moving rats subjected to brain ischemia].
Topics: Animals; Arginine; Brain Ischemia; Drug Combinations; Drugs, Chinese Herbal; Excitatory Amino Acids; | 2004 |
Extracellular correlates of glutamate toxicity in short-term cerebral ischemia and reperfusion: a direct in vivo comparison between white and gray matter.
Topics: Adenosine; Amino Acids; Animals; Brain; Brain Chemistry; Calcium; Cats; Cerebrovascular Circulation; | 2005 |
Enhancement of neuroprotection of mulberry leaves (Morus alba L.) prepared by the anaerobic treatment against ischemic damage.
Topics: Anaerobiosis; Animals; Brain Ischemia; Cell Hypoxia; Cell Survival; Cerebral Infarction; gamma-Amino | 2006 |
Ongoing epileptiform activity in the post-ischemic hippocampus is associated with a permanent shift of the excitatory-inhibitory synaptic balance in CA3 pyramidal neurons.
Topics: Animals; Electroencephalography; Electrophysiology; Epilepsy; gamma-Aminobutyric Acid; Glutamic Acid | 2006 |
Rats with chronic post-ischemia pain exhibit an analgesic sensitivity profile similar to human patients with complex regional pain syndrome--type I.
Topics: Amitriptyline; Analgesics; Analgesics, Opioid; Animals; Anti-Inflammatory Agents, Non-Steroidal; Dos | 2008 |
Cellular correlates of neuronal hyperexcitability in the vicinity of photochemically induced cortical infarcts in rats in vitro.
Topics: 2-Amino-5-phosphonovalerate; Animals; Cerebral Cortex; Cerebral Infarction; Electrophysiology; gamma | 1995 |
Redistribution of GABA immunoreactivity following central retinal artery occlusion.
Topics: Animals; Electroretinography; Eye; gamma-Aminobutyric Acid; Immunohistochemistry; Rats; Rats, Wistar | 1995 |
Action of trimetazidine on retina of gerbils after ischemia reperfusion insult: determination of .OH, amino acids, and electroretinogram.
Topics: Amino Acids; Animals; Aspartic Acid; Electroretinography; Female; gamma-Aminobutyric Acid; Gentisate | 1994 |
Secondary elevation of extracellular neurotransmitter amino acids in the reperfusion phase following focal cerebral ischemia.
Topics: Amino Acids; Analysis of Variance; Animals; Aspartic Acid; Basal Ganglia; Cerebral Cortex; Cerebrosp | 1996 |
Protection of rabbit retina from ischemic injury by flupirtine.
Topics: Adenosine Triphosphate; Aminopyridines; Analgesics; Animals; Electroretinography; gamma-Aminobutyric | 1996 |
Disturbances in the distribution of neurotransmitters in the rat retina after ischemia.
Topics: Animals; gamma-Aminobutyric Acid; Glutamic Acid; Immunohistochemistry; Intraocular Pressure; Ischemi | 1996 |
GABAergic and asymmetrical synapses on somata of GABAergic neurons in CA1 and CA3 regions of rat hippocampus. A quantitative electron microscopic analysis.
Topics: Animals; gamma-Aminobutyric Acid; Hippocampus; Immunohistochemistry; Male; Microscopy, Immunoelectro | 1996 |
Accumulation of cytotoxins during the development of seizures and edema after hypoxic-ischemic injury in late gestation fetal sheep.
Topics: Animals; Aspartic Acid; Brain Edema; Brain Ischemia; Cytotoxins; Electroencephalography; Extracellul | 1996 |
Postischemic inhibition of GABA reuptake by tiagabine slows neuronal death in the gerbil hippocampus.
Topics: Animals; Cell Death; gamma-Aminobutyric Acid; Gerbillinae; Hippocampus; Hypothermia; Male; Microdial | 1995 |
Protective effect of taurine against reperfusion injury in cultured rat astrocytes.
Topics: Animals; Animals, Newborn; Astrocytes; beta-Alanine; Calcium; Cell Survival; Cells, Cultured; Cerebr | 1996 |
Efflux transport of [3H]GABA across blood-brain barrier after cerebral ischemia-reperfusion in rats.
Topics: Animals; Blood-Brain Barrier; Brain Ischemia; gamma-Aminobutyric Acid; Male; Microinjections; Proben | 1999 |
Cerebral oligaemia episode triggers free radical formation and late cognitive deficiencies.
Topics: 3,4-Dihydroxyphenylacetic Acid; Animals; Aspartic Acid; Carotid Stenosis; Cognition Disorders; Corpu | 2000 |
Topical glucose and accumulation of excitotoxic and other amino acids in ischemic cerebral cortex.
Topics: Animals; Aspartic Acid; Blood Pressure; Brain Ischemia; Carbon Dioxide; Cerebral Cortex; Ethanolamin | 2000 |
The effect of intravenous insulin on accumulation of excitotoxic and other amino acids in the ischemic rat cerebral cortex.
Topics: Animals; Aspartic Acid; Brain Chemistry; Cerebral Cortex; Energy Metabolism; gamma-Aminobutyric Acid | 2000 |
The effect of streptozotocin-induced diabetes on the release of excitotoxic and other amino acids from the ischemic rat cerebral cortex.
Topics: Acute Disease; Amino Acids; Animals; Blood Glucose; Brain Ischemia; Cerebral Cortex; Chronic Disease | 2001 |
[Effect of guizhi fuling pills on the changes of Ca2+ and amino acids in rats with cerebral ischemia and reperfusion].
Topics: Animals; Brain; Brain Ischemia; Calcium; Drug Combinations; Drugs, Chinese Herbal; Female; gamma-Ami | 1998 |
Influence of inhibition of adenosine uptake on the gamma-aminobutyric acid level of the ischemic rat brain.
Topics: Adenosine; Animals; Biomarkers; Brain; Brain Chemistry; Brain Ischemia; Cerebral Cortex; Dipyridamol | 2002 |
Spatial and temporal alterations in the GABA shunt in the gerbil hippocampus following transient ischemia.
Topics: Aldehyde Oxidoreductases; Animals; Brain Ischemia; Carrier Proteins; GABA Plasma Membrane Transport | 2002 |