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周期性拉伸力可选择性地上调培养的大鼠系膜细胞中转化生长因子-β 亚型的表达。

Cyclic stretching force selectively up-regulates transforming growth factor-beta isoforms in cultured rat mesangial cells.

作者信息

Riser B L, Cortes P, Heilig C, Grondin J, Ladson-Wofford S, Patterson D, Narins R G

机构信息

Department of Internal Medicine, Division of Nephrology and Hypertension, Henry Ford Hospital, MI 48202, USA.

出版信息

Am J Pathol. 1996 Jun;148(6):1915-23.

Abstract

Glomerular distention from increased intraglomerular pressure stretches mesangial cells (MCs). Stretching MCs in culture stimulates extracellular matrix accumulation, suggesting that this may be a mechanism for glomerular hypertension-associated glomerulosclerosis. We examined whether mechanical stretching serves as a stimulus for the synthesis and activation of the prosclerotic molecule transforming growth factor (TGF)-beta, thus providing a potential system for auto-induction of extracellular matrix. Rat MCs cultured on flexible-bottom plates were subjected to cyclic stretching for up to 3 days and then assayed for TGF-beta mRNA, secretion of TGF-beta, and localization of active TGF-beta by immunostaining. MCs contained mRNA for all three mammalian isoforms of TGF-beta. Cyclic stretching for 36 hours increased TGF-beta1 and TGF-beta3 mRNA levels approximately twofold, without altering the levels of TGF-beta2 mRNA. This was followed at 48 to 72 hours by the increased secretion of both latent and active TGF-beta1. Latent, but not active, TGF-beta3 secretion also increased whereas the levels of TGF-beta2 were unaffected by mechanical force. The stretching force in this system is unequally distributed over the culture membrane. Localization of active TGF-beta by immunostaining demonstrated that the quantity of cell-associated cytokine across the culture was directly proportional to the zonal amplitude of the stretching force. These results demonstrate that stretching force stimulates MCs to selectively release and activate TGF-beta1. This mechanical induction of TGF-beta1 may help explain the increased extracellular matrix associated with intraglomerular hypertension.

摘要

肾小球内压力升高导致的肾小球扩张会拉伸系膜细胞(MCs)。在培养中拉伸MCs会刺激细胞外基质积聚,这表明这可能是与肾小球高血压相关的肾小球硬化的一种机制。我们研究了机械拉伸是否作为促硬化分子转化生长因子(TGF)-β合成和激活的刺激因素,从而为细胞外基质的自我诱导提供一个潜在系统。在柔性底部培养板上培养的大鼠MCs接受长达3天的循环拉伸,然后检测TGF-β mRNA、TGF-β的分泌以及通过免疫染色检测活性TGF-β的定位。MCs含有所有三种哺乳动物TGF-β同工型的mRNA。循环拉伸36小时使TGF-β1和TGF-β3 mRNA水平增加约两倍,而TGF-β2 mRNA水平未改变。在48至72小时后,潜伏型和活性TGF-β1的分泌均增加。潜伏型而非活性TGF-β3的分泌也增加,而TGF-β2的水平不受机械力影响。该系统中的拉伸力在培养膜上分布不均。通过免疫染色对活性TGF-β进行定位表明,整个培养物中与细胞相关的细胞因子数量与拉伸力的区域振幅成正比。这些结果表明,拉伸力刺激MCs选择性释放并激活TGF-β1。这种TGF-β1的机械诱导可能有助于解释与肾小球内高血压相关的细胞外基质增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc8a/1861662/8fb55e0022be/amjpathol00042-0198-a.jpg

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