• 제목/요약/키워드: Glial cell

검색결과 240건 처리시간 0.023초

Glucose Oxidase/glucose Induces Apoptosis in C6 Glial Cells via Mitochondria-dependent Pathway

  • PARK Min Kyu;KIM Woo Sang;LEE Young Soo;KANG Young Jin;CHONG Won Seog;KIM Hye Jung;SEO Han Geuk;LEE Jae Heun;CHANG Ki Churl
    • Biomolecules & Therapeutics
    • /
    • 제13권4호
    • /
    • pp.207-213
    • /
    • 2005
  • It has been proposed that reactive oxygen species (ROS), mainly superoxide anion ($O_2^-$) and hydrogen peroxide ($H_2O_2$), may mediate oxidative stress. Production of $H_2O_2$ during oxidative phosphorylation, inflammation, and ischemia can cause oxidative stress leading to cell death. Although glucose oxidase (GOX) in the presence of glucose continuously generates $H_2O_2$, it is not clear whether GOX produces apoptotic cell death in C6 glial cells. Thus, we investigated the mechanism by which GOX induces cell death. Cells were incubated with different concentration of GOX in the presence of glucose where cell viability, TUNEL and DNA ladder were analyzed. Results indicated that GOX exhibited cytotoxicity in a dose dependent manner by MTT assay. TUNEL positive cell and DNA laddering showed that GOX-induced cytotoxicity was due to apoptosis. Western blot analysis also showed that the cleaved caspase-3 level was detected in the GOX-treated cells at 10 mU/ml and increased dramatically at 30 mU/ml. Cleaved PARP also appeared at 10 mU/ml and lasted at 20 or 30 mU/ml of GOX. Cytochrome c level was increased by GOX dose dependently, which was contrast to Bcl-2 expression level. These results suggest that GOX induces apoptosis through caspase-3 activation, which followed by cytochrome c release from mitochondria through regulating of Bcl-2 level.

Effects of Fetal Mesencephalic Cell Grafts on the Intrastriatal 6-hydroxydoapmine Lesioned Rats

  • Joo, Wan Seok;Nam, Eun-Joo;Im, Heh-ln;Jung, Jin-Ah;Lee, Eun-Sun;Hwang, Yu-Jin;Kim, Yong-Sik
    • The Korean Journal of Physiology and Pharmacology
    • /
    • 제8권5호
    • /
    • pp.245-251
    • /
    • 2004
  • The effects of fetal mesencephalic cell grafts on the restoration of nigrostriatal dopaminergic function were studied in the intrastriatal 6-hydroxydopamine-lesioned rats. Four weeks after lesioning, transplantation of ventral mesencephalic cells from embryonic day 14 fetuses showed the number of tyrosine hydroxylase (TH) positive cells and fiber outgrowth in the grafted striatum, and significantly ameliorated symptomatic motor behavior of the animals, as determined by apomorphine-induced rotation. Furthermore, in substantia nigra pars compacta (SNc), the numbers of TH + cells and fibers were markedly restored. Dopamine content of ipsilateral SNc was close to that of contralateral SNc $(91.9{\pm}9.8%)$ in the transplanted animals, while the ratio was approximately 32% in sham-grafted animals. These results indicate that grafted cells restored the activity for the dopaminergic neurons located in SNc, although they were transplanted into striatum. In addition, we showed that the implanted fetal cells expressed high level of glial cell line-derived neurotrophic factor (GDNF), suggesting that the transplanted fetal cells might serve as a dopamine producer and a reservoir of neurotrophic factors. These results may be helpful in consideration of the therapeutic transplantation at early stage of PD.

속명탕(續命湯)이 C6 glial cell 보호 및 허혈성 뇌손상에 미치는 영향 (Effects of Sokmyeung-tang(SMT) on the Protection of C6 Glial Cells and Ischemic Brain Damage)

  • 안가영;최은희;김인수;강성순;이영수;홍석;전상윤
    • 대한한방내과학회지
    • /
    • 제32권1호
    • /
    • pp.43-55
    • /
    • 2011
  • Objectives : Sokmyeung-tang(SMT) has been used for treatment of CVA in traditional oriental medicine, so this study was designed to evaluate the effect of SMT's protection on brain cell damage against the oxidative stress that was affected by CVA, We also investigated the effect of motor function improvement and neurotrophic factor in ischemic cerebral damaged rats. Methods : We measured cell viability after administrating SMT, chemicals(Paraquat, SNP, rotenone, and $H_2O_2$) which cause oxidative stress, and both SMT and chemicals. We carried out neurobehavioral evaluation(Rotarod test, Beam-walking test, postural reflex test) and observed BDNF (brain-derived neurotrophic factor) expression by injecting SMT into ischemic cerebral damaged rat. Results : Through this study, we observed the following three results. First, brain cell death caused by paraquat, rotenone, and $H_2O_2$ significantly decreased with the treatment of SMT. Second, neuronal movement function in ischemic cerebral damaged rats was significantly improved by the treatment of SMT. Third, BDNF in ischemic cerebral damaged rats increased with the treatment of SMT. Conclusions : SMT protects brain cells from damage induced by oxidative stress (Paraquat, rotenone, $H_2O_2$). SMT also improves neuronal movement function and increases BDNF in ischemic cerebral damaged rats.

여주 활성 물질 Protocatechuic Acid의 신경세포의 산화적 스트레스에 대한 개선 효과 (The Protective Effects of Protocatechuic Acid from Momordica charantia against Oxidative Stress in Neuronal Cells)

  • 최정란;최지명;이상현;조계만;조은주;김현영
    • 생약학회지
    • /
    • 제45권1호
    • /
    • pp.11-16
    • /
    • 2014
  • Protocatechuic acid is an active phenolic acid compound from Momordica charantia. In this study, we investigated the protective effect of protocatechuic acid against oxidative stress under cellular system using C6 glial cell. The oxidative stress was induced by hydrogen peroxide ($H_2O_2$) and amyloid beta 25-35 ($A{\beta}_{25-35}$), and they caused the decrease of cell viability and overproduction of reactive oxygen species (ROS). However, the treatment of protocatechuic acid significantly elevated the decreased cell viability and inhibited the overproduction of ROS by $H_2O_2$. In addition, protocatechuic acid significantly recovered the cellular damage induced by $A{\beta}_{25-35}$. In particular, protocatechuic acid at the concentration $10{\mu}g/mL$ decreased the elevated ROS level to normal level. These results indicate that protocatechuic acid may have neuroprotective effect through attenuating oxidative stress.

한국재래산양태아 및 신생아 뇌에서 별아교세포의 전자현미경적 연구 (Ultramicroscopical Study on the Astrocytes in Fetal and Neonatal Brains of Korean Native Goat)

  • 송치원;김무강;류시윤;이강이;박일권;이미영;권효정;박미선;이경열;이두환;신현국;최윤석;장규태
    • Applied Microscopy
    • /
    • 제31권2호
    • /
    • pp.167-173
    • /
    • 2001
  • 한국재래산양의 임신60, 90, 105, 120일령 태아 및 신생아의 뇌를 대상으로 면역조직화학적방법을 통하여 면역반응을 나타낸 방사아교세포를 투과전자현미경적 방법을 이용하여 그 미세구조를 연구한 결과 임신 60일령 태아의 방사아교면역반응세포는 소수의 사립체와 많은 당원질 및 과립형질내세망이 관찰되었으며 임신90일령 태아 이후에서도 소수의 사립체, 많은 당원질 그리고 소수의 형질내세망이 관찰되었으며 임신95일령 태아에서 골지체가 관찰되었다. 그리고 임신 120일령에서 혈관에 부착되어 종말발을 뻗고 있는 GFAP 면역반응세포를 관찰할 수 있었다.

  • PDF

Apoptotic Cell Death Following Traumatic Injury to the Central Nervous System

  • Springer, Joe E.
    • BMB Reports
    • /
    • 제35권1호
    • /
    • pp.94-105
    • /
    • 2002
  • Apoptotic cell death is a fundamental and highly regulated biological process in which a cell is instructed to actively participate in its own demise. This process of cellular suicide is activated by developmental and environmental cues and normally plays an essential role in eliminating superfluous, damaged, and senescent cells of many tissue types. In recent years, a number of experimental studies have provided evidence of widespread neuronal and glial apoptosis following injury to the central nervous system (CNS). These studies indicate that injury-induced apoptosis can be detected from hours to days following injury and may contribute to neurological dysfunction. Given these findings, understanding the biochemical signaling events controlling apoptosis is a first step towards developing therapeutic agents that target this cell death process. This review will focus on molecular cell death pathways that are responsible for generating the apoptotic phenotype. It will also summarize what is currently known about the apoptotic signals that are activated in the injured CNS, and what potential strategies might be pursued to reduce this cell death process as a means to promote functional recovery.

흰쥐의 척수손상 후 천궁처리에 의한 피질척수로 축삭재생 반응시 Glial cells의 역할 (The Role of Glial Cells in Regenerative Responses of the Injured Corticospinal Tract Axons in Rats Treated with Cindii Rhizoma)

  • 한영수;오민석
    • 한방재활의학과학회지
    • /
    • 제18권3호
    • /
    • pp.19-39
    • /
    • 2008
  • 목 적 : 천궁은 중추신경계 신경조직의 손상을 감소시키는 데에 유효한 것으로 보고되었다. 따라서 손상 척수신경에서 천궁에 의한 각각의 신경조직의 반응성을 조사하기 위하여 흰쥐의 손상된 척수 신경에 천궁 추출물을 처리하여 관찰하였다. 방 법 : 흰쥐의 척수조직에 타박손상을 가한 후 천궁을 처리하고 손상부위의 GAP-43과 Cdc2 및 Erk1/2 단백질의 수준, 축삭 및 성상세포의 수, 아교상혼의 정도를 각각 확인하여 손상부위 및 피질척수로의 재성장 여부를 관찰하였다. 결 과 : 천궁처리에 의하여 손상부위에서는 GAP-43과 Cdc2 및 Erk1/2 단백질의 수준이 증가하였다. 손상척수 부위에서 성상세포의 수는 천궁처리에 의하여 비손상대조군에 비해 증가하였다. CSPG 단백질에 의하여 확인된 아교상흔의 정도는 천궁처리에 의하여 감소하였다. Dil에 의한 정방향 염색에 의하여 피질척수로를 확인하였으며, 측방축삭의 싹돌기는 천궁처리에 의하여 손상부위 상단부 및 하단부에 각각 증가하였다. 고분자미세관을 손상척수부위에 이식하여 미세관내부로 축삭 및 비신경세포의 이주양상을 분석한 결과 천궁처리에 의하여 축삭 및 성상교세포의 이주증가를 확인하였다. 결론 : 천궁이 손상척수신경부위에서 비신경세포 특히 성상세포의 활성화에 기여함을 알 수 있었다. 이러한 활성화는 손상 피질척수로 축삭의 재성장 반응을 증가시키는 효과가 있는 것으로 판단된다.

인삼(人蔘)이 중추신경계 손상 동물 모델의 재생에 미치는 영향 (The Effect of Ginseng Radix on Regeneration After Central Nervous System Injury)

  • 문형철;김윤욱;송봉근
    • Journal of Acupuncture Research
    • /
    • 제24권6호
    • /
    • pp.137-148
    • /
    • 2007
  • Objectives : Following central nervous system (CNS) injury, inhibitory influences at the site of axonal damage occur. Glial cells become reactive and form a glial scar, know as gliosis. As well,myelin debris such as MAG inhibits axonal regeneration. Astrocyte-rich gliosis relates to up-regulation of GFAP and CD81, and eventually becomes a physical and mechanical barrier to axonal regeneration. It is postulated that when the astrocytic reaction is absent, regeneration of axons can occur. It was reported that treatment with anti CD81 antibodies enhanced functional recovery in rats with spinal cord injury. Methods : MAG is one of several endogenous axon regeneration inhibitors that limit recovery from central nervous system injury and disease. It was reported that molecules which block such inhibitors enhanced axon regeneration and functional recovery. Results : In this current study, the author investigated the effect of the water extract of Ginseng Radix on the regulation of CD81, GFAP and MAG which increases when gliosis occurs. MTT analysis was performed to examine cell viability, and cell based ELISA, Western Blot and PCR were used to detect the expression of CD81, GFAP and MAG. Immunohistochemistry was also performed to confirm in vivo. Conclusions : We observed that Ginseng Radix significantly down-regulates the expression of CD81, GFAP and MAG by means of cell based ELISA, Western Blot and PCR. In immunohistochemistry, expression of CD81, GFAP and MAG also decreased. Taken together, these results suggest that Ginseng Radix can be a candidate for regenerating CNS injury.

  • PDF

중추신경계 손상 회복에 미치는 대한 조구등의 영향 (The Effect of the Uncariae Ramulus et Uncus on the Regeneration Following CNS Injury)

  • 이진구;박형진;김동웅;송봉근
    • 대한약침학회지
    • /
    • 제12권1호
    • /
    • pp.67-76
    • /
    • 2009
  • Objective : Following central nervous system(CNS) injury, inhibitory influences at the site of axonal damage occur. Glial cells become reactive and form a glial scar, gliosis. Also myelin debris such as MAG inhibits axonal regeneration. Astrocyte-rich gliosis relates with up-regulation of GFAP and CD81, and eventually becomes physical and mechanical barrier to axonal regeneration. MAG is one of several endogenous axon regeneration inhibitors that limit recovery from CNS injury and disease. It was reported that molecules that block such inhibitors enhanced axon regeneration and functional recovery. Recently it was reported that treatment with anti-CD81 antibodies enhanced functional recovery in the rat with spinal cord injury. So in this current study, the author investigated the effect of the water extract of Uncariae Ramulus et Uncus on the regulation of CD81, GFAP and MAG that increase when gliosis occurs. Methods : MTT assay was performed to examine cell viability, and cell-based ELISA, western blot and PCR were used to detect the expression of CD81, GFAP and MAG. Then also immunohistochemistry was performed to confirm in vivo. Results : Water extract of Uncariae Ramulus et Uncus showed relatively high cell viability at the concentration of 0.05%, 0.1% and 0.5%. The expression of CD81, GFAP and MAG in astrocytes was decreased after the administration of Uncariae Ramulus et Uncus water extract. These results was confirmed in the brain sections following cortical stab injury by immunohistochemistry. Conclusion : The authors observed that Uncariae Ramulus et Uncus significantly down-regulates the expression of CD81, GFAP and MAG. These results suggest that Uncariae Ramulus et Uncus can be a candidate to regenerate CNS injury.