• 제목/요약/키워드: Neuronal health

검색결과 164건 처리시간 0.032초

산화적 스트레스와 관련하여 신경세포의 활성에 미치는 강황 열수추출물의 영향에 대한 연구 (Effect of Curcuma longa Hot Water Extract on Activity of Neuronal Cells Related to Oxidative Stress)

  • 채용병;정경태;김성구;유병홍;김문무
    • 생명과학회지
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    • 제22권5호
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    • pp.657-664
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    • 2012
  • 본 연구의 목적은 인지기능을 가진 약효제를 발굴하는 것이다. 본 연구에서는 토끼의 간과 신경세포로부터 각각 유래한 angiotension converting enzyme과 acetylcholinesterase에 대한 강황 열수추출물(CLWE)의 억제효과 뿐만 아니라 항산화 효과가 조사되었다. 이리하여 먼저 산화적 스트레스와 연관이 있는 환원력과 DPPH radical, superoxide anion, hydroxyl radical, lipid peroxidation에 대한 CLEW의 소거능 및 DNA 산화에 대한 보호효과를 평가하였다. CLEW는 환원력 뿐만 아니라 본 연구에서 시험된 활성산소종 중에서 특히 superoxide anion의 소거능이 가장 우수한 것으로 나타났다. 더욱이 CLEW는 0.25% 이상의 농도에서 angiotensin converting enzyme 활성을 억제효과를 발휘하는 것으로 나타났다. 신경세포에서 CLEW는 또한 산화적 스트레스와 nitric oxide 유발을 억제하였다. 그러므로 이상의 결과는 CLEW의 항산화 효과와 신경세포 보호효과를 입증하여, 이것이 사람의 신경건강을 위한 천연생물소재로 잠재적인 가능성을 가지고 있을 것으로 시사한다.

한우 난포에서 발현하는 MAP1B와 GAPDH의 상호 결합 (Microtubule-associated Protein 1B Interacts with Glyceraldehydes 3-Phosphate Dehydrogenase in Bovine Follicles)

  • 최창용;한재희;강다원
    • 한국수정란이식학회지
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    • 제28권1호
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    • pp.57-61
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    • 2013
  • Microtubule-associated protein 1B (MAP1B), a member of MAP1 family, plays a key role in neuronal development. MAP1B binds to many kinds of proteins directly or indirectly. This study was performed to investigate whether MAP1B interacts with GAPDH in bovine follicles using immunoprecipitation (IP) with Western blot analysis and immunohistochemisty. The mRNA expressions of MAP1B and glyceraldehydes 3-phosphate dehydrogenase (GAPDH) were down-regulated in bovine follicular cystic follicles (FCF). In parallel with the mRNA levels, their protein levels were also down-regulated in FCFs. In addition, MAP1B and GAPDH were co-localized at the cytoplasm of follicles. IP with Western blot analysis showed that MAP1B bound to GAPDH in normal follicles, but their binding was absent in FCFs, suggesting a low level of MAP1B and/or GAPDH expressions in FCFs. Taken together, these results suggest that MAP1B interacted with GAPDH may play a role in bovine follicle development, and that GAPDH does not function always as a loading control in bovine follicles.

Effects of NEES on PARP Expression in the Corpus Striatum in Rats Induced with Transient Global Ischemia

  • Lee, Jung Sook;Song, Young Wha;Kim, Sung Won
    • 국제물리치료학회지
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    • 제3권2호
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    • pp.429-434
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    • 2012
  • Ischemia, the leading cause of strokes, is known to be deeply related to synaptic plasticity and apoptosis in tissue damage due to ischemic conditions or trauma. The purpose of this study was to research the effects of NEES(needle electrode electrical stimulation) in brain cells of ischemia-induced rat, more specifically the effects of Poly[ADP-ribose] polymerase(PARP) on the corpus striatum. Ischemia was induced in SD mice by occluding the common carotid artery for 5 minutes, after which blood was re-perfused. NEES was applied to acupuncture points, at 12, 24, and 48 hours post-ischemia on the joksamri, and at 24 hours post-ischemia on the hapgok. Protein expression was investigated through PARP antibody immuno-reactive cells in the cerebral nerve cells and western blotting. The number of PARP reactive cells in the corpus striatum 24 hours post-ischemia was significantly(p<.05) smaller in the NEES group compared to the global ischemia(GI) group. PARP expression 24 hours post-ischemia was very significantly smaller in the NEES group compared to the GI group. Results show that ischemia increases PARP expression and stimulates necrosis, making it a leading cause of death of nerve cells. NEES can decrease protein expression related to cell death, protecting neurons and preventing neuronal apoptosis.

모근 DNA를 이용한 한국인의 ApoE 유전자형 검사 (ApoE Allele Test in Korean with Hair Root DNA)

  • 김종호;정미라;박상호
    • 대한임상검사과학회지
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    • 제38권3호
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    • pp.179-183
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    • 2006
  • Alzheimer's disease (AD) is characterised neuropathologically by the accumulation of neuritic plaques and neurofibrillary tangles as well as by cerebrovascular amyloid deposition and neuronal cell loss. Current advances have shown the apolipoproteinE-epsilon 4 (ApoE4) allele to be highly associated with late-onset familial and sporadic Alzheimer's disease (AD) in Western populations. The association of ApoE allele frequencies and dementia remains unknown in populations from many countries. We recently initiated a project to examine ApoE frequencies in non-demented healthy Koreans. Genomic DNA in hair root from a thousand persons was collected and ApoE gene type was investigated with the methods of polymerase chain reaction (PCR) and restriction fragment length polymorphism. A group of a thousand non-demented Koreans over the age of 40 years were found to be positive in 15.7% of the cases for ApoE4. AD and ApoE4 were closely related. ApoE epsilon 4 was a dangerous factor of AD and ApoE 4 allele made a contribution to the heterogenicity of AD.

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Emerging signals modulating potential of ginseng and its active compounds focusing on neurodegenerative diseases

  • Jakaria, Md.;Kim, Joonsoo;Karthivashan, Govindarajan;Park, Shin-Young;Ganesan, Palanivel;Choi, Dong-Kug
    • Journal of Ginseng Research
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    • 제43권2호
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    • pp.163-171
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    • 2019
  • Common features of neurodegenerative diseases (NDDs) include progressive dysfunctions and neuronal injuries leading to deterioration in normal brain functions. At present, ginseng is one of the most frequently used natural products. Its use has a long history as a cure for various diseases because its extracts and active compounds exhibit several pharmacological properties against several disorders. However, the pathophysiology of NDDs is not fully clear, but researchers have found that various ion channels and specific signaling pathways might have contributed to the disease pathogenesis. Apart from the different pharmacological potentials, ginseng and its active compounds modulate various ion channels and specific molecular signaling pathways related to the nervous system. Here, we discuss the signal modulating potential of ginseng and its active compounds mainly focusing on those relevant to NDDs.

Manganese and Iron Interaction: a Mechanism of Manganese-Induced Parkinsonism

  • Zheng, Wei
    • 한국환경성돌연변이발암원학회지
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    • 제23권4호
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    • pp.115-130
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    • 2003
  • Idiopathic Parkinson's disease (IPD) represents a common neurodegenerative disorder. While epidemiological studies have suggested a number of risk factors including age, gender, race, and inherited disorder, the cumulative evidence supports the view that environmental or occupational exposure to certain chemicals may contribute to the initiation and progress of Parkinsonism. More recently, clinical and laboratory investigations have led to the theory that dysregulation of iron, an essential metal to body function, may underlie IPD by initiating free radical reaction, diminishing the mitochondrial energy production, and provoking the oxidative cytotoxicity. The participation of iron in neuronal cell death is especially intriguing in that iron acquisition and regulation in brain are highly conservative and thus vulnerable to interference from other metals that bear the similar chemical reactivity. Manganese neurotoxicity, induced possibly by altering iron homeostasis, is such an example. In fact, the current interest in manganese neurotoxicology stems from two primary concerns: its clinical symptoms that resemble Parkinson's disease and its increased use as an antiknock agent to replace lead in gasoline. This article will commence with addressing the current understanding of iron-associated neurodegenerative damage. The major focus will then be devoted to the mechanism whereby manganese alters iron homeostasis in brain.

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Functional roles of protein phosphatase 4 in multiple aspects of cellular physiology: a friend and a foe

  • Park, Jaehong;Lee, Dong-Hyun
    • BMB Reports
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    • 제53권4호
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    • pp.181-190
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    • 2020
  • Protein phosphatase 4 (PP4), one of serine/threonine phosphatases, is involved in many critical cellular pathways, including DNA damage response (DNA repair, cell cycle regulation, and apoptosis), tumorigenesis, cell migration, immune response, stem cell development, glucose metabolism, and diabetes. PP4 has been steadily studied over the past decade about wide spectrum of physiological activities in cells. Given the many vital functions in cells, PP4 has great potential to develop into the finding of key working mechanisms and effective treatments for related diseases such as cancer and diabetes. In this review, we provide an overview of the cellular and molecular mechanisms by which PP4 impacts and also discuss the functional significance of it in cell health.

슈반세포와 뉴런세포을 이용한 수초화의 확인 (Identification of Myelination using Schwann Cells and Neuron Cells)

  • 김지영;사영희;홍성갑
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2014년도 추계학술대회
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    • pp.989-992
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    • 2014
  • 쥐에서 슈반세포와 뉴런세포를 이용한 수초화가 수행되었다. 슈반세포와 뉴런 세포는 쥐의 배아(임신 16일)의 척수신경절로 부터 각각 분리되어 배양되었다. 배아의 척수신경절이 배양되었고 항 유사분열제가 첨가되었다. 분리 정제된 배아의 슈반세포가 배양되었고 이것은 분리 정제된 배아의 척수신경절 세포에 첨가되었다. 실험실상에서 분리 정제된 수초화 군을 완성할 수 있었다. 뉴로필라멘트 단백질의 항체를 이용하여 수초화의 형성되었음을 확인하였다.

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Ginsenoside Rg1 modulates medial prefrontal cortical firing and suppresses the hippocampo-medial prefrontal cortical long-term potentiation

  • Ghaeminia, Mehdy;Rajkumar, Ramamoorthy;Koh, Hwee-Ling;Dawe, Gavin S.;Tan, Chay Hoon
    • Journal of Ginseng Research
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    • 제42권3호
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    • pp.298-303
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    • 2018
  • Background: Panax ginseng is one of the most commonly used medicinal herbs worldwide for a variety of therapeutic properties including neurocognitive effects. Ginsenoside Rg1 is one of the most abundant active chemical constituents of this herb with known neuroprotective, anxiolytic, and cognition improving effects. Methods: We investigated the effects of Rg1 on the medial prefrontal cortex (mPFC), a key brain region involved in cognition, information processing, working memory, and decision making. In this study, the effects of systemic administration of Rg1 (1 mg/kg, 3 mg/kg, or 10 mg/kg) on (1) spontaneous firing of the medial prefrontal cortical neurons and (2) long-term potentiation (LTP) in the hippocampal-medial prefrontal cortical (HP-mPFC) pathway were investigated in male Sprague-Dawley rats. Results: The spontaneous neuronal activity of approximately 50% the recorded pyramidal cells in the mPFC was suppressed by Rg1. In addition, Rg1 attenuated LTP in the HP-mPFC pathway. These effects were not dose-dependent. Conclusion: This report suggests that acute treatment of Rg1 impairs LTP in the HP-mPFC pathway, perhaps by suppressing the firing of a subset of mPFC neurons that may contribute to the neurocognitive effects of Rg1.

Ginseng Gintonin Activates the Human Cardiac Delayed Rectifier K+ Channel: Involvement of Ca2+/Calmodulin Binding Sites

  • Choi, Sun-Hye;Lee, Byung-Hwan;Kim, Hyeon-Joong;Jung, Seok-Won;Kim, Hyun-Sook;Shin, Ho-Chul;Lee, Jun-Hee;Kim, Hyoung-Chun;Rhim, Hyewhon;Hwang, Sung-Hee;Ha, Tal Soo;Kim, Hyun-Ji;Cho, Hana;Nah, Seung-Yeol
    • Molecules and Cells
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    • 제37권9호
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    • pp.656-663
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    • 2014
  • Gintonin, a novel, ginseng-derived G protein-coupled lysophosphatidic acid (LPA) receptor ligand, elicits $[Ca^{2+}]_i$ transients in neuronal and non-neuronal cells via pertussis toxin-sensitive and pertussis toxin-insensitive G proteins. The slowly activating delayed rectifier $K^+$ ($I_{Ks}$) channel is a cardiac $K^+$ channel composed of KCNQ1 and KCNE1 subunits. The C terminus of the KCNQ1 channel protein has two calmodulin-binding sites that are involved in regulating $I_{Ks}$ channels. In this study, we investigated the molecular mechanisms of gintonin-mediated activation of human $I_{Ks}$ channel activity by expressing human $I_{Ks}$ channels in Xenopus oocytes. We found that gintonin enhances $I_{Ks}$ channel currents in concentration- and voltage-dependent manners. The $EC_{50}$ for the $I_{Ks}$ channel was $0.05{\pm}0.01{\mu}g/ml$. Gintonin-mediated activation 1 of the $I_{Ks}$ channels was blocked by an LPA1/3 receptor antagonist, an active phospholipase C inhibitor, an $IP_3$ receptor antagonist, and the calcium chelator BAPTA. Gintonin-mediated activation of both the $I_{Ks}$ channel was also blocked by the calmodulin (CaM) blocker calmidazolium. Mutations in the KCNQ1 $[Ca^{2+}]_i$/CaM-binding IQ motif sites (S373P, W392R, or R539W)blocked the action of gintonin on $I_{Ks}$ channel. However, gintonin had no effect on hERG $K^+$ channel activity. These results show that gintonin-mediated enhancement of $I_{Ks}$ channel currents is achieved through binding of the $[Ca^{2+}]_i$/CaM complex to the C terminus of KCNQ1 subunit.