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地塞米松对小鼠胚胎腭间充质细胞中转化生长因子-β表达的影响。

Effects of dexamethasone on the expression of transforming growth factor-beta in mouse embryonic palatal mesenchymal cells.

作者信息

Potchinsky M, Nugent P, Lafferty C, Greene R M

机构信息

Daniel Baugh Institute, Department of Pathology, Anatomy, and Cell Biology, Jefferson Medical College, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.

出版信息

J Cell Physiol. 1996 Feb;166(2):380-6. doi: 10.1002/(SICI)1097-4652(199602)166:2<380::AID-JCP16>3.0.CO;2-F.

Abstract

The central role of TGF-beta in the development of the embryonic palate has been well characterized. TGF-beta inhibits mesenchymal cell proliferation, induces medial edge epithelial cell differentiation, and modulates the expression of extracellular matrix proteins as well as the proteases that act upon them. Mechanisms by which TGF-beta expression itself is regulated are less well understood. Glucocorticoids are recognized in several cellular systems as able to regulate the expression of TGF-beta. This study was therefore designed to examine whether glucocorticoids affect the expression of TGF-beta isoforms in embryonic palatal cells. Based on flow cytometric analysis and viability determination, confluent primary cultures of mouse embryonic palate mesenchymal (MEPM) cells exposed to up to 10(-6) M dexamethasone (dex) exhibited no signs of cytotoxicity after 24 hours of exposure. Northern blot analyses revealed that dexamethasone reduced steady-state mRNA levels of TGF-beta 3 in a dose-dependent manner as early as 4 hours after treatment but had little effect on TGF-beta 1 and TGF-beta 2 expression up to 24 hours of dex exposure. Dex also reduced the synthesis of both latent and mature forms of TGF-beta protein by approximately four-fold as determined by the mink lung epithelial cell growth inhibition bioassay. Assessment of the ratio of mature to latent protein found in conditioned medium of control compared to dex-treated cultures indicated that dexamethasone may reduce the activation of latent TGF-beta to mature biologically active TGF-beta. Dexamethasone inhibited the proliferation of MEPM cells despite the down-regulation of TGF-beta suggesting that dex-induced growth inhibition of MEPM cells is not mediated by TGF-beta. These data suggest that dex modulates TGF-beta signaling pathways directly by down-regulating TGF-beta expression and possibly indirectly by altering the availability of mature TGF-beta necessary to exert its biological effects in the developing palate.

摘要

转化生长因子β(TGF-β)在胚胎腭发育中的核心作用已得到充分阐明。TGF-β抑制间充质细胞增殖,诱导内侧边缘上皮细胞分化,并调节细胞外基质蛋白以及作用于它们的蛋白酶的表达。TGF-β表达自身的调控机制尚不太清楚。在多个细胞系统中,糖皮质激素被认为能够调节TGF-β的表达。因此,本研究旨在检测糖皮质激素是否影响胚胎腭细胞中TGF-β异构体的表达。基于流式细胞术分析和活力测定,暴露于高达10⁻⁶ M地塞米松(dex)的汇合小鼠胚胎腭间充质(MEPM)细胞原代培养物在暴露24小时后未表现出细胞毒性迹象。Northern印迹分析显示,地塞米松早在处理后4小时就以剂量依赖的方式降低了TGF-β3的稳态mRNA水平,但在dex暴露24小时内对TGF-β1和TGF-β2表达影响很小。通过貂肺上皮细胞生长抑制生物测定法测定,dex还使TGF-β蛋白的潜伏形式和成熟形式的合成均减少了约四倍。对对照条件培养基与dex处理培养物中发现的成熟蛋白与潜伏蛋白比例的评估表明,地塞米松可能会减少潜伏TGF-β向成熟生物活性TGF-β的激活。尽管TGF-β下调,但地塞米松抑制了MEPM细胞的增殖,这表明dex诱导的MEPM细胞生长抑制不是由TGF-β介导的。这些数据表明,dex通过下调TGF-β表达直接调节TGF-β信号通路,并且可能通过改变成熟TGF-β的可用性间接调节,而成熟TGF-β是在发育中的腭中发挥其生物学作用所必需的。

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