• Title/Summary/Keyword: 신경독성

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Effects of Fermented Kalopanax pictus on oxidative damage of neurofilament protein (신경세사 단백질의 산화적 손상에 엄나무 발효물이 미치는 영향)

  • Kang, Jung Hoon
    • Journal of the Korean Applied Science and Technology
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    • v.35 no.1
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    • pp.194-204
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    • 2018
  • This study was to investigate the effect of the extract(KP-HE) from Kalopanax pictus(KP) fermented with Hericium erinaceum(HE) mycelium on oxidative modification of neurofilament-L(NF-L) which is closely related to neurodegenerative disorders. The oxidative modification of NF-L was induced by AAPH producing peroxyl radicals in solution, and KP, HE, and KP-HE was investigated. KP and HE did not protect NF-L against peroxyl radical-mediated NF-L modification whereas KP-HE significantly prevented NF-L modification induced by peroxyl radical. KP-HE inhibited the formation of dityrosine in oxidative modification of NF-L and stimulated the peroxyl radical scavenging activity. The effects of KP, HE, and KP-HE on the modification of NF-L by tetrahydropapaveroline(THP), a neurotoxin found in patients with Parkinson's disease was investigated. KP-HE also prevented THP-mediated NF-L modification as compared to KP and HE. In addition, KP-HE significantly inhibited the formation of dityrosine in oxidative modified NF-L and enhanced the inhibition of reactive oxygen species(ROS) was generated by THP. The results suggested that KP-HE can contribute to protected cell from oxidative stress was induced by ROS and neurotoxin. Therefore, KP-HE could potentially be used as a valuable functional food ingredient to prevent neurodegenerative disorders.

Neurotoxic Shellfish Poisoning after Ingesting Whelk (신경독성 조개류 중독 3례)

  • Ko, Young-Gil;Ahn, Ji-Young;Ryu, Seok-Yong;Lee, Sang-Lae;Cho, Suk-Jin;Kim, Mi-Ran
    • Journal of The Korean Society of Clinical Toxicology
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    • v.4 no.2
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    • pp.147-150
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    • 2006
  • Neurotoxic shellfish poisoning (NSP) can result from eating filter-feeding shellfish carrying brevetoxins produced by the marine dinoflagellate Krenia brevis (formally Gymnodinium breve). Brevetoxins enhance sodium entry into cells via voltage-sensitive sodium channels and have an excitatory effect. The incubation period is three hours (range 15 minutes-18 hours). NSP is characterized by gastroenteritis combined with neurologic symptoms. Gastrointestinal (GI) symptoms include abdominal pain, nausea, diarrhea and burning pain in the rectum. Neurologic symptoms are paresthesia, reversal of hot and cold temperature sensation, myalgia, headache, vertigo, and ataxia. Other symptoms may include malaise, tremor, dysphagia, bradycardia, decreased reflexes, dilated pupils, seizure, and coma. The health problem caused by K. breviscan be associated with a red tide bloom. We encountered 3 cases of neurotoxic shellfish poisoning. They all presented with GI and neurologic symptoms andrecovered after conservative treatment.

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Neuroprotective Effects of Methanolic Extracts from Peanut Sprouts (땅콩나물 추출물의 신경세포 보호 효과)

  • Kim, Hyun-Jung;Kang, Jum-Soon;Park, Hae-Ryong;Hwang, Yong-Il
    • Journal of Life Science
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    • v.20 no.2
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    • pp.253-259
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    • 2010
  • The neuroprotective effects of extracts from various parts of peanut sprouts on glutamate-induced neurotoxicity in N18-RE-105 cells were investigated. This study was performed to evaluate the neuroprotective activity of methanolic extracts from the whole (WME), heads (HME), and stems (SME) of peanut sprouts. The neuroprotective effects of these extracts were measured by MTT reduction assay, LDH release assay, phase-contrast microscopy, and flow cytometric analysis on the N18-RE-105 cells. Among these extracts, the HME showed the greatest neuroprotective effects, and was further fractionated with hexane, diethyl ether, ethyl acetate, and water, according to degree of polarity. Out of the fractionated extracts, the diethyl ether layer showed the highest activity on glutamate-induced cytotoxicity in N18-RE-105 cells. The sub-G1 DNA contents of the glutamate-induced severely apoptotic N18-RE-105s were measured by flow cytometric analysis to confirm the HME's anti-apoptotic activity. Interestingly, after incubation with 100 mg/ml of the HME, the proportion of sub-G1 cells of the glutamate-stressed N18-RE-105s had been greatly reduced, from 58.5% to 9.1%. These results imply that HME may have strong potential as a chemotherapeutic agent against neuronal diseases.

Antioxidative Effects of Parnassia palustris L. Extract on Ferrous Sulfate-Induced Cellular Injury of Cultured C6 Glioma Cells (파킨슨씨병 유발물질인 황산철로 손상된 배양 신경아교세포에 대한 물매화 추출물의 항산화 효과)

  • Young-Mi, Seo;Seung-Bum, Yang
    • Korean Journal of Clinical Laboratory Science
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    • v.54 no.4
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    • pp.298-306
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    • 2022
  • This study sought to evaluate the mechanism of cellular injury caused by ferrous sulfate (FeSO4) and the protective effects of Parnassia palustris L. (PP) extract against FeSO4-induced cytotoxicity of cultured C6 glioma cells. FeSO4 is known to cause neurotoxicity and induce Parkinson's disease. The antioxidative effects of PP, such as superoxide dismutase (SOD)-like and superoxide anion-radical (SAR)-scavenging activities, as well as effects on cell viability, were studied. FeSO4 significantly decreased cell viability in a dose-dependent manner and the XTT50 value, the concentration of FeSO4 which reduced the cell viability by half, was measured at 63.3 μM in these cultures. FeSO4 was estimated to be highly cytotoxic by the Borenfreund and Puerner toxicity criteria. Quercetin, an antioxidant, significantly improved cell viability, damaged by FeSO4-induced cytotoxicity. While evaluating the protective effects of the PP extract on FeSO4-induced cytotoxicity, it was observed that the extract significantly increased cell viability compared to the FeSO4-treated group. Also, the PP extract showed superoxide dismutase (SOD)-like and superoxide anion radical (SAR)-scavenging activities. Based on these findings, it can be concluded that FeSO4 induced oxidative stress-related cytotoxicity, and the PP extract effectively protected against this cytotoxicity via its antioxidative effects. In conclusion, natural antioxidant sources such as PP may be agents useful for preventing oxidative stress-related cytotoxicity induced by heavy metal compounds such as the FeSO4, a known Parkinsonism inducer.

(Study on Dopamine and GABAergic Neurotransmitter : Abnormal Release by Poisoning Substances) (도파민과 GABA성 신경전달물질에 대한 연구 : 중독유발물질에 의한 이상분비)

  • 김명옥
    • The Zoological Society Korea : Newsletter
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    • v.18 no.2
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    • pp.12-20
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    • 2001
  • 2000년도 노벨 의학상은 스웨덴의 아비스 칼슨 박사 등 3명 이 수상했다. 그들은 신경전달 물질(neurotransmitter) 중 도파민 (dopamine)과 시냅스(synapse)에 관한 연구로 항 우울제 치료제인 프로작 (prozac)을 개발하여 신경, 정신질환 치료제 개발에 기여한 공로였다. 도파민과 GABA는 신경전달 물질 중의 하나로 도파민은 운동, 정서, 행동, 희노애락 등을 조절하는 것으로 이상 분비될 때 파킨스씨병, 정신분열증, 우울증 등을 유발시킨다. GABA는 억제성 신경전달물질로 이상 분비시 간질 등을 유발시킨다. 도파민과 GABA의 분비는 시냅스 후(postsynapse) 수용체에서 그 기능이 조절된다. 그러나 마약성인 코카인, 헤로인, 몰핀, 암페타민 등 중 독성약물뿐만 아니라 일상 생활에서 흔히 접할 수 있는 흡연, 술 등에 의해서도 그 분비 이상을 초래한다. 따라서 본 논단에서는 최근 뇌신경생물 실험실에서 진행되고 있는 신경전달 물질 중에 도파민 및 GABA 분비에 대 한 연구결과를 바탕으로 소개 하고자 한다.

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The Effects of Artemisia capillaries Herbal Acupuncture on Ethanol-induced Apoptosis in Neuroblastoma Cell Line (인진 약침액이 신경아세포주에서 에탄올에 의해 유발된 아폽토시스에 미치는 영향)

  • Ee-Hwa, Kim;Youn-Hee, Kim;Youn-Jung, Kim;Mi-Hyun, Jang;Joo-Ho, Chung;Chang-Ju, Kim
    • The Journal of Korean Medicine
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    • v.22 no.1
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    • pp.90-95
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    • 2001
  • 목적:인진 약침액이 SK-N-MC 신경아세포주에서 에탄올에 의해 유발된 아폽토시스에 미치는 영향을 조사하였다. 방법 : SK-N-MC cell line에서의 아폽토시스 변화를 관찰하기 위해서 MTT assay, DAPI staining 및 flow cytometric analysis 방법을 이용하였다. 결과: MTT assay를 이용하여 분석한 결과 농도에 따른 세포 독성의 효과가 에탄올 투여로부터 관찰되었다. 또한 인진 약침액으로 전처치하고 에탄올을 처치하였을 때 세포 독성이 크게 감소되었다. DAPI staining에서 인진 약침액 투여군은 에탄올 투여군에 비해서 fragmentation이 억제되었다. Flow cytometry를 통하여 인진 약침액 투여군은 에탄올 투여군에 비하여 세포주기 중 sub $G_1$ 분획의 증가가 억제되었다. 결론 : SK-N-MC 신경아세포주에서 에탄올에 의해서 유발된 아폽토시스는 전형적인 세포사별 형태를 나타내었다. 또한 인진 약침액은 에탄올에 의해서 유발된 아폽토시스에서 세포보호 효과가 있음이 확인되었다.

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Phosphodiesterase III Inhibitor Cilostazol Protects Amyloid β-Induced Neuronal Cell Injury via Peroxisome Proliferator-Activated Receptor-γ Activation (Amyloid β에 의해 유도된 신경세포 손상에 대한 phosphodiesterase III inhibitor인 cilostazol의 신경보호 효과)

  • Park, Sun-Haeng;Kim, Ji-Hyun;Bae, Sun-Sik;Hong, Ki-Whan;Choi, Byung-Tae;Shin, Hwa-Kyoung
    • Journal of Life Science
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    • v.21 no.5
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    • pp.647-655
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    • 2011
  • The neurotoxicity of aggregated amyloid ${\beta}$ ($A{\beta}$) has been implicated as a critical cause in the pathogenesis of Alzheimer's disease (AD). It can cause neurotoxicity in AD by evoking a cascade of apoptosis to neuron. Here, we investigated the neuroprotective effects of cilostazol, which acts as a phosphodiesterase III inhibitor, on $A{\beta}_{25-35}$-induced cytotoxicity in mouse neuronal cells and cognitive decline in the C57BL/6J AD mouse model via peroxisome proliferator-activated receptor (PPAR)-${\gamma}$ activation. $A{\beta}_{25-35}$ significantly reduced cell viability and increased the number of apoptotic-like cells. Cilostazol treatment recovered cells from $A{\beta}$-induced cell death as well as rosiglitazone, a PPAR-${\gamma}$ activator. These effects were suppressed by GW9662, an antagonist of PPAR-${\gamma}$ activity, indicative of a PPAR-${\gamma}$-mediated signaling. In addition, cilostazol and rosiglitazone also restored PPAR-${\gamma}$ activity levels that had been altered as a result of $A{\beta}_{25-35}$ treatment, which were antagonized by GW9662. Furthermore, cilostazol also markedly decreased the number of apoptotic-like cells and decreased the Bax/Bcl-2 ratio. Intracerebroventricular injection of $A{\beta}_{25-35}$ in C57BL/6J mice resulted in impaired cognitive function. Oral administration of cilostazol (20 mg/kg) for 2 weeks before $A{\beta}_{25-35}$ injection and once a day for 4 weeks post-surgery almost completely prevented the $A{\beta}_{25-35}$-induced cognitive deficits, as did rosiglitazone. Taken together, our findings suggest that cilostazol could attenuate $A{\beta}_{25-35}$-induced neuronal cell injury and apoptosis as well as promote the survival of neuronal cells, subsequently improving cognitive decline in AD, partly because of PPAR-${\gamma}$ activation. The phosphodiesterase III inhibitor cilostazol may be the basis of a novel strategy for the therapy of AD.

Oculogyric Crisis Due to Metronidazole Toxic Encephalopathy (메트로니다졸 독성 뇌병증으로 인한 안구운동발작)

  • Lee, Sang-Woo;Kim, Hyeongseok;Heo, Deokhyun;Park, Jeong-Ho
    • Journal of the Korean neurological association
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    • v.36 no.4
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    • pp.322-324
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    • 2018
  • Oculogyric crisis is an acute dystonia involving ocular muscles characterized by sustained conjugate upward or lateral deviation of the eyes. Metronidazole is a commonly used antimicrobial agent in treatment of anaerobic infections. However, its long-term use can cause toxic encephalopathy particularly in patients with hepatic dysfunction. Here, we describe a case of oculogyric crisis as a presenting manifestation of metronidazole-induced encephalopathy.

The Neural Alteration according to Cognitive Load on Working Memory by Organic-Solvent Exposures (유기용제에 노출된 직업군에서 보여진 작업 기억에서의 인지부하에 따른 신경학적 변화)

  • Kim, Tae Geun;Seo, Jeehye;Kim, Yangho;Yun, Byoung-Ju;Chang, Yongmin
    • Progress in Medical Physics
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    • v.26 no.2
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    • pp.72-78
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    • 2015
  • Organic solvents are known toxic effects like vertigo, behavioral obstacle, distracting, and peripheral neuropathy in neuron areas. However, there have been few studies how neurotoxic solvents-exposed workers are affected by the cognitive load of preceding working memory tasks. Therefore, we used fMRI as to measure the neural correlates of working memory impairment in occupational workers who had from chronic exposure to organic solvent. Twenty-nine solvent-exposed workers were included in this study. Each participant concluded the verbal N-back tasks (1- and 2-back) during the fMRI acquisition. Within-group analyses showed fronto-parietal networks were active in each condition. Direct comparisons between 1- and 2-back showed higher activation during the 2-back than 1-back. We found that increased activation of these regions at lower task demand is associated with increased cost of implementing.

Cell Death Study in Embryonic Stem Cell-derived Neurons and Its Applications (배아줄기세포 유래 신경계세포에서의 세포사멸 연구와 그 응용)

  • Lee, Chul-Sang
    • Development and Reproduction
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    • v.12 no.1
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    • pp.1-8
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    • 2008
  • Specific protocols to increase the differentiation of neuronal cells from embryonic stem (ES) cells have been well established, such as retinoic acid induction and lineage selection of neuronal cells. For the neuropathological studies, ES-derived neurons (ES neurons) must show normal physiological characteristics related to cell death and survival and should be maintained in vitro for a sufficient time to show insults-specific cell death without spontaneous death. When mouse ES cells were plated onto astrocytes monolayer after retinoic acid induction, most ES cells differentiated into neuronal cells, which were confirmed by the presence of specific neuronal markers, and the cultures were viable for at least four weeks. When these cultures were examined for vulnerability to glutamate excitotoxicity, ES neurons were vulnerable to excitotoxic insults mediated by agonist-specific receptors. The vulnerability to excitotoxic death increased with developmental age of ES neurons in vitro. Specific receptors for Neurotrophin and GDNF family ligands were present in ES neurons. GDNF and NT-3 could modulate the survival and excitotoxic vulnerability of ES neurons. The vulnerability and resistance to toxic insults, which are essential requirements of model culture systems for neuropathological studies, make ES neurons to a useful model culture system. Especially ES cell are highly amenable to genetic modification unlikely to primary neuronal cells, which will give us a chance to answer more complicated neurophysiological questions. Recently there was an outstanding attempt to explore the cellular toxicity using human ES cells (Schrattenholz & Klemm, 2007) and it suggested that ES cells could be a new model system for neurophysiological studies soon and go further a large-scale screening system for pharmacological compounds in the future.

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