• Title/Summary/Keyword: Ischemic Damage

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The role of cytokines in seizures: interleukin (IL)-$1{\beta}$, IL-1Ra, IL-8, and IL-10

  • Youn, Youngah;Sung, In Kyung;Lee, In Goo
    • Clinical and Experimental Pediatrics
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    • v.56 no.7
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    • pp.271-274
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    • 2013
  • Brain insults, including neurotrauma, infection, and perinatal injuries such as hypoxic ischemic encephalopathy, generate inflammation in the brain. These inflammatory cascades induce a wide spectrum of cytokines, which can cause neuron degeneration, have neurotoxic effects on brain tissue, and lead to the development of seizures, even if they are subclinical and occur at birth. Cytokines are secreted by the glial cells of the central nervous system and they function as immune system mediators. Cytokines can be proinflammatory or anti-inflammatory. Interleukin (IL)-$1{\beta}$ and IL-8 are proinflammatory cytokines that activate additional cytokine cascades and increase seizure susceptibility and organ damage, whereas IL-1 receptor antagonist and IL-10 act as anti-inflammatory cytokines that have protective and anticonvulsant effects. Therefore, the immune system and its associated inflammatory reactions appear to play an important role in brain damage. Whether cytokine release is relevant for the processes of epileptogenesis and antiepileptogenesis, and whether epileptogenesis could be prevented by immunomodulatory treatment should be addressed in future clinical studies. Furthermore, early detection of brain damage and early intervention are essential for the prevention of disease progression and further neurological complications. Therefore, cytokines might be useful as biomarkers for earlier detection of brain damage in high-risk infants.

The involvement of oxygen free radicals in the onset of aging (노화에 미치는 산소 유리라디칼에 관한 연구동향)

  • Kim, Jung-Sang;Na, Chang-Su;Kim, Young-Kon
    • Korean Journal of Oriental Medicine
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    • v.3 no.1
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    • pp.229-239
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    • 1997
  • The superoxide anion radical$(O_2)$ poses a threat to macromocules and cell organelles of the living cells. This toxicity damage to all groups of proteins results in loss of enzyme function concerned with metabolism and ion transport, and peroxidation of unsaturated fatty acids and cholesterol results in a change of permeability characteristics of the membrane, and oxidative of nucleic acids results in genomic damage and thereby cause mutation, potential carcinogenesis and somatic damage that produce cellular aging Superoxide dismutase(SOD) has received substantial attention as a potential therapeutic agent. It has been investigated as a possible agent for the prevention of ontogenesis, the reduction of cytotoxic effect of anticancer drugs, and protection against damage in ischemic tissue. It is suggest that $O_2$ is concerned with cellular aging, thereafter we need to investigate herb that activated to SOD.

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Study on the Effect of Gamiyukmijihwang-tang on the Brain damage (가미육미지황탕이 뇌신경세포 손상 및 뇌허혈 병태 모델에 미치는 영향)

  • Kim Jin hyung;Kim Yun Sik;Seol In Chan;Kim Dong Hee
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.17 no.2
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    • pp.467-475
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    • 2003
  • This studt was investigated to prove the effect of GMYM on the brain damage. The results were as follows; 1. GMYM showed significantly inhibitory effect on LDH release by NMDA. AMPA and Kinate. 2. GMYM showed significantly inhibitory effect on LDH release by BSO and Fe2+. 3. GMYM decreased coma duration time in a infatal dose of KCN and showed 30% of survival rate in a fatal dose. 4. GMYM showed improvement of forelimb and hindlimb test after MCA occulusion in neurological exemination. 5. GMYM decreased ischemic area and edema incited by the MCA blood flow block. These results indicate that GMYM can be used in the brain damage sujected to brain ischemia. Further study will be needed about the functional mechanism and etc.

Effects of ischemic preconditioning, KATP channel on the SOD activation and apoptosis in ischemic reperfused skeletal muscle of rat (허혈양상화와 KATP 통로가 허혈후 재관류된 흰쥐의 골격근육에서 SOD 활성 및 apoptosis에 미치는 영향)

  • Abn, Dong-choon;Paik, Doo-jin;Yang, Hong-hyun
    • Korean Journal of Veterinary Research
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    • v.39 no.5
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    • pp.878-895
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    • 1999
  • Ischemic preconditioing (IPC), i.e., a preliminary brief episode of ischemia and reperfusion, has been shown to reduce the cell damage induced by long ischemia and reperfusion. Superoxide radical which is produced during reperfusion after ischemia was recognized as a factor of the ischemic injury and it is dismutated into $H_2O_2$ and $O_2$ by two types of intracellular superoxide dismutase (SOD), Cu,Zn-SOD in cytoplasm and Mn-SOD in mitochondria. Recently oxygen free radicals are suggested to induce the apoptosis, however mechanism of the reduced apoptosis by ischemic preconditioing was unknown, while many studies performed in mammalian heart indicated that ATP-sensitive $K^+$ ($K_{APT}$) channel activation related with the protective effects. The aim of present study is to investigate 1) whether IP upregulate the Cu,Zn-SOD and Mn-SOD activities, and 2) whether ischemic preconditioning decreases apoptosis via $K_{APT}$ channel activation in timely reperfused skeletal muscle after long ishemia. The experimental animals, Sprague-Dawley rats weighing 250~300g, were divided into 8 groups; 1) control group, 2) ischemic preconditioning only groups, 3) pinacidil, a $K_{APT}$ channel opener, treatment only groups, 4) glibenclamide, a $K_{APT}$ channel blocker, treatment only groups, 5) ischemia groups, 6) ischemia after IPC groups, 7) ischemia and pinacidil treatment groups, and 8) IP and ischemia after glibenclamide pretreatment groups. Animals of the control group were administered with the vehicle (DMSO) alone. Pinacidil (1mg/kg) was administered intravenously 5 minutes after initiation of ischemia, and glibenclamide (0.5mg/kg) was injected intravenously 20 minutes before IPC. In rats that were ischemic preconditioned, the left common iliac artery was occluded for 5 minutes followed by 5 minutes of reperfusion by three times using vascular clamp. Ischemia was done by occlusion of the same artery for 4 hours. The specimens of left rectus femoris muscle were obtained immediately (0 hour), 12 hours, 24 hours after drug administrations, IP or ischemia and reperfusion. The immunoreactivities of SOD and its alterations were observed by use of sheep antihuman Cu,Zn-SOD and Mn-SOD antibodies on the $10{\mu}m$ cryosections. The incidencies of apoptosis were observed by TUNEL methods with in situ apoptosis detection kit on $6{\mu}m$ paraffine section. The results obtained were as follows : 1. After IPC, immunoreactivities of Cu,Zn-SOD mainly in the small-sized fibers were increased by 24 hours, that of Mn-SOD at 0 hour and 24 hours. 2. No significant changes in immunoreactivities of SOD was observed in the pinacidil and in the glibenclamide treatment only groups, and in the ischemia only groups. 3. The immunoreactivities of the Cu,Zn-SOD were increased in the ischemia after IPC groups and the ischemia and pinacidil treatment groups. 4. The immunoreactivities of the Cu,Zn-SOD in the IPC and ischemia after glibenclamide pretreatment groups were not increased except for the 12 hours reperfusion group. But, Mn-SOD immunoreactivities were increased in the 0 hours, 12 hours and 24 hours after reperfusion. 5. In the control group, the IPC only groups, and the pinacidil treatment only groups, negative or trace apoptotic reactions were observed, but the positive apoptotic reaction occured in the glibenclamide treatment groups. 6. Moderate or many number of apoptosis were revealed in the ischemia groups, and also the IPC and ischemia after glibenclamide pretreatment group except for 12 hours and 24 hours after reperfusion. However, the incidence of apoptosis was decreased in the ischemia after IPC groups and in the ischemia and pinacidil treatment groups. 7. There is a coincidence between the increase of Cu,Zn-SOD immunoreactivities and the decrease of apoptosis in the presence of ischemia and reperfusion. These results suggest that the protective effects of ishemic preconditioing may related to the SOD activation, and the ischemic preconditioning decreases the apoptosis partially via $K_{APT}$ channel activation in timely reperfused rat skeletal muscle. It is also suggested that inhibition of apoptosis by IPC may related with the SOD activation.

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Bambusae Calulis in Liquamen (Jukryuk) and Zingiberis Rhizoma Juice's (Saengkang- juice's) Effect on Ischemic Damage Secondary to MCA Occlusion in Mice (죽력과 생강즙이 중대뇌동맥 폐쇄에 의한 뇌허혈 손상에 미치는 영향)

  • 류주열;김영균;권정남
    • The Journal of Korean Medicine
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    • v.23 no.3
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    • pp.134-144
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    • 2002
  • Objective : The purpose of this study was to investigate the effect of Jukryuk and Saengkang-juices on cerebral vascular ischemia (CVI) of the middle cerebral artery (MCA). Method : By admiuistration Jukryuk and Saengkang-juices, we compared treated groups with untreated groups, in view of five points as follows: 1) cerebral damage; 2) damaged area of ischemia; 3) cerebral edema; 4) the number of neuronal cells adjacent to the areas damaged by ischemia; and 5) the number of neuronal cells adjacent to the areas damaged by ischemia Results : In this experiment, the effect of Jukryuk and Saengkang-juices was determined by inducing cerebral vascular ischemia after occluding the middle cerebral artery (MCA) in mice, and making observations and comparisons such as alterations in damaged areas and neuronal cellular changes in the brain. Conclusions : According to the above results, Jukryuk and Saengkang-juices can protect the cerebral vascular ischemia.

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Effects of Dancheonhwan on Hydrogen Peroxide-induced Apoptosis of H9c2 Cardiomyoblasts (단천환이 Hydrogen Peroxide에 의한 심근세포 독성에 미치는 영향)

  • Na Yeong Hun;Bak Sang Beom;Jeong Seung Won;Yun Jong Min;Lee In;Moon Byung Soon
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.18 no.3
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    • pp.774-782
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    • 2004
  • The water extract of Dancheonhwan (DCH) has been used to treat ischemic brain and heart damage in oriental medicine. However, little is known about the mechanism by which the water extract of DCH rescues cells from ischemic damage. Therefore, this study was designed to investigate the protective mechanisms of DCH on the H₂O₂-induced toxicity in H9c2 cardiomyoblast cells. Treatment of H₂O₂ markedly decreased the viability of H9c2 cardiomyoblast in a dose-dependent and time-dependent manner. The nature of H₂O₂-induced toxicity of H9c2 cells resulted from apoptotic death confirmed with genomic DNA fragmentation. DCH increased the viability of H₂O₂-treated H9c2 cells by about 23%, and partially suppressed the genomic DNA fragmentation and PARP cleavage. H₂O₂ also activated caspase-3 protease and -9 protease, but not both caspase-6 protease and -8 protease. H₂O₂ induced the mitochondria dysfunction, including mitochondria membrane permeability transition (MPT) and cytosolic release of cytochrome c from mitochondria, which was prevented in part by pretreatment of DCH. N-acetylcystein (NAC), a free-radical scavenger, alone increased the viability of H₂O₂-treated H9c2 cells in a dose-dependent manner. Furthermore, the combination of NAC with DCH significantly increased the viability of the H₂O₂-treated H9c2 cells in a dose-dependent manner. These data indicate that DCH has the protective effect on ROS-induced apoptosis of cadiomyoblast H9c2 cells.

The effect of Bangpungdangkwi-eum extracts on reperfusion following the middle cerebral artery occlusion in rats (방풍당귀음(防風當歸飮)이 중대뇌동맥 폐쇄 후 재관류 모델에 미치는 영향 -육안.광학현미경 소견-)

  • Hong, Cheon-Pyo;Park, In-Sick;Shin, Gil-Cho;Lee, Won-Chul;Jeong, Sung-Hyun
    • The Journal of Internal Korean Medicine
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    • v.21 no.2
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    • pp.319-327
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    • 2000
  • To evaluate the effect of Bangpungdangkwi-eum extracts on reperfusion following the middle cerebral artery occulsion in Sprague Dawley rats, the neuron protection effect were investigated through examining the size of cerebral infarction, cerebral edema, and the morphologic change of neuron. The results were obtained as follows; 1. The size of cerabral infarction in sample group is significantly decreased compared with that in control group. Sample group has approximately 17% cerebral infarction parts induced by ischemia in cerebrum while control group has approximately 22%. 2. The volume of cerebral edema in sample group is significantly decreased compared with that in control group. The volumn in sample group is increased by approximately 4.4% compared with that in normal group while that in control group is increased by approximately 7.7%. 3. The optical microscopic examination reveals that the damage of neurons in the ischemic parts and CA1 and CA3 region of hippocampus in the same side of the ischemic parts was the most high and the damage in sample group is decreased compared with that in control group.

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Effect of Chungpaesagan-tang on Ischemic Damage in Organotypic Hippocampal Slice Culture (청폐사간탕(淸肺瀉肝湯)이 뇌해마 조직배양의 신경세포 자연사에 미치는 영향)

  • Lee, Min-Young;Ku, Ja-Seung;Kim, Sung-Hoon;Kim, Yoon-Bum;Kim, Sun-Yeou;Choi, Hyeon;Sohn, Young-Joo;Jung, Hyuk-Sang;Sohn, Nak-Won
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.22 no.4
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    • pp.771-777
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    • 2008
  • Chungpaesagan-tang which is used for treating patients of brain in cerebrovascular disease frequently from clinical doctor has not reported about the effect of neuronal aptosis caused of brain ischemia. The aim of this study is to investigate effect of Chungpaesagan-tang protecting neuronal cells from being damaged by brain ischemia through using organotypic hippocampal slice cultures. We caused ischemic damage to organotypic hippocampal slice cultures by oxygen and glucose deprivation. And added Chungpaesagan-tang extract to cultures. thereafter we measured area percentage of propidium iodide (PI)-stained neuronal cell, lactate dehydrogenase (LDH) levels in culture media and Terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling (TUNEL)-positive cells. Area percentage of PI-stained neuronal cells and count of TUNEL-positive cells in CA1 and DG area of organotypic hippocampal slice culture were significantly decreased in pertinent density level of Chungpaesagan-tang extract. LDH levels in culture media of organotypic hippocampal slice culture were significantly decreased in pertinent density level of Chungpaesagan-tang extract. Within pertinent density level, Chungpaesagan-tang has cell protection effect that prevents brain ischemia damaging neuronal cells and apoptosis increasing.

Effects of Daejo-hwan(Tatsao-wan) on L-NAME Induced Learning and Memory Impairment and on Cerebral Ischemic Damage of the Rats (L-NAME으로 유발된 학습.기억장애와 뇌허혈 손상에 관한 대조환의 효과)

  • 김근우;구병수
    • The Journal of Korean Medicine
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    • v.21 no.2
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    • pp.25-36
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    • 2000
  • Objectives : This study demonstrates the effects of Daejo-hwan on learning and memory impairment induced by L-NAME (75 mg/kg) treatment and on cerebral ischemic damage induced by middle cerebral artery (MCA) occlusion in rats. Methods : Daejo-hwan emulsion (73.3 mg/100 g/l ml) was administered to rats along a timed study schedule. The Moms water maze was used for learning and memory test of the rats. The MCA was occluded by using the intraluminal thread method. The brain slices were stained by 2 % triphenyl tetrazolium chloride (TTC) and 1 % cresyl violet solution. Infarct size, neuron cell number and size in penumbra was measured by using computer image analysis system. Results : 1. The escape latency of the Daejo-hwan treated group decreased significantly with respect to the control group. 2.The memory score of the Daejo-hwan treated group showed increase tendency, And the swimming distance was not different between the normal, the control, and the Daejo-hwan treated group. 3. The infarct size of the Daejo-hwan treated group decreased significantly with respect to the control group. 4. The total infarct volume of the Daejo-hwan treated group showed decrease tendency. And the brain edema index of the Daejo-hwan treated group decreased significantly with respect to the control group. 5. The neuron cell number and cell size in penumbra of the Daejo-hwan treated group increased significantly with respect to the control group. Conclusions : According to the above results, it is supposed that Daejo-hwan is clinically applicable to the vascular dementia.

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