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Transient axonal glycoprotein-1 induces apoptosisrelated gene expression without triggering apoptosis in U251 glioma cells
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作者 Haigang Chang Shanshan Song +7 位作者 Zhongcan Chen Yaxiao Wang Lujun Yang Mouxuan Du Yiquan Ke Ruxiang Xu Baozhe Jin Xiaodan Jiang 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第5期519-525,共7页
Previous studies show that transient axonal glycoprotein-1, a ligand of amyloid precursor pro- tein, increases the secretion of amyloid precursor protein intracellular domain and is involved in apoptosis in Alzheimer... Previous studies show that transient axonal glycoprotein-1, a ligand of amyloid precursor pro- tein, increases the secretion of amyloid precursor protein intracellular domain and is involved in apoptosis in Alzheimer's disease. In this study, we examined the effects of transient axonal glyco- protein-1 on U251 glioma cells. 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay showed that transient axonal glycoprotein-1 did not inhibit the proliferation of U251 cells, but promoted cell viability. The terminal deoxynucleotidyl transferase dUTP nick end labeling assay showed that transient axonal glycoprotein-1 did not induce U251 cell apoptosis. Real-time PCR revealed that transient axonal glycoprotein-1 substantially upregulated levels of amyloid precursor protein intracellular C-terminal domain, and p53 and epidermal growth factor recep- tor mRNA expression. Thus, transient axonal glycoprotein-1 increased apoptosis-related gene expression in U251 cells without inducing apoptosis. Instead, transient axonal glycoprotein-1 promoted the proliferation of these glioma cells. 展开更多
关键词 nerve regeneration brain injury glioma cells transient axonal glycoprotein-1 APP in- tracellular domain p53 epidermal growth factor receptor NSFC grant neural regeneration
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Blockade of transient receptor potential cation channel subfamily V member 1 promotes regeneration after sciatic nerve injury 被引量:3
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作者 Fei Ren Hong Zhang +3 位作者 Chao Qi Mei-ling Gao Hong Wang Xia-qing Li 《Neural Regeneration Research》 SCIE CAS CSCD 2015年第8期1324-1331,共8页
The transient receptor potential cation channel subfamily V member 1(TRPV1) provides the sensation of pain(nociception). However, it remains unknown whether TRPV1 is activated after peripheral nerve injury, or whe... The transient receptor potential cation channel subfamily V member 1(TRPV1) provides the sensation of pain(nociception). However, it remains unknown whether TRPV1 is activated after peripheral nerve injury, or whether activation of TRPV1 affects neural regeneration. In the present study, we established rat models of unilateral sciatic nerve crush injury, with or without pretreatment with AMG517(300 mg/kg), a TRPV1 antagonist, injected subcutaneously into the ipsilateral paw 60 minutes before injury. At 1 and 2 weeks after injury, we performed immunofluorescence staining of the sciatic nerve at the center of injury, at 0.3 cm proximal and distal to the injury site, and in the dorsal root ganglia. Our results showed that Wallerian degeneration occurred distal to the injury site, and neurite outgrowth and Schwann cell regeneration occurred proximal to the injury. The number of regenerating myelinated and unmyelinated nerve clusters was greater in the AMG517-pretreated rats than in the vehicle-treated group, most notably 2 weeks after injury. TRPV1 expression in the injured sciatic nerve and ipsilateral dorsal root ganglia was markedly greater than on the contralateral side. Pretreatment with AMG517 blocked this effect. These data indicate that TRPV1 is activated or overexpressed after sciatic nerve crush injury, and that blockade of TRPV1 may accelerate regeneration of the injured sciatic nerve. 展开更多
关键词 nerve regeneration peripheral nerve regeneration transient receptor potential cation channel subfamily V member 1 capsaicin receptor vanilloid receptor TRPV1 antagonist nociceptor nerve crush injury Wallerian degeneration axon NSFC grant neurites neural regeneration
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高表达瞬时电位受体通道1在大鼠弥漫性轴索损伤中的作用机制 被引量:2
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作者 张明 宋锦宁 +5 位作者 李宇 赵永林 李丹东 吴媛 付宙锋 张斌飞 《西安交通大学学报(医学版)》 CAS CSCD 北大核心 2014年第6期740-746,773,共8页
目的研究瞬时电位受体通道1(TRPC1)在弥漫性轴索损伤(DAI)中的作用,探讨TRPC1在DAI后神经元钙超载及髓鞘变性中的机制。方法瞬间旋转损伤法建立大鼠DAI模型,用SKF96365干扰TRPC1通道活性后建立DAI干预组,Fura-2AM检测胞内Ca2+浓度,Weste... 目的研究瞬时电位受体通道1(TRPC1)在弥漫性轴索损伤(DAI)中的作用,探讨TRPC1在DAI后神经元钙超载及髓鞘变性中的机制。方法瞬间旋转损伤法建立大鼠DAI模型,用SKF96365干扰TRPC1通道活性后建立DAI干预组,Fura-2AM检测胞内Ca2+浓度,Western blot和免疫组化检测皮层TRPC1蛋白的动态表达,并与正常组、DMSO对照组相比较,电镜检测神经元及髓鞘改变,TUNEL检测皮层神经元凋亡。单因素方差分析数据。结果 DAI后皮层中TRPC1蛋白表达升高,在1d达到高峰,随后逐渐下降,同时皮层神经元胞内Ca2+浓度在1d达到峰值,髓鞘结构破坏。给予TRPC1通道阻断剂SKF96365后,皮层TRPC1蛋白表达被抑制,皮层神经元钙内流减低,髓鞘结构部分保留,神经功能评分改善。结论 DAI后TRPC1导致的钙超载是造成髓鞘变性及神经元死亡的重要原因,抑制TRPC1产生的钙内流可保护髓鞘结构完整,减轻神经元凋亡。 展开更多
关键词 瞬时电位受体通道1(TRPC1) 弥漫性轴索损伤 髓鞘变性 钙超载 神经元凋亡
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TAG-1对U251细胞活力的影响及相关基因调节机制研究
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作者 常海刚 姜晓丹 +3 位作者 陈中灿 杨璐军 法志强 杜谋选 《中华神经医学杂志》 CAS CSCD 北大核心 2010年第2期109-114,共6页
目的探讨TAG-1对U251细胞的生长活力和粉样前体蛋白胞内段(AICD),p53和表皮生长因子受体(EGFR)~因表达变化的影响。方法以MTT法检测不同浓度TAG.1(0、5、10、20μg/mL)对U251细胞活力影响;免疫荧光细胞化学法观察U251细胞8淀... 目的探讨TAG-1对U251细胞的生长活力和粉样前体蛋白胞内段(AICD),p53和表皮生长因子受体(EGFR)~因表达变化的影响。方法以MTT法检测不同浓度TAG.1(0、5、10、20μg/mL)对U251细胞活力影响;免疫荧光细胞化学法观察U251细胞8淀粉样前体蛋白(APP)的表达;TUNEL法检测TAG-1对U251细胞凋亡形态学变化的影响:Real-time PCR检测TAG-1对U251细胞AICD,p53和EGFR基因表达的调控。结果TAG.1没有抑制U251细胞的生长.相反表现出一定的促生长效应;APP广泛表达于U251细胞膜;在TAG.1浓度为10μg/mL时,U251细胞形态学检测没有发现明显的凋亡细胞,但AICD,p53和EGFR基因表达增加。结论TAG-1在胶质瘤的增殖中发挥重要作用,但未发现其能通过TAG-1/APP/AICD/p53或TAG-1/APP,AJCD/EGFR信号途径促进U251细胞凋亡。 展开更多
关键词 TAG-1 粉样前体蛋白胞内段 神经胶质瘤 细胞凋亡
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