• 제목/요약/키워드: hippocampal cell

검색결과 238건 처리시간 0.026초

HT22 세포에서 Curcumin 유도체가 Heme Oxygenase-1 발현에 미치는 효과 (Effect of Curcumin Derivatives on Heme Oxygenase-1 Expression in HT22 Cells)

  • 정용관;이윤정;천현자;류일환;지연주;채권우;김영숙;손지우;강현규;이성희;안인파;정헌택;배현옥
    • 약학회지
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    • 제55권4호
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    • pp.319-323
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    • 2011
  • Curcumin, of which a critical characteristic is the capacity of crossing the blood-brain barrier, has been reported to induce the expression of neuroprotective heme oxygenase (HO)-1. The aim of this study is to compare HO-1-inducing capacity and neuroprotective activity of curcumin, its demethoxy (demethoxycurcumin, DMC; bis-demethoxycurcumin, BDMC) and hydrogenated derivatives (tetrahydrocurcumin, THC) in mouse hippocampal HT22 cells. Curcumin attenuated glutamate-induced cell death through HO-1 expression. DMC lacking a methoxy group on one of the aromatic rings possessed slightly lower activity in HO-1 expression and neuroprotection than curcumin. Similarly, BDMC, which lacks two methoxy groups on both of the aromatic rings, showed less activity than curcumin. These findings suggest that the presence of methoxy groups on the aromatic ring is required to enhance neuroprotective HO-1 expression. The reduction of the diarylheptadienone chain of curcumin by hydrogen, as in THC, was accompanied by a complete loss of ability to induce HO-1 expression and neuroprotection, suggesting that the conjugated double bonds of the central seven-carbon chain of curcumin may be essential for its ability to induce neuroprotective HO-1 expression. Our findings may provide useful information for further development of neuroprotective HO-1 inducers.

상황버섯균사체 쌀의 HT22 신경세포 보호 효과 (Neuroprotective Effect of Rice with Phellinus linteus Mycelium in HT22 Cells)

  • 김지현;전순실
    • 한국식품영양과학회지
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    • 제46권7호
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    • pp.886-890
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    • 2017
  • 상황버섯균사체 쌀의 뇌세포 보호 효과를 분석하여 상황버섯균사체 쌀에 대한 기초자료를 제공하고, 이를 이용하여 뇌 질환의 예방과 관련된 기능성 식품으로의 개발가능성을 찾고자 하였다. 상황버섯균사체 쌀 추출물을 처리하여 마우스 해마세포주 HT22의 세포보호 효과를 알아보기 위해 MTS assay를 이용한 세포생존율과 western blot을 이용한 세포사멸 단백질의 발현을 관찰하였다. 상황버섯균사체 쌀 추출물의 단일 독성을 측정한 결과 상황버섯균사체 쌀 추출물 처리군은 102.68% 이상의 생존율을 보여 신경세포의 사멸에 영향을 주지 않았다. 또한, 상황버섯균사체 쌀 추출물과 $H_2O_2$를 함께 처리하였을 때 $H_2O_2$로 자극된 세포는 63.80%의 세포생존율을 나타내었고, 상황버섯균사체 쌀 추출물과 $H_2O_2$가 함께 처리된 세포는 76.85%, 92.46%, 95.57%로 농도 의존적으로 세포생존율이 증가하였다. HT22 cell에 $H_2O_2$와 상황버섯균사체 쌀 추출물을 처리하여 apoptosis 유도 단백질을 측정한 결과, pro-apoptotic protein인 Bax는 발현이 억제되었고, anti-apoptotic protein인 Bcl-2는 발현이 증가함을 확인하였다. 또한, caspase-3와 PARP의 발현을 억제하여 상황버섯균사체 쌀 추출물이 $H_2O_2$로 유도되는 apoptosis를 억제하는 것을 확인할 수 있었다.

Protective effects of Tat-NQO1 against oxidative stress-induced HT-22 cell damage, and ischemic injury in animals

  • Jo, Hyo Sang;Kim, Duk-Soo;Ahn, Eun Hee;Kim, Dae Won;Shin, Min Jea;Cho, Su Bin;Park, Jung Hwan;Lee, Chi Hern;Yeo, Eun Ji;Choi, Yeon Joo;Yeo, Hyeon Ji;Chung, Christine Seok Young;Cho, Sung-Woo;Han, Kyu Hyung;Park, Jinseu;Eum, Won Sik;Choi, Soo Young
    • BMB Reports
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    • 제49권11호
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    • pp.617-622
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    • 2016
  • Oxidative stress is closely associated with various diseases and is considered to be a major factor in ischemia. NAD(P)H: quinone oxidoreductase 1 (NQO1) protein is a known antioxidant protein that plays a protective role in various cells against oxidative stress. We therefore investigated the effects of cell permeable Tat-NQO1 protein on hippocampal HT-22 cells, and in an animal ischemia model. The Tat-NQO1 protein transduced into HT-22 cells, and significantly inhibited against hydrogen peroxide ($H_2O_2$)-induced cell death and cellular toxicities. Tat-NQO1 protein inhibited the Akt and mitogen activated protein kinases (MAPK) activation as well as caspase-3 expression levels, in $H_2O_2$ exposed HT-22 cells. Moreover, Tat-NQO1 protein transduced into the CA1 region of the hippocampus of the animal brain and drastically protected against ischemic injury. Our results indicate that Tat-NQO1 protein exerts protection against neuronal cell death induced by oxidative stress, suggesting that Tat-NQO1 protein may potentially provide a therapeutic agent for neuronal diseases.

배양신경세포의 저산소증모델에서 대황 물추출물에 의한 유전자 표현 변화의 microarray 분석 (Microarray Analysis of Gene Expression by Rhei Rhizoma Water Extracts in a Hypoxia Model of Cultured Neurons)

  • 이현숙;송진영;문일수
    • 생명과학회지
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    • 제19권1호
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    • pp.21-33
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    • 2009
  • 대황(Rhei Rhizoma; RR, 대황(大黃))은 Rheum officinale Baill.와 Rheum palmatum L.(polygonaceae)의 땅속부분으로 남아시아의 민속의학에서 간 및 신장의 손상을 치료하는데 널리 이용되고 있다. 본 연구에서는 배양한 흰쥐 해마신경세포의 저산소증모델을 이용하여 대황의 물추출물이 유전자 표현에 미치는 영향을 microarray 방법을 이용하여 조사하였다. 배양 후 10일 (DIV10)에 추출물을 배지에 $2.5{\mu}g/ml$ 농도로 첨가하고, DIV13에 저산소증(2% $O_2$/5% $CO_2$, $37^{\circ}C$, 3 h)을 유발한 후 24 시간 후에 total RNA를 분리하여 microarray에 사용하였다. MA-plot에 의하면 표현이 연화된 대부분의 유전자는 ${\pm}2$배 이내로 증감되었다. 이 가운데 Global M 값이 0.2(즉, 15%)보다 더 증가한 유전자는 472종, Global M 값이 -0.2(즉, -15%)보다 더 감소한 유전자는 725종이였다. 세포의 생존과 관련된 유전자 가운데 세포자연사 억제유전자인 Tegt(2.4배), Nfkb1 (2.4배), Veg (1.8배), Ngfr (1.6배) 등이 크게 증가하였으며, 반면에 자연사 촉진유전자인 Bad (-64%), Cstb (-66%)는 감소하였다. 스트레스를 극복하는데 필요한 유전자인 Defb3 (2.7배), Cygb (2.2배), Ahsg (2.18배), Alox5 (2배) 등도 크게 증가하였다. 그리고 세포 성장을 촉진하는 유전자인 Erbb2 (1.84배), Mapk12 (1.8배)도 크게 증가하였다. 따라서 대황의 물추출물은 세포생존에 필요한 유전자를 증가시키고, 세포사를 유도하는 유전자는 감소시킴으로서 저산소층 스트레스에서 신경세포의 사망을 억제하는 것으로 해석된다.

꾸지뽕 열매 조다당류 분획물의 산화방지 활성 및 신경세포 보호 효과 (Antioxidant and neuroprotective effects of crude polysaccharide fractions from Cudrania tricuspidata fruits)

  • 김이은;조은지;변의홍
    • 한국식품과학회지
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    • 제50권5호
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    • pp.543-548
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    • 2018
  • 본 연구는 꾸지뽕 열매 조다당류 분획물(CTP)의 산화방지 활성 및 신경세포 보호 효과에 관하여 알아보기 위하여, 항산화 활성인 라디칼 제거능 및 환원력을 평가한 결과, 꾸지뽕 열매 조다당류의 농도가 증가할수록 산화방지 활성이 유의적으로 증가하는 것으로 나타났다. 또한, 이러한 꾸지뽕 열매 조다당류의 뇌신경세포 보호 효과에 관하여 알아보기 위하여 생쥐의 해마 유래 뇌신경세포에 꾸지뽕 열매 조다당류를 처리한 후 과산화수소로 산화적인 스트레스를 유도하여 세포 독성에 관하여 알아본 결과, 꾸지뽕 열매 조다당류의 처리는 농도 의존적으로 뇌신경 세포의 생존율을 증가시켰으며, 이에 따라 산화방지 효소인 SOD 활성이 증가하고 지방질 과산화 생성물인 MDA level이 감소한 것을 알 수 있었다. 이상의 결과들로 꾸지뽕 열매 조다당류의 산화방지 활성 및 뇌신경세포 보호 효과에 관하여 확인할 수 있었으며, 추후 어떤 메커니즘으로 신경세포를 보호하는지 추가적인 연구가 필요할 것으로 생각한다. 꾸지뽕 열매 조다당류 분획물은 산화방지 및 산화적 스트레스로부터 신경세포 보호효과를 나타내어 퇴행성 신경질환 예방에 유용한 건강기능성 식품 소재가 될 것으로 사료된다.

중풍 한방처방전의 효능비교 연구 ; 황련해독탕, 거풍지보단, 가미사물탕이 국소 전뇌허혈에 의한 학습과 기억에 미치는 효과 (Neuropretective effect of Kupunggibodan, Gamisamul-tang and Whangryunhaedok-tang on the ischemia-induced learning and memory deficits by MCAO in the rats)

  • 이봄비;정진용;김선녀;김호철;권용준;함대현;이혜정;심인섭
    • Korean Journal of Acupuncture
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    • 제19권2호
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    • pp.63-78
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    • 2002
  • Kupunggibodan(KU), Gamisamul-tang(GA) and Whangryunhaedok-tang(WH) are clinically the most popular prescriptions as an herbal medicine in the treatment of ischemia. In order to compare and evaluate their protective effects on the ischema-induced cognitive deficits by middle cerebral artery occlusion (MCAO), we examined its ability to improve ischemia-induced cell loss and impairements of learning and memory in the Morris water maze and eight-arm radial arm maze. Focal cerebral ischemia produced a marked cell loss, decrease in acetylcholinesterase(AchE) reactivity in the hippocampus, and learning and memory deficits in two behavioral tasks. Pretreatment with WH (100 mg/kg, p.o.) produced a substantial increase in acquisition in the Morris water maze. Pretreatment with KU increased the perfomance of the resention test in the Morris water maze. WH, KU and GA caused a significant improvement in choice accuracy in radial arm maze test. WH was superior to KU and GA in perfomance of the radial arm maze test. Consistent with behavioral data, staining with cresyl violet showed that pretreatments with WH, but not KU and GA significantly recovered the ischemia-induced cell loss in the hippcampal CA1 area. In addition, pretreatments with WH and KU recovered the ischemia-induced reduction of AchE reactivity in the hippocampal CA1 area. These results demonstrated that KU, GA and WH have protective effects against ischimea-induced learning and memory impairments and that the efficacy was the order of WH>KU>GA in tratment of ischemia induced memory deficits. The present studies provide an evidence of KU, GA and WH as putative treatment of vascular dementia. Supported by a fund from the Ministry of Health and Welfare(HMP-00-OO-04-0004), and the Brain Korea 21 Project from Korean Ministry of Education, Korea.

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Gintonin influences the morphology and motility of adult brain neurons via LPA receptors

  • Kim, Do-Geun;Kim, Hyeon-Joong;Choi, Sun-Hye;Nam, Sung Min;Kim, Hyoung-Chun;Rhim, Hyewhon;Cho, Ik-Hyun;Rhee, Man Hee;Nah, Seung-Yeol
    • Journal of Ginseng Research
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    • 제45권3호
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    • pp.401-407
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    • 2021
  • Background: Gintonin is an exogenous ginseng-derived G-protein-coupled lysophosphatidic acid (LPA) receptor ligand. LPA induces in vitro morphological changes and migration through neuronal LPA1 receptor. Recently, we reported that systemic administration of gintonin increases blood-brain barrier (BBB) permeability via the paracellular pathway and its binding to brain neurons. However, little is known about the influences of gintonin on in vivo neuron morphology and migration in the brain. Materials and methods: We examined the effects of gintonin on in vitro migration and morphology using primary hippocampal neural precursor cells (hNPC) and in vivo effects of gintonin on adult brain neurons using real time microscopic analysis and immunohistochemical analysis to observe the morphological and locational changes induced by gintonin treatment. Results: We found that treating hNPCs with gintonin induced morphological changes with a cell rounding following cell aggregation and return to individual neurons with time relapses. However, the in vitro effects of gintonin on hNPCs were blocked by the LPA1/3 receptor antagonist, Ki16425, and Rho kinase inhibitor, Y27632. We also examined the in vivo effects of gintonin on the morphological changes and migration of neurons in adult mouse brains using anti-NeuN and -neurofilament H antibodies. We found that acute intravenous administration of gintonin induced morphological and migrational changes in brain neurons. Gintonin induced some migrations of neurons with shortened neurofilament H in the cortex. The in vivo effects of gintonin were also blocked by Ki16425. Conclusion: The present report raises the possibility that gintonin could enter the brain and exert its influences on the migration and morphology of adult mouse brain neurons and possibly explains the therapeutic effects of neurological diseases behind the gintonin administration.

쥐 해마 HT22 세포에서 글루타메이트 유도 산화 스트레스에 대한 Salacca wallichiana 추출물의 신경 보호 효과 (Neuroprotective effects of Salacca wallichiana extract against glutamate-induced oxidative stress in mouse Hippocampal HT22 cells)

  • 변지훈;홍예영;이중회;;;한송이;김재훈
    • Journal of Applied Biological Chemistry
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    • 제66권
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    • pp.250-257
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    • 2023
  • Glutamate는 포유류의 중추신경계에 분포하는 흥분성 신경전달물질로, 기억, 인지, 그리고 학습 등에 있어서 중요한 역할을 한다. 하지만 고농도의 Glutamate는 신경세포에 독성을 유발하여 신경세포사멸을 유도함으로써 알츠하이머병, 파킨슨병, 뇌졸중 등의 신경퇴행성질환을 일으키는 것으로 알려져 있다. 본 연구에서 아열대 천연물의 항산화 활성과 신경보호 효과를 분석하였다. 11종의 아열대 추출물 중에서 Salacca wallichiana 추출물 (SE)의 라디칼 소거활성이 뛰어난 것으로 나타났다. 그리고 SE의 신경보호 효과를 조사한 결과 glutamate로 유도되는 cell death로부터 신경세포를 보호하였다. 또한 glutamate로 유도되는 apoptosis로부터 HT22 세포를 보호하는 효과는 Annexin V와 PI로 염색한 후 flow cytometry를 통해 분석되었다. 추가적으로 H2DCFDA 염색을 이용하여 SE가 glutamate로 유도되는 세포 내 활성 산소 종 (ROS)을 억제한다는 것을 확인했다. SE의 신경보호 효과는 oxidative stress로 유발되는 Mitogen-activated protein kinase (MAPK) signaling pathway를 억제함으로써 신경세포를 보호하는 것으로 나타났다. 결과적으로 SE가 신경퇴행성질환을 예방하기 위한 치료제 개발에 기여할 수 있음을 나타낸다.

Low-level Green and Red Laser Treatment of Shaochong (HT9)·Dadun (LR1) and Shaohai (HT3)·Yingu (KI10) Acupoints in a Rat Model of Focal Cerebral Ischemia

  • Na, Chang-Su;Kim, Wang-In;Jang, Ho-Sun;Youn, Dae-Hwan;Moon, Young-Min;Jeong, Sung-Ho;Cheon, Min-Woo
    • Transactions on Electrical and Electronic Materials
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    • 제16권2호
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    • pp.65-69
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    • 2015
  • Low level laser therapy (LLLT) has facilitated an improvement in acupuncture treatment. In this study, we stimulated Shaochong (HT9), Dadun (LR1), Shaohai (HT3), and Yingu (KI10) acupoints with pulsed laser diodes 532 nm [green laser] and 658 nm [red laser] in rats with induced middle cerebral artery occlusion(MCAO). The animals were divided into 6 groups: intact control; MCAO control without LLLT; LLLT with red laser at HT9·LR1 and HT3·KI10 (RR); LLLT with green laser at HT9·LR1 and HT3·KI10 (GG); LLLT with green laser at HT9·LR1 and red laser at HT3·KI10 (GR); and LLLT with red laser at HT9·LR1 and green laser at HT3·KI10 (RG). We evaluated the immunohistochemical changes in the hippocampal CA1 region, and complete blood count changes. Compared to the MCAO control group, the RG group showed a significant decrease in Bax and cytochrome c levels in the hippocampus, and a significant increase in hemoglobin level, hematocrit, total white blood cell, neutrophil, lymphocyte, monocyte, and erythrocyte counts.

Spatiotemporal expression of RCAN1 and its isoform RCAN1-4 in the mouse hippocampus after pilocarpine-induced status epilepticus

  • Cho, Kyung-Ok;Jeong, Kyoung Hoon;Cha, Jung-Ho;Kim, Seong Yun
    • The Korean Journal of Physiology and Pharmacology
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    • 제24권1호
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    • pp.81-88
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    • 2020
  • Regulator of calcineurin 1 (RCAN1) can be induced by an intracellular calcium increase and oxidative stress, which are characteristic features of temporal lobe epilepsy. Thus, we investigated the spatiotemporal expression and cellular localization of RCAN1 protein and mRNA in the mouse hippocampus after pilocarpine-induced status epilepticus (SE). Male C57BL/6 mice were given pilocarpine hydrochloride (280 mg/kg, i.p.) and allowed to develop 2 h of SE. Then the animals were given diazepam (10 mg/kg, i.p.) to stop the seizures and sacrificed at 1, 3, 7, 14, or 28 day after SE. Cresyl violet staining showed that pilocarpine-induced SE resulted in cell death in the CA1 and CA3 subfields of the hippocampus from 3 day after SE. RCAN1 immunoreactivity showed that RCAN1 was mainly expressed in neurons in the shammanipulated hippocampi. At 1 day after SE, RCAN1 expression became detected in hippocampal neuropils. However, RCAN1 signals were markedly enhanced in cells with stellate morphology at 3 and 7 day after SE, which were confirmed to be reactive astrocytes, but not microglia by double immunofluorescence. In addition, realtime reverse transcriptase-polymerase chain reaction showed a significant upregulation of RCAN1 isoform 4 (RCAN1-4) mRNA in the SE-induced hippocampi. Finally, in situ hybridization with immunohistochemistry revealed astrocytic expression of RCAN1-4 after SE. These results demonstrate astrocytic upregulation of RCAN1 and RCAN1-4 in the mouse hippocampus in the acute and subacute phases of epileptogenesis, providing foundational information for the potential role of RCAN1 in reactive astrocytes during epileptogenesis.