• 제목/요약/키워드: PC12 세포

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흑타리버섯으로부터 항치매성 Acetylcholinesterase 저해물질의 생산 및 PC12 신경세포사 저해 효과 (Production of Anti-dementia Acetylcholinesterase Inhibitor from Pleurotus ostreatus (Heuktari) and Inhibitory Effect on PC12 Neuron Apoptosis)

  • 한상민;김지윤;이종수
    • 한국균학회지
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    • 제47권4호
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    • pp.337-346
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    • 2019
  • 본 연구에서는 버섯으로부터 항치매성 건강소재를 개발하고자 주요 식용 및 약용 버섯들의 물과 에탄올 추출물들을 제조한 후 이들의 수율과 acetylcholinesterase 저해활성을 측정하여 우수 버섯을 선발하였다. 또한 선발된 우수버섯에 함유되어있는 항치매성 acetylcholinesterase 저해 물질의 추출 최적조건을 검토하였고, 이 저해물질을 부분정제한 후 PC12 신경세포사 저해 활성을 측정하여 항치매 효능을 검증하였다. 시료 버섯들의 물 추출물과 70% 에탄올 추출물을 각각 제조하여 이들의 acetylcholinesterase 저해 활성을 측정한 결과 물 추출물의 수율이 40%로 높고 acetylcholinesterase 저해 활성도 20.2% (IC50: 12.4 mg)로 우수한 흑타리버섯을 acetylcholinesterase 저해물질을 함유한 우수 버섯으로 최종 선발하였다. 흑타리버섯 자실체중의 항치매성 acetylcholinesterase 저해물질의 추출 최적 조건은 흑타리버섯 분말을 1:30으로 증류수에 현탁 시킨 후 30℃에서 6시간 추출하는 조건이었다. 흑타리버섯 자실체의 항치매성 acetylcholinesterase 저해물질을 한외여과와 gel 여과 등으로 부분정제한 후 신경세포 PC12의 세포치사 억제에 미치는 영향을 조사한 결과 부분정제 물질을 50 ㎍/mL 처리했을 때 세포치사율이 17.0%로 낮아져서 흑타리버섯 부분정제물이 치매 진행과정을 억제하거나 지연시키는 효과를 보이는 것으로 사료된다.

PC12 세포에서 신경전달물질 방출을 저해하는 물질 S9940 물질의 탐색 (Screeing of S9940 as an Inhibitor of Neurotransmitter Release from PC12 Cells)

  • 이윤식;박기인
    • Toxicological Research
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    • 제14권3호
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    • pp.341-348
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    • 1998
  • We established an in vitro experimental system using the following procedure. We first introduced tritium-labelled norepinephrine ([3H]-NE)into PC12 cells. The [3H]-NE incorporated into PC12 cells were then stimulated by a high concentration (60 mM) of $K^+$ during 12 minutes. Then, we counted the amount of [3H]-NE release from PC12 cells with the scintillation counter. After screening fungal, Streptomyces or bacterial product using this experimental system, we obtained S9940 from Streptomyces spp. which inhibited [3H]-NE release from PC12 cells. S9940 also inhibits the release of ATP as a neurotransmitter of PC12 cells and rat cortical neurons. The inhibitory effect was seen even when the PC12 cells were treated with low $K^+$ buffer containing ionomycin $(1\muM)$ as an ionopore. This result suggests that the inhibitory action of S9940 on neurotransmitter release appeared after the influx of $Ca^{2+}$.

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PC12 세포에서 신경전달물질 방출을 저해하는 생리활성물질 FS11052의 탐색 (Screening of active substance FS11052 as an inhibitor of neurotransmitter release from PC12 cells)

  • 이윤식;이존화
    • 대한수의학회지
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    • 제46권2호
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    • pp.87-96
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    • 2006
  • We established an in vitro experimental system using the following procedure. We first introduced tritium-labeled norepinephrine ([$^3$H]-NE) into PC12 cells, The [$^3$H]-NE incorporated into PC12 cells were then stimulated by a high concentration (60 mM) of $K^+$ buffer during 12 minutes. Then, we collected $100{\mu}l$ supernatant and counted the amount of [$^3$H]-NE release from PC12 cells with a scintillation counter. After screening fungal, Streptomyces spp. or bacterial product using this experimental sytem, we obtained FS11052 from Streptomyces spp. which inhibited [$^3$H]-NE release from PC12 cells. FS11052 also inhibits the release of ATP as a neurotransmitter of PC12 cells and rat cortical neurons, The inhibitory effect was seen even when the PC12 cells were treated with low $K^-$ buffer containing ionomycin ($1{\mu}M$) as an ionopore. This result suggests that the inhibitory action of FS11052 on neurotransmitter release appeared after the influx of $Ca^{2+}$.

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

  • 이영효;정승현;신길조;문일수;이원철
    • 대한한의학회지
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    • 제24권1호
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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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PC12 손상 세포 및 전뇌허혈 유발 Gerbil에 대한 시호 세포보호효과 (Protective Effect of Bupleuri Radix on Hypoxia Reperfusion Induced by PC12 Cell Damage and Global Ischemia in Gerbil)

  • 최삼열;정승현;신길조;문일수;이원철
    • 대한한의학회지
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    • 제23권4호
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    • pp.113-124
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    • 2002
  • Objects: This research was conducted to investigate the protective effect of Bupleuri Radix against ischemic damage using PC12 cells and global ischemia in gerbils, Methods: To observe the protective effect of Bupleuri Radixon ischemic 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 Bupleuri Radix during ischemic damage. Gerbils were divided into three groups: a normal group, a 5-minute two-vessel occlusion (2VO) group and a Bupleun Radix administered group after 2VO. The CCAs were occluded by microclip for 5 minutes, Bupleuri Radix was administered orally for 7 days after 2VO. Histological analysis was performed on the 7th day. For histological analysis, the brain tissue was stained with 1 % of cresyl violet solution. Results: 1. Bupleuri Radix has a protective effect against ischemia in the CA1 area of the gerbil's hippocampus 7 days after 5-minute occlusion. 2. In the hypoxia/reperfusion model using PC12 cells, the Bupleuri 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. Bupleuri Radix increased the activities of glutathione peroxidase and catalase. 4. The increased activity of superoxidedismutase (SOD) by ischemic damage might have been induced as an act of self-protection. This study suggests that Bupleuri 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. Bupleuri Radix also has protective effect on a hypoxia/reperfusion cell culture model using PC12 cells. Conclusions: Bupleuri Radix has protective effect against ischemic brain damage during the early stages of ischemia.

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Coralyne에 의한 PC12 세포중의 도파민 생합성 저해작용 (Inhibition of Dopamine Biosynthesis by Coralyne in PC12 Cells)

  • 신정수;이명구
    • 생약학회지
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    • 제30권1호
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    • pp.79-83
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    • 1999
  • The effects of coralyne, a protoberberine isoquinoline compound, on dopamine biosynthesis in PC12 cells were investigated. Coralyne decreased the dopamine content dose-dependently $(46.3%\;inhibition\;at\;20\;{\mu}M\;for\;24 hr).$ Dopamine content was lowered at 6 hr and reached minimal level at 24 hr after exposure to coralyne at $20\;{\mu}M.$ The decreased dopamine level was maintained up to 48 hr and recovered to the control level at about 72 hr. Tyrosine hydroxylase, the rate-limiting enzyme in the catecholamine biosynthesis, was also inhibited at $20\;{\mu}M\;of\;coralyne$ by 16.1% relative to control. These results suggest that the inhibition of tyrosine hydroxylase by coralyne with a single treatment might be partially contributed to the decrease in dopamine content in PC12 cells.

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저산소/재관류로부터 청폐사간탕의 PC12 세포 보호 효과 (Protective Effect of Metabolized Chungpesagan-tang on Hypoxia/Reperfusion Induced-PC12 Cell Damage)

  • 소윤조
    • 생약학회지
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    • 제36권2호통권141호
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    • pp.151-157
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    • 2005
  • This research was performed to investigate the protective effect of Chungpesagan-tang (CST) from hypoxia/reperfusion induced-PC12 cell damage. To elucidate the mechanism of the protective effect of CST, cell viability, changes in activities of superoxide dismutase, glutathione peroxidase, catalase, caspase 3 and the production of malondialdehyde were observed after treating PC12 cells with CST which was metabolized by rat liver homogenate. Pretreatment of CST with liver homogenate appeared to increase its protective effect against hypoxia/reperfusion insult. The result showed that CST exhibited the highest protective effect against hypoxia/reperfusion at the dose of $1\;{\mu}g/ml$ in PC12 cells, probably by recovering the redox enzyme activities and MDA to control level.

Bulbocapnine이 PC12 세포중의 도파민 함량에 미치는 영향 (Effects of Bulbocapnine on Dopamine Content in PC12 Cells)

  • 신정수;이명구
    • 약학회지
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    • 제42권2호
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    • pp.170-174
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    • 1998
  • The effects of bulbocapnine, an aporphine isoquinoline alkaloid, on dopamine content in PC12 cells were investigated. Bulbocapnine decreased the dopamine content dose-dependentl y (39.2% inhibition at 2O${\mu}$M for 24 hr). The $IC_{50}$ value of bulbocapnine was 22.7${\mu}$M. Dopamine content was lowered at 6 hr after exposure to bulbocapnine. And then, the decreased dopamine level was almost maintained at 36 hr and recovered to the control level at about 60 hr. Tyrosine hydroxylase, the rate limiting enzyme in the catecholamine blosynthetic pathway, was also inhibited at 20${\mu}$M of bulbocapnine by 23.1% relative to control. We, therefore, hypothesized that the inhibition of tyrosine hydroxylase by bulbocapnine with a single treatment might be partially contributed to the decrease in dopamine content in PC12 cells.

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간효소에 의해 대사된 양격산화탕의 저산소/재관류로부터 PC12 세포 보호효과 (Protective Effect of Yangguksanwha-tang Metabolized by Liver Homogenate on Hypoxia-reperfusion Induced PC12 Cell Damage)

  • 소윤조
    • 약학회지
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    • 제49권1호
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    • pp.97-102
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    • 2005
  • The protective effect of Yangguksanwha-tang (YST) against hypoxia-reperfusion insult was investigated in PC12 cells. To elucidate the mechanism of the protective effect of YST, cell viability, the changes in activities of superoxide dismutase, glutathione peroxidase, catalase, caspase 3 and the production of malondialdehyde were observed after treating PC12 cells with YST which was metabolized by rat liver homogenate. Pretreatment of YST with liver homogenate appeared to increase its protective effect against hypoxia-reperfusion insult. The result showed that YST had the highest protective effect against hypoxia/reperfusion at the dose of $2\;{\mu}g/ml$ in PC12 cells, probably by recovering the redox enzyme activities and MDA to control level.

PC12 세포주에서 Translationally Controlled Tumor Protein에 의한 Mitogen-activated Protein Kinases 활성 조절 (Regulation of Mitogen-activated Protein Kinases by Translatoinally Controlled Tumor Protein in PC12 Cells)

  • 김미연;김미영
    • 약학회지
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    • 제54권5호
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    • pp.323-327
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    • 2010
  • Translationally controlled tumor protein (TCTP) activates basophils to release histamine and causes chronic inflammation. It was also reported that TCTP significantly reduced in brain of Alzheimer's Disease and Down Syndrome as compared to normal person, suggesting that TCTP might be involved in cognitive function. We wondered whether TCTP could act as a general inducer in neurotransmitters release in brain. We, therefore, investigated the role of TCTP in PC12 cell line which expressed neuronal properties. We found that TCTP could activate JNK, and the activity was inhibited by pretreatment of dicoumarol, a JNK inhibitor. However, TCTP could not activate ERK that has known to be involved in neurotransmitter release. These suggest TCTP did not participate in neurotransmitter release from PC12 cells, and TCTP might not be a general inducer in neurotransmitter release.