• 제목/요약/키워드: Myocardial cell

검색결과 176건 처리시간 0.026초

탈명산(奪命散)이 배양심근세포(培養心筋細胞) 및 혈관평골근세포(血管平滑筋細胞)에 미치는 영향(影響) (Effects of Talmyung-san on the Cultured Rat Myocardiac Cell and Vascular Smooth Muscle Cell)

  • 성강경;박세홍
    • 대한한방내과학회지
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    • 제21권1호
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    • pp.46-54
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    • 2000
  • Objectives : Talmyung-san(TMS) has been used for treatment of brain diseases in Chinese traditional medicine. However, little is known about the mechanism by which TMS rescues brain cells from ischemic damages. To elucidate the protective mechanisms of TMS, we execute experiments. Methods : The effects of TMS on ischemia/reperfusion-induced cytotoxicity and generation of nitric oxide(NO) are investigated in primary neonatal myocardial cells and A7rS, aortic smooth muscle cell line. Results : Ischemia/reperfusion itself induces severe myocardial cell death in vitro. However, treatment of the cells with TMS significantly reduces both ischemia/reperfusion-induced myocardial cell death and LDH release. In addition, pretreatment of TMS before reperfusion recovers the lose of beating rates alter ischemia/reperfusion. For a while, the water extract of TMS stimulates myocardial cells to produce NO in a dose dependent manner and it protects the damage of ischemia/reperfusion-induced myocardial cells. Furthermore, the protective effects of the water extract of TMS is mimicked by treatment of sodium nitroprusside, an exogenous NO donor. NG-monomethyl-L-arginine (NGMMA), a specific inhibitor of nitric oxide synthase(NOS), significantly blocks the protective effects of TMS on the cells after ischemia/reperfusion. In addition, on ischemia the water extract of TMS induce NO in A7r5 cell. Conclusions : Taken together, we suggest that the protective effects of TMS against ischemia/reperfusion-induced myocardial damages may be mediated by NO production of myocardial and vascular smooth muscle cell during ischemic condition.

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몰약 전탕액이 배양 심근세포에 미치는 영향 (Effects of Myrrha Water Extract on Rat Myocardial Cells in Cultures)

  • 권강범;조현익;김구환;김상범;이호섭;황우준;박승택;류도곤
    • 대한한의학회지
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    • 제21권2호
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    • pp.79-86
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    • 2000
  • Objectives and Methods : In order to elucidate toxic mechanism of myocardial damage and protective effect of myrrha water extract against cytotoxic effect of xanthine oxidase/hypoxanthine(XO/HX), cardioprotective effect of myrrha water extract was examined by MTT assay, LDH (Lactate Dehydrogenase) activity and heart beating rate after cultured myocardial cells derived from neonatal mouse were treated with various concentration of XO/HX, a free radical. Results : XO/HX induced a decrease of cell viability, an increase in the amount of LDH, and a decrease of heart beating rate on cultured myocardial cells in a dose-dependent manner. In cardioprotective effect of myrrha water extract, it showed a decrease in the amount of LDH and an increase of heart beating rate on cultured myocardial cells damaged by XO/HX. Conclusions : From the above results, it is suggested that XO/HX showed toxic effect in cultured myocardial cells derived from neonatal mouse and that myrrha water extract is very effective in the prevention of XO/HX-induced cardiotoxicity.

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Integrin 𝛼4 Positive Subpopulation in Adipose Derived Stem Cells Effectively Reduces Infarct Size through Enhanced Engraftment into Myocardial Infarction

  • Zihui Yuan;Juan Tan;Jian Wang
    • International Journal of Stem Cells
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    • 제17권1호
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    • pp.70-79
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    • 2024
  • The efficacy of adipose-derived stem cells (ASCs) on myocardial infarction is limited due to poor survival and engraftment. Integrin-mediated cell adhesion is a prerequisite for its survival and homing. ASCs expressed insufficient integrin 𝛼4, limiting their homing capacity. This study aims to characterize integrin 𝛼4+ ASC subpopulation and investigate their therapeutic efficacy in myocardial infarction. We used fluorescence-activated cell sorting to harvest integrin 𝛼4+ ASCs subpopulation, which were characterized in vitro and transplanted into myocardial infarction model. Positron emission tomography imaging were performed to measure infarction size. Cardiac cine magnetic resonance imaging was used to evaluate heart contractile function. Compared with the unfractionated ASCs, integrin 𝛼4+ ASCs subpopulation secreted a higher level of angiogenic growth factors, migrated more rapidly, and exhibited a stronger anti-apoptotic capacity. Vascular cell adhesion molecule-1 was obviously up-regulated at 3 days after myocardial infarction, which interacted with integrin α4 receptor on the surface of ASCs to enhance the survival and adhesion. Thus, we implanted unfractionated ASCs or integrin α4+ ASCs subpopulation into the 3-day infarcted myocardium. Integrin α4+ ASCs subpopulation exhibited more robust engraftment into the infarcted myocardium. Integrin α4+ ASCs subpopulation more effectively decreased infarct size and strengthen cardiac function recovery than did the unfractionated ASCs. Integrin α4+ ASCs subpopulation is superior to unfractionated ASCs in ameliorating ischemic myocardial damage in animal model. Mechanistically, their more robust engraftment into the infarct area, higher migratory capacity and their increased release of paracrine factors contribute to enhanced tissue repair.

Isoproterenol 투여로 유발된 심근세포 손상에 미치는 diltiazem의 영향 (Effects of Diltiazem on Isoproterenol-induced Myocardial Cell Wounding in the Rabbit)

  • 김현;장대영;라봉진;김호덕
    • Applied Microscopy
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    • 제27권2호
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    • pp.121-130
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    • 1997
  • It has been demonstrated that majority of cells in the mammalian body such as myocytes and epithelial cells of skin and intestine respond to mechanical force or environmental factors and exhibit partial disruption of cell membrane, i. e., cell wounding, even in a physiological condition. Myocardial cells are rather apt to be wounded than other cells since they are definitely exposed to mechanical stress by contraction-relaxation and blood flow. However, the mechanism how myocardial cells protect themselves against cell wounding is not yet clarified. On this background, the present study was performed to elucidate whether albumin leakage is related to cell wounding and to assess whether diltiazem, a potent calcium channel blocker, is beneficial in isoproterenol-induced cell wounding in the heart. Hearts isolated from New Zealand White rabbits ($1.5\sim2.0kg$ body weight, n=20) were perfused with Tyrode solution by Langendorff technique. After stabilization of baseline hemodynamics, the hearts were subjected to bolus administration of isoproterenol and diltiazem as following order: $1.6{\mu}M$ isoproterenol at zero min (the beginning point): $16{\mu}M$ diltiazem at 20min; $1.6{\mu}M$ isoproterenol at 25min; $16{\mu}M$ isoproterenol at 45 min; $160{\mu}M$ diltiazem at 65 min; $16{\mu}M$ isoproterenol at 70 min. During all experiments, the left ventricular function was recorded, albumin leakage in the coronary effluents was analyzed by electrophoresis and Western blot, and myocardial cell membranes were examined by conventional transmission electron microscopy. Data were analyzed by t-test and linear regression test. Isoproterenol significantly increased the inotropic and chronotropic contractions, coronary flow, and frequency of arrhythmia, however, diltiazem did not influence on hemodynamics except decrease in the frequency of arrhythmia and a slight decrease in contractility. Isoproterenol also resulted partial disruption of myocardial cell membrane and inclose in albumin leakage, while diltiazem pretreatment showed number of electron-dense plaques in the cell membrane and a tendency of decrease in albumin leakage. These results indicate that albumin leakage may be an indirect index of cell wounding in the heart and diltiazem nay be beneficial to protect myocardial cells against isoproterenol-induced cell wounding. It is likely that diltiazem promotes resealing process of the cell membrane.

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오미자 추출물이 산소지유기에 의하여 손상된 생쥐의 배양 심근세포에 미치는 영향 (Effects of Fructus Schisandrae Water Extract on Cultured Mouse Myocardial Cells Induced by Xanthine Oxidase/Hypoxanthine)

  • 주은정
    • Journal of Nutrition and Health
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    • 제33권7호
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    • pp.739-744
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    • 2000
  • The purpose of this study was to elucidate protective effect of Fructus Schsandrae(FS) water extract against xanthine oxidase/hypoxanthine(XO/HX)-induced cardiotoxicity in myocardial cells this experiment was performed. Cardiotoxicity of XO/HX was examined by MTT(MTT [3-(4,5-dimethylthiazol-2-yl)-2.5,-diphenyl tetrazolium bromide) assay. XO/HX induced the decrease of cell viability. Also XO/HX induced the increase of LDH activity and the decrease of beating rate on cultured myocardial cells in a dose-dependent manner. To investigate cardioprotective effect of FS water extract cultures were preincubated with FS water extract for 3 hours. Cultures were then exposed to XO/HX for 72 hours. FS water extract have an efficacy in decreaasing LDH activity and increasing heart beating rate on cultured myocardial cells damaged by XO/HX. From the results it is suggested that XO/HX may show toxic effect in cultured myocardial cells derived from neonatal mouse and FS water extract is effective in the prevention of XO/HX-induced cardiotoxicity.

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메틸수은으로 손상된 배양 심근세포에 대한 동과자의 영향 (Effect of Benincasae Semen on Methylmercury-Induced Myotoxicity in Cultured Myocardial Cells)

  • 하대호;영현웅;이강창
    • 동의생리병리학회지
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    • 제17권5호
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    • pp.1231-1234
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    • 2003
  • To clerify the toxic effect of methylmercuric chloride(MMC) in cultured mouse myocardial cells, cytotoxic effect was measured by MTT assay after cultured myocardial cells were incubated for 48 hours in the media containing 1~30 uM concentrations of MMC. And also, the protective effect of Benincasae Semen (BS) was assessed in these cultrures. Cell viability was significantly decreased in a dose-dependent manner after cultured myocardial cells were exposed to 30 uM MMC for 48 hours. In the neuroprotective effect of BS on MMC-induced cytotoxicity, BS blocked the MMC-induced myotoxicity in these cultures. From these results, it suggests that MMC is toxic on cultured mouse myocardial cells and BS is effective in blocking the neurotoxicity induced by MMC.

활성산소에 의한 심근독성 및 동과의 보호효과에 관한 연구 (Cardiotoxicity and Effect of Benincasae Semen on the Reactive Oxygen Species)

  • 유교상;손영우;이용석
    • 동의생리병리학회지
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    • 제16권6호
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    • pp.1197-1200
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    • 2002
  • To examine the cardiotoxicity of glucose oxidase(GO) in cultured myocardial cells, cardiotoxicity was measured by MTT assay. Myocardial cells were treated with 1~50 mU/ml GO for 5 hours. The cardioprotective effect of Benincasae Semen(BS) was measured by MTT assay in these cultrures. Cell viability was significantly decreased in dose- and time-dependently after myocardial cells were exposed to 30mU/ml GO for 5 hours. In the cardioprotective effect of BS on the cardiotoxicity induced by GO, BS prevented the cardiotoxicity induced by GO in these cultures. From these results, it suggests that GO had cytotoxic effect in cultured myocardial cells and herb extract, BS showed protective effect on GO-induced cardiotoxicity.

산소분압(酸素分壓)에 의한 심근세포변화(心筋細胞變化)에 미치는 생맥산(生脈散)의 효과(效果) (Effects of Saengmaegsan Extract on Cultured Myocardial Cells induced by Oxygen Tension)

  • 신선호;류도곤;문병순
    • 대한한의학회지
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    • 제19권2호
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    • pp.100-111
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    • 1998
  • This study is designed to investigate the effects of Saengmaegsan extract on cultured myocardial cell sheets affected by oxygen tension change. The results were as follows : 1. Saengmaegsan meaningfully restored the cellular activity decrease in the cultured myocardial cells affected by high oxygen tension. 2. Saengmaegsan meaningfully lessened the degree of total protein decrease in the myocardial cells caused by high oxygen tension. 3. Saengmaegsan meaningfulJy refrained from syntetic decrease of 4-hydroxyproline in both low oxygen tension group and high oxygen tension group.

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배양심근세포에 있어서 Glucose Oxidase의 독성에 대한 천오두의 영향 (Effect of Aconiti Radix on the Toxicity Induced by Glucose Oxidase in Cultured Myocardial Cells)

  • 이정헌;이강창;김상수;홍기연;오연균;석승환;이갑상;진복희;신흥철;류도곤;박승택
    • 동의생리병리학회지
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    • 제16권3호
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    • pp.495-498
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    • 2002
  • Cytotoxicity of glucose oxidase(GO) and neuroprotective effect of Aconiti Radix(AKR) against GO-induced neurotoxicity were measured for elucidating the mechanism of cardiotoxicity on cultured mouse myocardial cells by MTT assay after myocardial cells were cultured for 24 hours at various concentrations of GO. GO was toxic in a time-and dose-dependent manner on cultured myocardial cells after myocardial cells were grown for 24 hours in media containing 5~40mU/ml GO. While, cultures were pretreated with 50 μg/ml AKR for 2 hours increased remarkably cell viability. From the above results, it is suggested that GO is toxic on cultured mouse myocardial cells by the decrease of cell viability, and herb medicine such as AKR is very effective in the prevention of myocardial toxicity induced by GO.

Recombinant Human Thioredoxin-1 Protects Macrophages from Oxidized Low-Density Lipoprotein-Induced Foam Cell Formation and Cell Apoptosis

  • Zhang, Hui;Liu, Qi;Lin, Jia-Le;Wang, Yu;Zhang, Ruo-Xi;Hou, Jing-Bo;Yu, Bo
    • Biomolecules & Therapeutics
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    • 제26권2호
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    • pp.121-129
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    • 2018
  • Oxidized low-density lipoprotein (ox-LDL)-induced macrophage foam cell formation and apoptosis play critical roles in the pathogenesis of atherosclerosis. Thioredoxin-1 (Trx) is an antioxidant that potently protects various cells from oxidative stress-induced cell death. However, the protective effect of Trx on ox-LDL-induced macrophage foam cell formation and apoptosis has not been studied. This study aims to investigate the effect of recombinant human Trx (rhTrx) on ox-LDL-stimulated RAW264.7 macrophages and elucidate the possible mechanisms. RhTrx significantly inhibited ox-LDL-induced cholesterol accumulation and apoptosis in RAW264.7 macrophages. RhTrx also suppressed the ox-LDL-induced overproduction of lectin-like oxidized LDL receptor (LOX-1), Bax and activated caspase-3, but it increased the expression of Bcl-2. In addition, rhTrx markedly inhibited the ox-LDL-induced production of intracellular reactive oxygen species (ROS) and phosphorylation of p38 mitogen-activated protein kinases (MAPK). Furthermore, anisomycin (a p38 MAPK activator) abolished the protective effect of rhTrx on ox-LDL-stimulated RAW264.7 cells, and SB203580 (a p38 MAPK inhibitor) exerted a similar effect as rhTrx. Collectively, these findings indicate that rhTrx suppresses ox-LDL-stimulated foam cell formation and macrophage apoptosis by inhibiting ROS generation, p38 MAPK activation and LOX-1 expression. Therefore, we propose that rhTrx has therapeutic potential in the prevention and treatment of atherosclerosis.