• Title/Summary/Keyword: 신경아교세포

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Protective Effect of Celastrus orbiculatus Thunb Extract on Cultured Neuroglial Cells Damaged by Manganese Dioxide, a Parkinsonism Inducer (파킨슨유발제인 이산화망간으로 손상된 배양 대뇌 신경아교세포에 대한 노박덩굴 추출물의 보호)

  • Seo, Young-Mi
    • Korean Journal of Clinical Laboratory Science
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    • v.52 no.2
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    • pp.150-157
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    • 2020
  • The protective effects of a Celastrus orbiculatus Thunb (CO) extract against manganese dioxide (MnO2)-induced cytotoxicity in cultured C6 glioma cells were examined. This study assessed the antioxidative effects, including the suppressive ability of lipid peroxidation (LP), the inhibitory ability of xanthine oxidase (XO), and the cell viability. MnO2 decreased the cell viability remarkably in a dose-dependent manner. The XTT50 value was determined to be 146.7 μM in these cultures. The cytotoxicity of MnO2 was calculated to be mid-toxic using Borenfreund and Puerner's toxic criteria. Kaempferol (KAE) increased the cell viability damaged by MnO2-induced cytotoxicity significantly. Regarding the protective effects of the CO extract on MnO2-induced cytotoxicity, the CO extract increased cell viability significantly compared to the MnO2-treated group. The CO extract also had inhibitory abilities against lipid peroxidation (LP) and xanthine oxidase (XO). From these findings, oxidative stress is involved in the cytotoxicity of MnO2. The CO extract effectively blocked the cytotoxicity induced by MnO2 via its antioxidative effects. Conclusively, natural resources, such as the CO extract, might be a useful agent for the diminution or improvement of the heavy metal cytotoxicity correlated with disease through oxidative stress, such as MnO2, a Parkinsonism inducer.

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.

Ameliorative Effects of NXP031 on MPTP-Induced Neurotoxicity (MPTP로 유도된 신경 독성에 대한 NXP031의 개선 효과)

  • Lee, Joo Hee;Song, Min Kyung;Kim, Youn-Jung
    • Journal of Korean Biological Nursing Science
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    • v.23 no.3
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    • pp.199-207
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    • 2021
  • Purpose: The purpose of this study was to investigate effects of NXP031, an inhibitor of oxidation by specifically binding to the complex of DNA aptamer/vitamin C, on dopaminergic neurons loss and the reaction of microglia in an animal model of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP)-induced subchronic Parkinson's disease (PD). Methods: A subchronic PD mouse model was induced via an intraperitoneal (IP) injection of MPTP 30 mg/kg per day for five days. NXP031 (vitamin C/aptamer at 200 mg/4 mg/kg) and vitamin C at 200 mg/kg were administered via IP injections at one hour after performing MPTP injection. This process was performed for five days. Motor function was then evaluated with pole and rotarod tests, after which an immunohistochemical analysis was performed. Results: NXP031 administration after MPTP injection significantly improved motor functions (via both pole and rotarod tests) compared to the control (MPTP injection only) (p<.001). NXP031 alleviated the loss of dopaminergic neurons in the substantia nigra (SN) and striatum caused by MPTP injection. It was found to have a neuroprotective effect by reducing microglia activity. Conclusion: NXP031 can improve impaired motor function, showing neuroprotective effects on dopaminergic neurons in the SN and striatum of MPTP-induced subchronic Parkinson's disease mouse model. Results of this study suggest that NXP031 has potential in future treatments for PD and interventions for nerve recovery.

Expression of Tbr2 in the Hippocampus Following Pilocarpine-induced Status Epilepticus (Pilocarpine에 의한 경련중첩증 후 해마에서 Tbr2 발현에 관한 연구)

  • Choi, Yun-Sik
    • Journal of Life Science
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    • v.23 no.12
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    • pp.1532-1540
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    • 2013
  • T-box transcription factor 2 (Tbr2) is a member of the T-box family of transcription factors and it plays an important role in brain development, progenitor cell proliferation, and the modulation of differentiation and function in immune cells, such as CD8+ T cells and natural killer cells. This study aims to elucidate the involvement of Tbr2 in the pathophysiological events following pilocarpine-induced status epilepticus in mice. Status epilepticus resulted in prominent neuronal cell death in discrete brain regions, such as CA3, the hilus, and the piriform cortex. Interestingly, when the immunoreactivity of Tbr2 was examined two days after status epilepticus, it was transiently increased in CA3 and in the piriform cortex. Tbr2-positive cells in CA3 and the piriform cortex were double-labeled with CD11b, a marker of microglia and a subset of white blood cells, such as monocytes, CD8+ T cells, and natural killer cells. Moreover, the double-labeled cells with Tbr2 and CD11b showed amoeboid morphology, and this data indicates that Tbr2-expressing cells may be reactive microglia or infiltrating white blood cells. Furthermore, clustered Tbr2-positive cells were observed in the platelet endothelial cell adhesion molecule-1 (PECAM-1)-positive blood vessels near the CA3 area, which suggests that Tbr2-positive cells may be infiltrating the white blood cells. Based on this data, this study is the first to indicate the involvement of Tbr2 in neuropathophysiology in status epilepticus.

Pretreatment with GPR88 Agonist Attenuates Postischemic Brain Injury in a Stroke Mouse Model (GPR88 효현제의 전처리에 의한 뇌졸중후 뇌손상 감소효과 연구)

  • Lee, Seo-Yeon;Park, Jung Hwa;Kim, Min Jae;Choi, Byung Tae;Shin, Hwa Kyoung
    • Journal of Life Science
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    • v.30 no.11
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    • pp.939-946
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    • 2020
  • Stroke is one of the leading causes of neurological disability worldwide and stroke patients exhibit a range of motor, cognitive, and psychiatric impairments. GPR88 is an orphan G protein-coupled receptor (GPCR) that is highly expressed in striatal medium spiny neurons; its deletion results in poor motor coordination and motor learning. There are currently no studies on the involvement of GPR88 in stroke or in post-stroke brain function recovery. In this study, we found a decrease in GPR88 protein and mRNA expression levels in an ischemic mouse model using Western blot and real-time PCR, respectively. In addition, we observed that, among the three types of cells derived from the brain (brain microvascular endothelial cells, BV2 microglial cells, and HT22 hippocampal neuronal cells), the expression of GPR88 was highest in HT22 neuronal cells, and that GPR88 expression was downregulated in HT22 cells under oxygen-glucose deprivation (OGD) conditions. Moreover, pretreatment with RTI- 13951-33 (10 mg/kg), a brain-penetrant GPR88 agonist, ameliorated brain injury following ischemia, as evidenced by improvements in infarct volume, vestibular-motor function, and neurological score. Collectively, our results suggest that GPR88 could be a potential drug target for the treatment of central nervous system (CNS) diseases, including ischemic stroke.

GFAP IMMUNOREACTIVITY IN TRIGEMINAL GANGLION SATELLITE CELLS AFTER PULP EXPOSURE IN RAT (흰쥐에서 치수노출 후 삼차신경절의 신경절아교세포에서 GFAP-IR의 변화)

  • Kim, Heung-Jung;Moon, Joo-Hoon
    • Restorative Dentistry and Endodontics
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    • v.22 no.2
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    • pp.782-791
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    • 1997
  • Glial fibrillary acidic protein(GFAP) are a group of intermediate filaments that are distributed in the cytoplasm of many type of glial cells. The purpose of this study was to determine change of GFAP immunoreactivity(GFAP-IR) in rat trigeminal ganglion satellite cells in response to pulp exposure. The immunohistochemistry was carried out using the avidinbiotin-peroxidase complex(ABC) method and subsequently stained with AEC(3-aminoethyl-9-carbasol). 1. Contol group; Central root astrocytes had strong GFAP-IR, but ganglion satellite cells occasionlly had GFAP-IR. This reaction patterns of ganglion satellite cells was not concenturated in any specific region of trigeminal ganglion. 2. Three day pulp exposure group; There was a highly GFAP-IR in satellite cells of trigeminal ganglion in maxillary region. GFAP-IR in neighboring mandibular and ophthalmic regions was less intense compared to maxillary region. 3. Seven day pulp exposure group; In this group, GFAP-IR that was increased compared to control group was seen in the maxillary region. But GFAP-IR was less intense compared to three day pulp exposure group. These results suggest that GFAP in satellite cell increase in specific region of trigeminal ganglion after pulp exposure and offer useful tool in trigeminal pain research.

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Characteristics of Fermented Dropwort Extract and Vinegar Using Fermented Dropwort Extract and Its Protective Effects on Oxidative Damage in Rat Glioma C6 Cells (미나리 발효액과 미나리 발효액을 이용한 식초의 특성 분석 및 glioma C6 세포에서 산화적 손상에 대한 보호 효과)

  • Kim, Min-Ju;Lee, Sam-Pin;Choi, Jun-Hyeok;Kwon, Seung-Hyuk;Kim, Hyung-Dae;Bang, Myun-Ho;Yang, Seun-Ah
    • Korean Journal of Food Science and Technology
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    • v.45 no.3
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    • pp.350-355
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    • 2013
  • The quality of fermented dropwort extract (FDE) and fermented dropwort vinegar (FDV) was assessed for free sugar, organic acid and free and total amino acid content. Major organic acids were lactic acid in FDE and acetic acid in FDV. Free sugars in FDE were fructose and glucose, and those in FDV were fructose, sucrose, and maltose. Aspartic acid was the major free amino acid in both FDE and FDV. Additionally, the main free amino acids in FDE were alanine and ${\gamma}$-amino-n-butyric acid (GABA), while those in FDV were arginine and valine. Moreover, to investigate the protective effects of FDE and FDV against oxidative stress induced by t-BHP and $H_2O_2$, C6 cells were treated with FDE or FDV prior to inducing the oxidative damage. FDE and FDV inhibited cell death significantly in a dose-dependent manner. These data imply that FDE and FDV may be effective in neuronal cell protection against oxidative damage.

Effect of Glial-neuronal Cell Co-culture on GFAP Expression of Astrocytes (신경세포가 별아교세포의 아교섬유성 산단백질 표현에 미치는 영향)

  • Bae Hyung-Mi;Park Jung-Sun;Yeon Dong-Soo
    • The Korean Journal of Physiology and Pharmacology
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    • v.1 no.3
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    • pp.285-296
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    • 1997
  • Injury to brain transforms resting astrocytes to their reactive form, the hallmark of which is an increase in glial fibrillary acidic protein (GFAP), the major intermediate filament protein of their cell type. The overall glial response after brain injury is referred to as reactive gliosis. Glial-neuronal interaction is important for neuronal migration, neurite outgrowth and axonal guidance during ontogenic development. Although much attention has been given to glial regulation of neuronal development and regeneration, evidences also suggest a neuronal influence on glial cell differentiation, maturation and function. The aim of the present study was to analyze the effects of glial-hippocampal neuronal co-culture on GFAP expression in the co-cultured astrocytes. The following antibodies were used for double immunostaining chemistry; mouse monoclonal antibodies for confirm neuronal cells, rabbit anti GFAP antibodies for confirm astrocytes. Primary cultured astrocytes showed the typical flat polygonal morphology in culture and expressed strong GFAP and vimentin. Co-cultured hippocampal neurons on astrocytes had phase bright cell body and well branched neurites. About half of co-cultured astrocytes expressed negative or weak GFAP and vimentin. After 2 hour glutamate (0.5 mM) exposure of glial-neuronal co-culture, neuronal cells lost their neurites and most of astrocytes expressed strong CFAE and vimentin. In Western blot analysis, total GFAP and vimentin contents in co-cultured astrocytes were lower than those of primary cultured astrocytes. After glutamate exposure of glial-neuronal co-culture, GFAP and vimentin contents in astrocytes were increased to the level of primary cultured astrocytes. These results suggest that neuronal cell decrease GFAP expression in co-cultured astrocytes and hippocampal neuronal-glial co-culture can be used as a reactive gliosis model in vitro for studying GFAP expression of astrocytes.

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Primary Culture and Characteristics of Blood-Brain Barrier Endothelial Cells from Rat Brain Microvessel (쥐의 뇌 미세혈관 내피세포를 이용한 뇌혈관장벽 내피세포의 배양과 특성)

  • Lee, Hee-Sang;Kim, Seok-Jung;Kim, Dae-Jin;Chung, Yoon-Hee;Kim, Sung-Su;Lee, Won-Bok;Kim, Kyung-Yong
    • Applied Microscopy
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    • v.35 no.4
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    • pp.55-63
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    • 2005
  • The characteristics of primary cultured rat brain microvessel endothelial cells (RBMECs) were studied using microscopy, immunohistochemistry and measuring of transendothelial electrical resistance (TER). The RBMECs formed a monolayer by $5{\sim}6$ days after plating and showed characteristics of whirling appearance. The TER increased until day 5 and decreased then. There was few immunoreaction with anti-GFAP, anti-GalC, anti-neurofilament 160/200 kD antibodies. So the contamination of astrocyte, oligodendrocyte, and neuron. could be ruled out.. Immunoreaction to vWF antigen was widespread througout the cytoplasm as Weibel-Palade granule. Immunoreaction to tight junction proteins, i.e. occludin, ZO-1, and ZO-2 was seen at cell contact. In summary, RBMECs isolated and cultured showed morphological, immunohistochemical and electrical characteristics of blood-brain barrier (BBB). The in vitro BBB model can be used in studying characteristics of in vivo BBB.

Improving Effect to Connitive Ability of Cordyceps militaris Extract in PC12 and BV2 cells (PC12와 BV2 세포에서 동충하초 추출물의 인지능력 개선 효과)

  • Choi, Soon-Hee;Seung, O-Tak;Lee, Myung-Sun
    • Journal of the Korean Applied Science and Technology
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    • v.36 no.2
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    • pp.468-478
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    • 2019
  • The aim of this study is to evaluate the efficacy of cordyceps militaris extracts for the improvement of cognitive dysfunction in PC12 and BV2 cells. Cordyceps militaris extracts was prepared by extracting with distilled water. Cell viability was assessed by MTT assay using PC12 cells and BV2 cells. Confirmed effects of L-glutamate induced cytotoxicity test, Acetylcoline (ACh) concentration, and Acetylcolinestase (AChE) activity in PC12 cells. Anti-inflammatory activities of cordyceps militaris extracts was measured through changes in the levels of nitric oxide (NO), and prostaglandin E2 ($PGE_2$) on lipopolysaccharide(LPS)-induced BV2 cell. In addition, we measured the expression of $NF-{\kappa}B$, p38, JNK, and caspase-3 in western blot analysis. Cordyceps militaris extracts showed no cytotoxicity at the concentrations of 1, 10, and $100{\mu}g/m{\ell}$ except for the concentration of $200{\mu}g/m{\ell}$. Cordyceps militaris extracts protected the cell and exhibited significant increases in the ACh concentration and a significant decrease in the AChE activity in L-glutamate induced PC12 cells. Moreover, cordyceps militaris extracts inhibited the productions NO, and PGE2 level and the protein expression of $NF-{\kappa}B$, p38, JNK, caspase-3 in LPS-induced BV2 cells. These results indicate that cordyceps militaris extracts possible prevented and improved cognitive dysfuction symptoms. Thus, cordyceps militaris extracts may be a novel natural material option for the improvement of cognitive dysfunction.