• Title/Summary/Keyword: KCN-induced coma

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The Effect of Yukilsunki-tang extracts on Global Cerebral Ischemia in mice (육일순기탕(六一順氣湯) 추출물(抽出物)이 생쥐의 전뇌허혈(全腦虛血)에 미치는 영향(影響))

  • Jeong, Sung-Hyun;Shin, Gil-Cho;Lee, Won-Chul
    • The Journal of Dong Guk Oriental Medicine
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    • v.7 no.2
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    • pp.149-154
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    • 1999
  • The effect of Yukilsunki-tang extracts on global cerebral ischemia were investigated in this study. The multiple parameters of global cerebral ischemia assessed in mice included the duration of KCN-induced(1.8mg/kg i.v.) coma, the survival time of KCN-induced(3.0mg/kg i.v.) coma, the survival time exposed to hypoxia induced by vacuum pump. In the case of global cerebral ischemia International Cancer Research mice were used and divided into two groups at random Group A, normal control, was treated after oral administration of normal saline. Group B, experimental control, was treated after oral administration of 13.2mg/20g of Yukilsunki-tang extracts. Each treatment was KCN-induced(1.8mg/kg i.v.) coma, KCN-induced(3.0mg/kg i.v.) coma and exposure to hypoxia induced by vacuum pump. The results were obtained as follows ; In global cerebral ischemia, Yukilsunki-tang extracts significantly prolonged the duration of KCN-induced(1.8mg/kg i.v.) coma, the survival time of KCN-induced(3.0mg/kg i.v.) coma and the survival time of exposure to hypoxia induced by vacuum pump in mice. Conclusion Yukisunki-tang extracts had a significant effect on Global cerebral ischemia.

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Study on the effect of Buthus martensi Karsch extract on thrombosis and brian damage (전갈(全蝎) 추출물(抽出物)이 혈전증(血栓症), 전뇌허혈(全腦虛血) 및 뇌세포독성(腦細胞毒性)에 미치는 영향(影響))

  • Baek, Myung-Hyun;Hwang, Yong-Geun;Jeong, Ji-Cheon;Kang, Jeong-Jun;Kim, Sung-Hoon
    • The Journal of Dong Guk Oriental Medicine
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    • v.8 no.1
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    • pp.171-190
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    • 1999
  • This following is effect of Buthus martensi Karsch(BMK) extract on dextran-thrombus model, KCN-induced coma, cytotoxicity of brain etc. BMK extract significantly increased number of platelet and fibrogen and significantly shortened the prothrombin time as compared with control group treated with dextran. BMK extract didn't affect the changes of hematocrit as compared with control group treated with dextran. BMK extract induced a significant inhibition of human platelet aggregation induced by thrombin and ADP but did not affect human platelet aggregation induced by collagen. BMK extract showed a protective effect on pulmonary thrombosis induced by collagen and epinephrine. BMK extract prolonged the duration of KCN-induced coma and showed a protective effect on cytotoxicity of PC12 cells induced by amyloid ${\beta}$ protein(25-35) in a dose dependent manner. These results suggested that BMK extract might be usefully applied for prevention and treatment of thrombosis and brain damage.

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An effect of the Moschus were injected on the brain of mice (사향(麝香)이 생쥐의 뇌손상(腦損傷)에 미치는 영향(影響))

  • Lee, Bo-Young;Kang, Seok-Bong
    • The Journal of Korean Medicine
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    • v.16 no.2 s.30
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    • pp.299-311
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    • 1995
  • The studies were investigated in the coma time and the survival time induced by KCN, the duration of breathing after decapitation, the survival time following ligation of both common carotid arteries and the survival time after it is treated for normobaric bypoxia with a nitrogen gas, a carbon dioxide gas or a vaccum in mice. The results were as follows: 1. In histotoxic anoxia, Moschus(0.4mg/kg, p.o) demonstrated a protective effect on coma induced by a sublethal dose of KCN(1.8mg/kg, i.v.) in mice. 2. Mice subjected to a lethal dose of KCN(3.0mg/kg, i.v.) did not die by administration of Moschus. 3. Moschus was significantly extended the duration of breathing after decapitation in mice. 4. Moschus showed a significant extension of survival time in mice following ligation of both common carotid arteries. 5. In the normobaric hypoxia with a nitrogen gas, Moschus showed a significant extension of survival time in mice. 6. In the normobaric hypoxia with a carbon dioxide gas, Moschus showed a significant shortness of survival time in mice. 7. In the normobaric hypoxia with a vaccum, Moschus showed a significant extension of survival time in mice. From the above results, it is suggested that Moschus demonstrated protective effects on the brain damages induced by cerebral anoxia.

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Antithrombotic Activity and Protective Effects of hexane fraction of Kamihyulbuchukeotang (KHBCT) on brain injury by KCN and MCA occlusion (가미혈부축어탕 Hexane층의 항혈전활성과 뇌손상 보호효과)

  • Lee, Min-Seop;Roh, Seok-Sun;Lim, Rak-Cheol;Song, Ho-Chul;Shin, Soon-Shik;Kim, Sung-Hoon
    • Korean Journal of Pharmacognosy
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    • v.31 no.4
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    • pp.373-382
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    • 2000
  • This study was performed to investigate the antithrombotic activity and protective effect of hexane fraction of Kamihyulbuchukeotang (KHCTH) on brain injury by KCN and MCA occlusion a prescription of HCT added with Lumbricus and Notoginseng Radix. Experiemental parameters are brain ischemia by MCA occlusion assay, KCN-induced brain injury, pulmonary thrombosis and platelet aggregation assay. The results were summarized as follows; 1. KHCTH extracts significantly inhibited the duration of KCN-induced coma (67%) and mortality (80%). 2. KHCTH extracts significantly suppressed brain ischemic area and edema following MCA occlusion and protected neuron cells as compared with control data. 3. KHCTH extracts inhibited pulmonary thrombosis induced by collagen and epinephrine. 4. KHCTH extracts inhibited platelet aggregation induced by collagen, ADP as agonist up to 76.9% and 32.3% respectivey at 1 mg/ml more effective than water extract of KHCT These data suggested that KHCTH could be applied as the protector of brain ischemia and injury and antithrombotic agent.

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Effects of Complex formula including Korea Red Ginseng (CKRG) on Brain Ischemia Induced by Occlusion of Middle Cerebral Artery (고려홍삼 복합방이 실험적 뇌경색에 미치는 영향)

  • Oh, Sang-Jin;Park, Il-Hyun;Kim, Sung-Hoon
    • The Journal of Korean Medicine
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    • v.20 no.1 s.37
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    • pp.161-171
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    • 1999
  • This study was performed to investigate the effect of complex formula(CKRG) consisting of Panax ginseng Radix rubra Koreana. Ganoderma, Cinnamomi Cortex, Glycyrrhizae Radix and Laminariae Thallus on brain ischemia and injury such as KCN-induced brain injury, forced brain ischemia, pulmonary thrombosis. The results were summarized as follows: 1. CKRG extracts showed a decrease of the duration of KCN-induced coma and showcd an increase in life expectancy. 2. CKRG extracts showed a decrease of neurologic grade in hind limb but did not affect neurologic grades in fore limb. Also. CKRG extracts showed a significant decrease of brain ischemic area and edema in MCA occlusion, 3. CKRG extracts showed a protective effect on pulmonary thrombosis induced by collagen and epinephrine. These data suggested that CKRG extracts could be applied to the protection of brain ischemia and injury.

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Study on the Effect of KamiTongJonHaaATang Extracts on Thrombosis, Brain Ischemia and Brain damage (가미통전화어탕(加味通栓化瘀湯)이 혈전증(血栓症)과 뇌허혈증(腦虛血症) 및 뇌손상(腦損傷)에 미치는 영향(影響)에 대한 실험적(實驗的) 연구(硏究))

  • Ahn, Taek Won;Kim, Byeong Tak
    • Journal of Haehwa Medicine
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    • v.8 no.1
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    • pp.379-401
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    • 1999
  • The effect of KamiTongJonHaaATang extracts on hypercholesterolemia, platelet aggregation, pulm onary thrombosis, KCN-induced coma, forcal brain ischemia, cytotoxicity of PC12 cells induced by amyloid ${\beta}$ protein(25-35), and NO production in RAW cells stimulated lipopolysaccharide were investigated, respectively. The results were summarized as follows; 1. KTJHAT extracts showed a significant decrease of serum total cholesterol, triglyceride, phospholipid, LDL-cholesterol, and VLDL-cholesterol in hypercholesterolemia induced by 2% cholesterol diet in NZW rabbit. 2. KTJHAT extracts induced a significant inhibition of human platelet aggregation induced by thrombin and ADP but did not affect human platelet aggregation induced by collagen. 3. KTJHAT extracts showed a protective effect on pulmonary thrombosis induced by collagen and epinephrine. 4. KTJHAT extracts prolonged the duration of KCN-induced coma. 5. KTJHAT extracts showed a significant decrease of brain ischemic area and edema in MCA occlusion. Also, KTJHAT extracts showed a decrease of neurologic grade in hind limb but did not affect neurologic grade in fore limb. 6. KTJHAT extracts showed a protective effect on cytotoxicity of PC 12 cells induced by amyloid ${\beta}$ protein(25-35) in a dose dependent manner. 7. KTJHAT extracts showed a significant decrease of NO production in RAW cells induced by lipopolysaccharide. These results suggested that KTJHAT extracts might be usefully applied for prevention and treatement of thrombosis and brain damage.

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The Effect of Dodamtang(DDT) on Brain damage and Hypertension (도담탕(導痰湯)이 뇌손상(腦損傷) 및 고혈압(高血壓)에 미치는 영향(影響))

  • Lim, Seong-Min;An, Joung-Jo;Choi, Young;Kim, Yong-Jin;Yoo, Ho-Ryoung;Park, Yang-Chun;Seol, In-Chan;Hwang, Chi-Won;Cho, Hyun-Kyung
    • The Journal of Internal Korean Medicine
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    • v.22 no.4
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    • pp.503-512
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    • 2001
  • Objective : This study was carried out to investigate the effects of DDT on the brain damage and hypertension. Methods : We observed the effect of Dodamtang(DDT) extract on KCN-induced coma, focal brain ischemia by MCA occlusion, cytotoxicity and protection of PC12 cells and B103 cells induced by amyloid ${\beta}$ protein(25-35). To prove the effect of DDT as a blood pressure depressant, we measured aldosterone, renin activity, catecholamine, sodium and NO density using the seperated blood plasma. Results : DDT showed a protective effect on cytotoxicity of PC12 cells and B103 cells induced by amyloid ${\beta}$ protein(25-35) in a dose dependent manner and proved the significant abridgement of brain ischemic area and edema induced by MCA occlusion, a critical decrease of neurologic deficitic grade in the fore-limbs. DDT didn't reduce the duration of KCN(1.87mg/kg iv.)-induced coma and prolonged the survival rate in the case of KCN(3.0mg/kg iv.)-induced coma by the ratio of 20%. While DDT increased the value of NO in SHR, it significantly decreased the blood pressure of SHR and the value of aldosterone& epinephrine in SHR. Conclusions : These results suggested that DDT might be usefully applied for treatment of hypertension, cerebral infarction, and brain damage.

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The Effects of SWS(Sahyang·Woohwang·Samchilkeun) on Hyperlipidemia and Brain Damage (사향(麝香)·우황(牛黃)·삼칠근(三七根) 복합방(複合方)이 고지혈증(高脂血症) 및 뇌손상(腦損傷)에 미치는 영향(影響))

  • Park, Jung-yang;Kim, Byeong-tak
    • Journal of Haehwa Medicine
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    • v.8 no.1
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    • pp.425-449
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    • 1999
  • For the evaluation of the effect on SWS, experiments were made on hyperlipidemia induced by hypercholesterol diet, inhibitory reaction to human platelet aggregation, Pulmonary thrombosis induced by collagen and epinephrine, global cerebral ischemia induced by KCN, brain ischemia induced by MCA occlusion, cytotoxicity of PC12 cells induced by amyloid ${\beta}$ protein(25-35), and NO production in RAW cells stimulated by lipopolysaccharide. The results were obtained as follows : 1. In the experiment on hyperlipidemia, the level of serum total cholesterol, phospholipid, and LDL-cholesterol were significantly decreased while the level of triglyceride, VLDL-cholesterol, and HDL-cholesterol had no significant change. 2. In the experiment on inhibitory reaction to platelet aggregation, SWS inhibited platelet aggregation induced by ADP(36.05%), by collagen(20.4%), and by thrombin(0.6%). 3. In the experiment on pulmonary thrombosis induced by collagen and epinephrine, the protective effect was found(37%). 4. In the experiment on global cerebral ischemia, coma duration induced by KCN changed insignificantly. 5. In the experiment on MCA occlusion, the change of neurologic grades on hind limb was significant only after the operation. Besides brain ischemic area and edema ratio were significantly decreased. 6. In the experiment on cytotoxicity of PC 12 cells induced by amyloid ${\beta}$ protein, the significant protective effect was found as concentration increases. 7. In the experiment on NO production in RAW cells stimulated by lipopolysaccharide, NO was significantly decreased. According to the results, it is expected that SWS might be effective on hyperlipidemia and brain damage.

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Protective Effects of Kamidojuk-san on the Nervous Systems

  • Hwang Chang Ha;Nam Gung Uk;Park Jong Oh;Lee Yong Koo;Choi Sun Mi;Kim Dong Hee
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.18 no.2
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    • pp.586-595
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    • 2004
  • Kamidojuk-San (KDJS) is known to be effective for treating cardiovascular diseases such hypertension, and clinically applied for the treatment of cerebral palsy or stoke patients. Yet, the overall mechanisms underlying its activity at the cellular levels are not known. Using experimental animal system, we investigated whether KDJS has protective effects on cells in cardiovascular and nervous systems. KDJS was found to rescue death of cultured primary neurons induced by AMPA, NMDA and kainate as well as BSO and Fe/sup 2+/ treatments. Moreover, KDJS treatment promoted animal's recovery from coma induced by a lethal dose of KCN treatment, and improved survival in animals exposed to lethal dose of KCN. Neurological examinations further showed that KDJS reduced the time which is required for animals to respond in terms of forelimb and hindlimb movements. To examine its physiological effects on cardiovascular and nervous systems, we induced ischemic injury in hippocampal neurons and cerebral neurons by middle cerebral artery (MCA) occlusion. Histological examination revealed that KDJS significantly protected neurons from ischemic damage. Thus, the present data suggest that KDJS may play an important role in protecting cells of cardiovascular and nervous systems from external noxious stimulations.

Kami-bang-pung-tong-sung-san is Involved in Protecting Neuronal Cells from Cytotoxic Insults

  • Na Young Cheul;Nam Gung Uk;Lee Yong Koo;Kim Dong Hee
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.18 no.1
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    • pp.265-273
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    • 2004
  • KBPTS is the fortified prescription of Bang-pung-tong-sung-san (BPTS) by adding Spatholobi Clulis and Salviae Miltiorrzae Radix. BPTS prescription has been used in Qriental medicine for the treatments of vascular diseases including hypertension, stroke, and arteriosclerosis, and nervous system diseases. Yet, the overall mechanism underlying its activity at the cellular levels remains unknown. To investigate the protective role of KBPTS on brain functions, noxious stimulations were applied to neurons in vitro and in vivo. KBPTS pretreatment in cultured cortical neurons of albino ICR mice rescued death caused by AMPA, NMDA, and kainate as well as by buthionine sulfoximine (BSO) and ferrous chloride (Fe/sup 2+/) treatments. Furthermore, KBPTS promoted animal's recovery from coma induced by a sublethal dose of KCN and improved survival by a lethal dose of KCN. To examine its physiological effects on the nervous system, we induced ischemia in the Sprague-Dawley rat's brain by middle cerebral artery (MCA) occlusion. Neurological examination showed that KBPTS reduced the time which is required for the animal after MCA occlusion to respond in terms of forelimb and hindlimb movement$. Histological examination revealed that KBPTS reduced ischemic area and edema rate and also protected neurons in the cerebral cortex and hippocampus from ischemic damage. Thus, the present data suggest that KBPTS may play an important role in protecting neuronal cells from external noxious stimulations.