• Title/Summary/Keyword: Global Ischemia

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Neuroprotective effects of Hexane fraction of M61 on Delayed Neuronal Death after Transient global Ischemia in Gerbil Hippocampus

  • Kim, Haw-jung;Kang, Hoon-Je;Mar, Woong-Chon
    • Proceedings of the PSK Conference
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    • 2003.10b
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    • pp.205.1-205.1
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    • 2003
  • Several lines of recent evidences have shown that several pro-inflammatory genes or mediators, such as inducible nitric oxide synthase (iNOS)are strongly expressed in the ischemic brain. Inflammation is now recognized as a significant contributing mechanism in cerebral ischemia because anti-inflammatory compounds or inhibitors of iNOS have been proven to reduce ischemic brain damage. In iNOS assay, hexane fraction of M61 inhibited NO (iNOS IC50, 0.7${\mu}$g/ml). In vivo study was carried out to evaluate neuroprotective effect of hexane fraction of M61 after transient global ischemia using Mongolian gerbil ischemia model. (omitted)

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Effects of Ginseng on Global Myocardial Ischemia and Reperfusion in the Rat Heart (허혈 및 재관류한 흰쥐 심장에 미치는 인삼의 영향)

  • Kim, Byung-Chae;Kim, Nak-Doo
    • YAKHAK HOEJI
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    • v.32 no.1
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    • pp.70-79
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    • 1988
  • The effect of Ginseng on global myocardial ischemia and reperfusion was examined in isolated perfused rat hearts. The Ginseng ethanol extract (100mg/kg/day) was administered orally for 10 days. The rat hearts were removed and perfused at 75cm $H_{2}O$ by the Langendorff method. After 25 min. of global ischemia, the hearts were reperfused. The myocardial contents of adenosine 5'-triphosphate, creatine phosphate, and calcium were assayed. There no differences in ATP levels in all group of normal and Ginseng-treated hearts. Both in non-ischemic and ischemic heart, Ginseng increased significantly tissue creatine phosphate levels compared with control. Whereas, in ischemic-reperfused heart, there was no significant difference. In the control groups, myocardial calcium contents in the ischemic hearts were decreased compared with the non-ischemic hearts. But, in the Ginseng-treated groups, the calcium contents in the ischemic herts were not changed with the nonischemic hearts. Therefore, Ginseng appears to exert its protective effect against ischemic heart condition, not against ischemic-reperfused heart condition, by regulating energy metabolism and maintaing cellular function.

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Animal Models for Development of Cognitive Enhancers and Action of Drugs

  • Nomura, Yasuyuki
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1995.04a
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    • pp.35-36
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    • 1995
  • To gain insight into the etiological mechanism of dementia and to develop clinically effective congnitive enhancers, it is required to prepare animal models with symptoms and mechanism resemble to that in human. Dementia is mainly classified into two types : senile type of Alzheimer's disease (STAD) and cerebral ischemia-induced one. As animal models of cerebral ischemia, a couple of types in rats have been introduced : one is the occlusion of bilateral carotid arteries-induced forebrain/global ischemia and the other is the occlusion of middle cerebral arteries-induced focal/regional ischemia.

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Protective Effect of Aurantii Immaturus Fructus on Hypoxia Reperfusion Induced by PC12 Cell Damage and Global Ischemia in Gerbil (PC12 손상 세포 및 전뇌허혈 유발 Gerbil에 대한 지실의 세포보호효과 연구)

  • 김완식;정승현;신길조;문일수;이원철
    • The Journal of Korean Medicine
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    • v.24 no.1
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    • pp.29-40
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    • 2003
  • Object : This research was performed to investigate the protective effect of Aurantii Immaturus Fructus against ischemic damage using PC12 cells and global ischemia in gerbils. Methods : To observe the protective effect of Aurantii Immaturus Fructus on ischemia damage, viability and changes in activities of superoxide dismutase (SOD), glutathione peroxidase (GPx), catalase and production of malondialdehyde (MDA) were observed after treating PC12 cells with Aurantii Immaturus Fructus during ischemic insult. Gerbils were divided into three groups : a normal group, a 5-min two-vessel occlusion (2VO) group, and an Aurantii Immaturus Fructus administered after 2VO group. The CCAs were occluded by microclip for 5 minutes. Aurantii Immaturus Fructus was administered orally for 7 days after 2VO. The histological analysis was performed at 7 days after the surgery. For histological analysis, the brain tissue was stained with 1% cresyl violet solution. Results : The results showed that 1. Aurantii Immaturus Fructus had a protective effect against ischemia in the CAI area of the gerbil hippocampus 7 days after 5-minute occlusion, 2. In the hypoxia/reperfusion model using PC12 cells, the Aurantii Immaturus Fructus had a protective effect against ischemia in the dose of $0.2{\;}\mu\textrm{g}/ml,{\;}2{\;}\mu\textrm{g}/ml{\;}and{\;}20{\;}\mu\textrm{g}/ml$ 3. Aurantii Immaturus Fructus increased the activities of glutathione peroxidase and catalase, 4. The activity of superoxide dismutase (SOD) was increased by ischemic damage, which might represent self protection. This study suggests that Aurantii Immaturus Fructus has some neuroprotective effect against neuronal damage following cerebral ischemia in vivo with a widely used experimental model of cerebral ischemia in Mongolian gerbils, and it also has protective effects on a hypoxia/reperfusion cell culture model using PCq2 cells. Conclusions : Aurantii Immaturus Fructus has protective effects against ischemic brain damage at the early stage of ischemia.

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Protective Effect of Angelicae Dahuri Radix on Hypoxia Reperfusion Induced by PC12 Cell Damage and Global Ischemia in Gerbil (PC12 손상 세포 및 전뇌허혈 유발 Gerbil에 대한 백지의 세포보호효과)

  • 이영효;정승현;신길조;문일수;이원철
    • The Journal of Korean Medicine
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    • v.24 no.1
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    • pp.110-121
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    • 2003
  • Objective : This research was performed to investigate the protective effect of Angelicae Dahuri Radix against ischemic damage using PC12 cells and global ischemia in gerbils. Methods : To observe the protective effect of Angelicae Dahuri Radix on ischemia damage, viability and changes in activities of superoxide dismutase (SOD), glutathione peroxidase (GPx), catalase and production of malondialdehyde (MDA) were observed after treating PC12 cells with Angelicae Dahuri Radix during ischemic insult. Gerbils were divided into three groups : a normal group, a 5-min two-vessel occlusion (2VO) group, and an Angelicae Dahuri Radix administered after 2VO group. The CCAs were occluded by microclip for 5 minutes. Angelicae Dahuri Radix was administered orally for 7 days after 2VO. The histological analysis was performed at 7 days after surgery. For histological analysis, the brain tissue was stained with 1% cresyl violet solution. Results : 1. Angelicae Dahuri Radix has a protective effect against ischemia in the CA1 area of the gerbil hippocampus 7 days after 5-minute occlusion, 2. In the hypoxia/reperfusion model using PC12 cells, Angelicae Dahuri Radix has a protective effect against ischemia in the dose of $0.2\mu\textrm{g}/ml$, $2\mu\textrm{g}/ml$ and $20\mu\textrm{g}/ml$, 3. Angelicae Dahuri Radix increased the activities of glutathione peroxidase and catalase. 4. The activity of superoxide dismutase (SOD) was increased by ischemic damage, which might represent self protection. This study suggests that Angelicae Dahuri Radix has some neuroprotective effect against neuronal damage following cerebral ischemia in vivo with a widely used experimental model of cerebral ischemia in Mongolian gerbils, and it also has protective effects on a hypoxia/reperfusion cell culture model using PC12 cells. Conclusions : Angelicae Dahuri Radix has protective effects against ischemic brain damage at the early stage of ischemia.

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Effects of Methanol Extract of Jukryukjichul-hwan on Global Cerebral Ischemia of Rats (죽력지출환(竹瀝枳朮丸)의 메탄올추출 엑기스가 흰쥐의 전뇌허혈에 미치는 영향)

  • Ryu Ji-Cheal;Kim Young-Kyun;Kwon Jung-Nam
    • The Journal of Korean Medicine
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    • v.27 no.2 s.66
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    • pp.1-13
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    • 2006
  • Objectives : Ischemic brain injury is a worldwide problem that often causes irreversible brain damage. Moreover, prevention of ischemic brain injury is more important than anything else, since after-effects of stroke significantly threat the quality of life. Jukryukjichul-hwan (JRH) is an oriental medicinal formula for stroke patients in Korea. This study evaluated neuroprotective effects of methanol extract of JRH on global cerebral ischemia in rats. Changes of the pyramidal neurons, Bax and TUNEL immuno-positive neurons in CA1 hippocampus were observed using immunohistochemistry. Methods : Sprague-Dawley Rats were induced with temporal global cerebral ischemia (TGI) by occluding the bilateral common carotid artery with hypotension, The rats were divided into 3 groups. We treated one group with methanol extract of JRH after operation, another group before and after the operation. We observed Bax expressions inducing apoptosis of neurons and TUNEL-positive Pyramidal Neurons as an index of survival and apoptosis of pyramidal neurons in CA1 Hippocampus. Results : JRH treatment before and after TGI inhibited Bax expression in CA1 hippocampus. JRH treatment before and after TGI reduced the cell death of pyramidal neurons in CA1 hippocampus. JRH treatment after TGI reduced the cell death of pyramidal neurons in CA1 hippocampus. JRH treatment before and after TGI reduced TUNEL-positive cells in CA1 hippocampus. Conclusion : These results suggest that JRH has a neuroprotective effect (by anti-apoptosis) against cerebral ischemia.

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Effects of ${\alpha}$-Asarone against Global Cerebral Ischemia in Rats

  • Kim, Young-Ock;Kwon, Yong-Soo;Lee, Seong-Eun;Lee, Sang-Won;Lee, Hee-Jae
    • Natural Product Sciences
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    • v.15 no.4
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    • pp.198-202
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    • 2009
  • Based on the use of Acorus gramineus SOLAND (AG) for the treatment of stroke in traditional Korean medicine, the present study was carried out to evaluate neuroprotective effects of ${\alpha}$-asarone after transient global cerebral ischemia using rat 4-vessel occlusion (4VO) model in rats. ${\alpha}$-Asarone (5 mg/kg) administered intraperitoneally significantly protected CA1 neurons against 10 min transient forebrain ischemia as demonstrated by measuring the density of neuronal cells stained with Cresyl violet. ${\alpha}$-Asarone significantly reduced hippocampal neuronal cell death by 85.2% where as its isolated single compounds from AG compared with a vehicle-treated group.

Neuroprotective Effects by Nimodipine Treatment in the Experimental Global Ischemic Rat Model: Real Time Estimation of Glutamate

  • Choi, Seok-Keun;Lee, Gi-Ja;Choi, Sam-Jin;Kim, Youn-Jung;Park, Hun-Kuk;Park, Bong-Jin
    • Journal of Korean Neurosurgical Society
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    • v.49 no.1
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    • pp.1-7
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    • 2011
  • Objective: Glutamate is a key excitatory neurotransmitter in the brain, and its excessive release plays a key role in the development of neuronal injury. In order to define the effect of nimodipine on glutamate release, we monitored extracellular glutamate release in real-time in a global ischemia rat model with eleven vessel occlusion. Methods: Twelve rats were randomly divided into two groups: the ischemia group and the nimodipine treatment group. The changes of extracellular glutamate level were measured using microdialysis amperometric biosensor, in coincident with cerebral blood flow (CBF) and electroencephalogram. Nimodipine (0.025 ${\mu}g$/100 gm/min) was infused into lateral to the CBF probe, during the ischemic period. Also, we performed Nissl staining method to assess the neuroprotective effect of nimodipine. Results: During the ischemic period, the mean maximum change in glutamate concentration was $133.22{\pm}2.57\;{\mu}M$ in the ischemia group and $75.42{\pm}4.22\;{\mu}M$ (p<0.001) in the group treated with nimodipine. The total amount of glutamate released was significantly different (P<0.001) between groups during the ischemic period. The %cell viability in hippocampus was $47.50{\pm}5.64$ (p<0.005) in ischemia group, compared with sham group. But, the %cell viability in nimodipine treatment group was $95.46{\pm}6.60$ in hippocampus (p<0.005). Conclusion: From the real-time monitoring and Nissl staining results, we suggest that the nimodipine treatment is responsible for the protection of the neuronal cell death through the suppression of extracellular glutamate release in the 11-VO global ischemia model of rat.

Ginseng radix Suppresses Ischemia-induced Increase in c-Fos Expression and Apoptosis in the Hippocampal CA1 Region in Gerbils

  • Park, Keung-Ryol;Jang, Mi-Hyeon;Kim, Chang-Ju;Lee, Choong-Yeol
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.19 no.1
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    • pp.224-229
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    • 2005
  • Ginseng radix, the root of Panax ginseng C.A.Meyer (Araliaceae), has traditionally been used for the treatment of various disorders including cerebrovascular accident (CVA). In the present study, the effect of Ginseng radix on c-Fos expression and apoptosis in the hippocampal CA1 region of gerbils following transient global ischemia was investigated via immunohistochemistry for c-Fos and caspase-3 and terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling (TUNEL) assay. Enhanced c-Fos-, TUNEL-, and caspase-3-positivities were detected in the hippocampal CA1 region in ischemic gerbils. Administration of the aqueous extract of Ginseng radix suppressed this ischemia-induced increment in the numbers of c-Fos-, TUNEL-, and caspase-3-positive cells. These results suggest that Ginseng radix has an inhibitive effect on the induction of c-Fos expression and apoptosis seen following transient global ischemia.

The Influence of the Application of NEES to GV20 and L14, on HSP27 and HSP70, after the Ischemic Brain Injury

  • Choi, Jung-Hyun
    • Journal of International Academy of Physical Therapy Research
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    • v.2 no.2
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    • pp.281-287
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    • 2011
  • This research was attempted to seek for a positive approach within the framework of physical therapy instead of the drug treatment in the past, with regard to the ischemic brain injury in the early stage. Accordingly, the aim of this research is to observe the change of HSP27 and HSP70, the genes that are expressed in the early stage of brain injury and to investigate the effects of needle electrode electrical stimulation(NEES), upon applying NEES after ischemia. The experimental method is to give rise to global ischemia and apply NEES to 27 SD-Pat rats with the particulars of being eight-week-old, male, around 300g, and adapted to laboratory environment for more than a week, and divide them into three groups, that is, GV20 NEES group(n=9), L14 NEES group(n=9), no applied NEES global ischemia(GI) group(n=9), and then observe their changes of HSP27 and HSP70 at the time lapse of 6, 9 hr and 12 hr after ischemia, using immunohistochemistry methods. Upon observing through the immunohistochemistry method, it was noticed that there was a significant difference between the GV20 NEES group and the L14 NEES group as for HSP27 and there were significant differences among all groups as for HSP70(p<.05). Accordingly, it is supposed that the application of NEES after the outbreak of cerebral ischemia delay the apoptosis in the early ischemic part of forebrain or protect neurons against apoptosis.