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首页> 外文期刊>Journal of neurosurgery. >Encapsulated vascular endothelial growth factor-secreting cell grafts have neuroprotective and angiogenic effects on focal cerebral ischemia.
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Encapsulated vascular endothelial growth factor-secreting cell grafts have neuroprotective and angiogenic effects on focal cerebral ischemia.

机译:封装的分泌血管内皮生长因子的细胞移植物对局灶性脑缺血具有神经保护和血管生成作用。

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摘要

OBJECT: The authors evaluated the neuroprotective and angiogenic effects of a continuous and low-dose infusion of vascular endothelial growth factor (VEGF)-165 on cerebral ischemia in rats. METHODS: The authors introduced VEGF complementary (c)DNA into baby hamster kidney (BHK) cells and established a cell line that produces human VEGF165 (BHK-VEGF). The BHK-VEGF cells and BHK cells that had been transfected with an expression vector that did not contain human VEGF165 cDNA (BHK-control) were encapsulated. Both capsules were implanted into rat striata. Six days after capsule implantation, the right middle cerebral artery (MCA) was occluded. Some animals were killed 24 hours after occlusion to measure the volume of the resulting infarct and to perform immunohistochemical studies. Other animals were used for subsequent behavioral studies 1, 7, and 14 days after MCA occlusion. The encapsulated BHK-VEGF cell grafts significantly reduced the volume of the infarct and the number of apoptotic cells in the penumbral area when compared with the effect of the BHK-control cell capsule. In addition, angiogenesis and gliogenesis significantly increased in the region around the capsule in animals that received BHK-VEGF cell capsules without an increase in focal cerebral blood flow; this did not occur in animals that received the BHK-control cell capsule. In behavioral studies rats that received the BHK-VEGF cell capsule displayed significant recovery while participating in the accelerating rotarod test after stroke. CONCLUSIONS: Continuous intracerebral administration of low-dose VEGF165 through encapsulated grafts of VEGF-producing cells produces neuroprotective and angiogenic effects. These effects improve subsequent motor function.
机译:目的:作者评估了连续低剂量输注血管内皮生长因子(VEGF)-165对大鼠脑缺血的神经保护作用和血管生成作用。方法:作者将VEGF互补(c)DNA导入婴儿仓鼠肾(BHK)细胞,并建立了可产生人VEGF165(BHK-VEGF)的细胞系。封装了已被表达载体转染的BHK-VEGF细胞和BHK细胞,所述表达载体不含人VEGF165 cDNA(BHK-control)。将两种胶囊均植入大鼠纹状体中。胶囊植入后六天,右大脑中动脉(MCA)被阻塞。在闭塞24小时后将一些动物处死以测量所产生的梗塞的体积并进行免疫组织化学研究。 MCA闭塞后1、7和14天,将其他动物用于随后的行为研究。与BHK-对照细胞胶囊的效果相比,包封的BHK-VEGF细胞移植物显着减少了半影区的梗塞体积和凋亡细胞数量。另外,在接受BHK-VEGF细胞胶囊的动物中,胶囊周围区域的血管生成和胶质细胞生成显着增加,而局灶性脑血流却没有增加。这在接受BHK对照细胞胶囊的动物中没有发生。在行为研究中,接受BHK-VEGF细胞膜的大鼠在卒中后参与加速的旋转脚踏车测试时显示出明显的恢复。结论:通过囊封的VEGF产生细胞移植物连续脑内给予低剂量的VEGF165可产生神经保护和血管生成作用。这些效果改善了随后的运动功能。

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