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大鼠急性氧中毒后全脑细胞能量代谢的活体^(31)P磁共振谱研究 被引量:2
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作者 孙学军 李丽云 +4 位作者 陶恒沂 卢广 练庆林 岳勇 叶朝辉 《第二军医大学学报》 CSCD 北大核心 2000年第4期326-329,共4页
目的:探讨大鼠急性氧中毒后脑的能量代谢产物与脑细胞内 pH变化的规律。方法:采用磁共振方法,用 4. 7 T动物磁共振谱仪,检测氧中毒后不同时程各种磷酸化合物与无机磷酸根(Pi)、磷酸肌酸(PCr)与 γ-ATP以及β-... 目的:探讨大鼠急性氧中毒后脑的能量代谢产物与脑细胞内 pH变化的规律。方法:采用磁共振方法,用 4. 7 T动物磁共振谱仪,检测氧中毒后不同时程各种磷酸化合物与无机磷酸根(Pi)、磷酸肌酸(PCr)与 γ-ATP以及β-ATP与Pi之间的比值,并根据Pi的化学位移推算脑细胞内pH值。结果:氧中毒组动物出舱1和3 h后PCr/Pi,PCr/γ-ATP以及β-ATP/Pi值均显著降低;5 h后恢复正常;24和 48 h后这些比值又降低,而且比早期降低更明显;72 h后恢复到正常水平。细胞内pH值在动物出舱后 1和 3 h出现显著降低;5 h后恢复正常;24 h后,细胞内 pH明显升高;48 h后恢复正常。结论:氧中毒后大脑出现能量代谢障碍及细胞内酸碱代谢紊乱。 展开更多
关键词 急性氧中毒 全脑细胞 能量代谢 磁共振 磷31
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All-trans Retinoic Acid Induced the Differentiation of Human Glioma Cells
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作者 Qing-xi LIU Nan WANG +6 位作者 Xing-hua LIAO Guang-da REN Tao QIN Ru-fa YU Cai-lian CHENG Guang-cun LIU Tong-cun ZHANG 《Clinical oncology and cancer researeh》 CAS CSCD 2011年第1期42-46,共5页
OBJECTIVE To observe the effect of all-trans retinoic acid (ATRA) on inducing human glioma MO59K cells differentiation and further explore the underlying molecular mechanisms.METHODS The expression of glial fibrilla... OBJECTIVE To observe the effect of all-trans retinoic acid (ATRA) on inducing human glioma MO59K cells differentiation and further explore the underlying molecular mechanisms.METHODS The expression of glial fibrillary acidic protein (GFAP) was detected by immunocytochemistry staining. The mRNA levels of GFAP, retinoid X receptor α(RXRα), p21 were examined by semi-quantitative RT-PCR analysis. Luciferase activity assay was performed in the COS-7, MO59K cells to measure p21 promoter transcription activity.RESULTS ATRA could significantly enhance the expression and mRNA level of GFAP by immunostaining and RT-PCR (P〈0.05). Simultaneously, the mRNA levels of RXRα and p21 were remarkably increased in dose-dependent manner by RT-PCR (P〈0.05). Furthermore, luciferase assay confirmed that ATRA and RXRα could transactivate p21 promoter in COS-7 and glioma cells (P〈0.05).CONCLUSION ATRA can induce differentiation of human glioma cells. The RXRα and p21 were activated during ATRAinduced differentiation process. This effect may be caused by directly RXRα-induced p21 gene transactivation. Our findings provide novel evidence for the future studies to explore the molecular mechanism of transcriptional regulation for glioma cell differentiation and cellular therapeutic approaches for glioblastoma. 展开更多
关键词 glioma cells all-trans retinoic acid Retinoid X receptor α P21
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