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PLLA/bpV(pic)微球的制备以及对神经细胞的作用
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作者 林强 李皓莘 《广东医学》 CAS CSCD 北大核心 2013年第17期2626-2629,共4页
目的制备出一种bpV(pic)的控制释放体系,并验证其对神经细胞的保护以及促进轴突生长的作用。方法用单乳化-溶剂挥发法制备出PLLA/bpV(pic)微球并对其进行表征。将神经干细胞以及背根神经节分别分为3组:普通培养基组、PLLA微球组、PLLA/b... 目的制备出一种bpV(pic)的控制释放体系,并验证其对神经细胞的保护以及促进轴突生长的作用。方法用单乳化-溶剂挥发法制备出PLLA/bpV(pic)微球并对其进行表征。将神经干细胞以及背根神经节分别分为3组:普通培养基组、PLLA微球组、PLLA/bpV(pic)组,分别加入DMEM培养基,含有PLLA微球的DMEM培养基,以及含有PLLA/bpV(pic)微球的DMEM培养基。通过死活细胞鉴定以及轴突长度测量评价PLLA/bpV(pic)组微球对细胞的保护作用以及轴突生长的促进作用。结果 PLLA/bpV(pic)微球的成球率为(88.2±5.6)%,粒径大小为(16.8±3.1)%,载药量为(4.05±0.3)%,包封率为(48.5±1.8)%,释放时间可达30 d。PLLA/bpV(pic)组细胞存活率为(95.2±4.77)%,背根神经节轴突长度为(718±95)μm,均明显高于普通培养基组和PLLA微球组。结论初步试验结果证明采用单乳化-溶剂挥发法成功制备出PLLA/bpV(pic)微球,该微球对神经细胞存活以及背根神经节轴突生长有明显的促进作用。 展开更多
关键词 plla bpv(pic)微球 控制释放 神经干细胞 背根神经节
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Preparation of PLLA/bpV(pic) Microspheres and Their Effect on Nerve Cells
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作者 林强 陈海云 +1 位作者 李皓莘 蔡杨庭 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2014年第1期76-80,共5页
In this study, we prepared PLLA/bpV(pic) microspheres, a bpV(pic) controlled release system and examined their ability to protect nerve cells and promote axonal growth. PLLA microspheres were prepared by employing... In this study, we prepared PLLA/bpV(pic) microspheres, a bpV(pic) controlled release system and examined their ability to protect nerve cells and promote axonal growth. PLLA microspheres were prepared by employing the o/w single emulsification-evaporation technique. Neural stem cells and dorsal root ganglia were divided into 3 groups in terms of the treatment they received: a routine medium group(cultured in DMEM), a PLLA microsphere group(DMEM containing PLLA microspheres alone) and a PLLA/bpV(pic) group [DMEM containing PLLA/bpV(pic) microspheres]. The effects of PLLA/bpV(pic) microspheres were evaluated by the live-dead test and measurement of axonal length. Our results showed that PLLA/bpV(pic) granulation rate was(88.2±5.6)%; particle size was(16.8±3.1)%, drug loading was(4.05±0.3)%; encapsulation efficiency was(48.5±1.8)%. The release time lasted for 30 days. In PLLA/bpV(pic) microsphere group, the cell survival rate was(95.2 ±4.77)%, and the length of dorsal root ganglion(DRG) was 718±95 μm, which were all significantly greater than those in ordinary routine medium group and PLLA microsphere group. This preliminary test results showed the PLLA/bpV(pic) microspheres were successfully prepared and they could promote the survival and growth of neural cells in DRG. 展开更多
关键词 MICROSPHERES plla/bpv(pic) controlled release neural stem cells dorsal root gan-glion
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bpV(pic)对血管性痴呆模型大鼠行为学及海马p-PKB(Ser473)表达的影响 被引量:1
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作者 袁美春 李海霞 张志锋 《安徽医科大学学报》 CAS 北大核心 2019年第11期1707-1711,共5页
目的:探讨钒氧化合物[双过氧二钾(吡啶-2-羧基)氧代钒酸盐,bpV(pic)]对血管性痴呆(VD)模型大鼠认知功能和海马神经元凋亡的作用及机制。方法:将36只SD成年雄鼠分为4组:sham组、sham+bpV(pic)组、VD组及VD+bpV(pic)组。VD+bpV(pic)组大... 目的:探讨钒氧化合物[双过氧二钾(吡啶-2-羧基)氧代钒酸盐,bpV(pic)]对血管性痴呆(VD)模型大鼠认知功能和海马神经元凋亡的作用及机制。方法:将36只SD成年雄鼠分为4组:sham组、sham+bpV(pic)组、VD组及VD+bpV(pic)组。VD+bpV(pic)组大鼠造模后,bpV(pic)(1 mg/kg,10 ml)连续灌胃21 d,用Morris水迷宫(MWM)检测动物认知功能变化,用HE染色检测动物海马组织神经元病理形态学变化,用Wesern blot检测神经元天冬氨酸特异性半胱氨酸蛋白酶3剪切体(cleaved-caspase-3)和第473位丝氨酸磷酸化蛋白激酶B[p-PKB(Ser 473)]水平变化。结果:与VD模型组比较,VD+bpV(pic)组动物空间学习记忆功能缺陷改善(P<0.05);海马神经元的形态学损伤减轻;神经元cleaved-caspase-3表达降低(P<0.05);神经元p-PKB(Ser 473)水平升高(P<0.05)。结论:bpV(pic)可通过激活蛋白激酶B(PKB)活性来降低VD模型大鼠的空间学习记忆功能缺损和减少海马神经元凋亡。 展开更多
关键词 双过氧二钾(吡啶-2-羧基)氧代钒酸盐 血管性痴呆 海马神经元 凋亡 蛋白激酶B
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