首页> 外文期刊>Cellular and Molecular Neurobiology >De-differentiation response of cultured astrocytes to injury induced by scratch or conditioned culture medium of scratch-insulted astrocytes.
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De-differentiation response of cultured astrocytes to injury induced by scratch or conditioned culture medium of scratch-insulted astrocytes.

机译:培养的星形胶质细胞对划痕或损伤划痕的星形胶质细胞的条件培养基诱导的损伤的去分化反应。

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Our previous reports indicated that astrocytes (ASTs) in injured adult rat spinal cord underwent a process of de-differentiation, and may acquire the potential of neural stem cells (NSCs). However, the AST de-differentiation and transitional rejuvenation process following injury is still largely unclear. The aim of the present study was to determine whether injured in vitro ASTs can re-enter the multipotential-like stem cell pool and regain NSC characteristics, and to further understand the mechanism of AST de-differentiation. We used an in vitro scratch-wound model to evoke astrocytic response to mechanical injury. GFAP and nestin double-labeled indirect immunofluorescence were carried out to characterize these scratched cells at various periods. Western-blot analysis was used to determine the changes of GFAP and nestin expression following injury. Furthermore, the rate of proliferation was determined by immunocytochemical detection of BrdU incorporating cells. These scratch-wound ASTs were cultured with stem cells medium to explore their ability to generate neurospheres and examine the self-renewal and multi-potency of such neurospheres. Moreover, scratched AST culture supernatant as conditioned cultured medium (ACM) was used to investigate if some diffusible factors derived from injured ASTs could induce de-differentiation of AST. The results showed: (1) the nestin positivity first appeared in GFAP-positive cells at the edge of the scratch, subsequently, disseminated into un-insulted zone. The expression of nestin in AST was increased with longer culture, while that of GFAP was decreased. Furthermore, these nestin-immunoreactive ASTs could generate neurospheres, which showed self-renewal and could be differentiated into neurons, ASTs and oligodendrocytes. (2) Scratched ASTs culture supernatant can induce astrocytic proliferation and de-differentiation. These results reveal that the in vitro injured ASTs can de-differentiate into nestin-positive stem/precursor cells, the process of de-differentiation may arise from direct injury or some diffusible factors released from injured ASTs.
机译:我们以前的报告表明受伤成年大鼠脊髓中的星形胶质细胞(ASTs)经历了去分化过程,并可能获得神经干细胞(NSCs)的潜力。但是,损伤后的AST去分化和过渡恢复过程仍不清楚。本研究的目的是确定受损的体外AST是否能重新进入多能干细胞库并恢复NSC特性,并进一步了解AST去分化的机制。我们使用了体外划伤模型来唤起对机械损伤的星形细胞反应。进行了GFAP和Nestin双标记间接免疫荧光试验,以表征这些刮擦细胞在不同时期的特征。蛋白质印迹分析用于确定损伤后GFAP和nestin表达的变化。此外,通过免疫细胞化学检测掺入BrdU的细胞来确定增殖速率。将这些刮伤的AST与干细胞培养基一起培养,以探索其产生神经球的能力,并检查此类神经球的自我更新和多能性。此外,使用刮擦的AST培养上清液作为条件培养基(ACM)来研究源自受损AST的某些可扩散因子是否可以诱导AST的去分化。结果表明:(1)巢蛋白阳性首先出现在划痕边缘的GFAP阳性细胞中,随后散布到未受感染的区域。随着培养时间的延长,巢蛋白在AST中的表达增加,而GFAP的表达则下降。此外,这些Nestin免疫反应性AST可以产生神经球,表现出自我更新,并可以分化为神经元,AST和少突胶质细胞。 (2)刮伤的ASTs培养上清液可诱导星形细胞增殖和去分化。这些结果表明,体外损伤的AST可以去分化为巢蛋白阳性干/前体细胞,去分化的过程可能是直接损伤或损伤的AST释放的一些可扩散因子引起的。

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