神经甾体生长因子串扰可诱导无血清星形胶质细胞GFAP和vimentin表达的上下调节。

The Italian journal of biochemistry Pub Date : 2007-12-01
Vincenzo Bramanti, Daniela Bronzi, Giuseppina Raciti, Marcello Avitabile, Roberto Avola
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引用次数: 0

摘要

在本研究中,我们旨在研究生长因子(GFs)和地塞米松(DEX)在以下实验条件下对细胞骨架蛋白GFAP和vimentin (VIM)表达的相互作用:bFGF预处理24小时,随后在无血清培养基(SFM)中切换72小时,最后添加GFs,在延长(60h) DEX处理后的最后24小时仅添加一个或多个GFs。Western blot分析数据显示,在我们的实验条件下,与未处理或处理的对照组相比,培养物中有显著的GFAP表达。特别是,在延长60小时的DEX处理中,加入EGF或INS或两者同时加入时,观察到GFAP表达的最高水平。这一发现与糖皮质激素与“能力”因子bFGF相互作用所起的分化作用密切相关,并表明GFAP表达的增加主要取决于星形胶质细胞在培养中的成熟状态,而不是增殖状态。在DEX处理60h的最后24h,与DEX预处理的对照组相比,添加GFs后VIM表达显著降低。与未处理的对照组相比,添加GFs后VIM表达显著增强。总的来说,我们的研究结果表明,在星形胶质细胞培养中,与DEX和bFGF共同预处理的GFs和DEX之间存在相互作用,调节应激条件下的细胞骨架网络。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neurosteroid-growth factor cross-talk induces up and down regulation of GFAP and vimentin expression in serum free astrocyte cultures.

In this research we aimed to investigate the interactions between growth factors (GFs) and dexamethasone (DEX) on cytoskeletal proteins GFAP and vimentin (VIM) expression under the following experimental condition: 24h pretreatment with bFGF, subsequent 72h switching in serum-free medium (SFM) and final addition of GFs, only one or more in the last 24h, after a prolonged (60h) DEX treatment. Western blot analysis data showed a marked GFAP expression in cultures submitted to our experimental condition comparing results to untreated or treated controls. In particular, the maximum level of GFAP expression is observed when EGF or INS or both together are added in a prolonged 60h DEX treatment. This finding well correlates with differentiative role played by glucocorticoids interacting with the "competence" factor bFGF and demonstrates as increased GFAP expression mostly depends on maturation, rather than proliferating status of astroglial cells in culture. VIM expression was instead significantly reduced after GFs addition in the last 24h of 60h DEX treatment, respect to control DEX-pretreated ones. Comparing the data to untreated controls, VIM expression was significantly enhanced after GFs addition. Collectively, our findings evidence an interactive effect between GFs and DEX in astroglial cultures, co-pretreated with DEX and bFGF, regulating cytoskeletal network under stressfull conditions.

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