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物理力对膀胱平滑肌和尿路上皮的影响。

Effect of physical forces on bladder smooth muscle and urothelium.

作者信息

Baskin L, Howard P S, Macarak E

机构信息

Connective Tissue Research Institute, University City Science Center, Philadelphia, Pennsylvania.

出版信息

J Urol. 1993 Aug;150(2 Pt 2):601-7. doi: 10.1016/s0022-5347(17)35560-x.

Abstract

Abnormalities in bladder physiology may be due to obstruction (pressure) and/or neurological impairment. Clinically they can result in an increase in connective tissue and a decrease in bladder compliance. To study the effects of physical forces on the bladder without the influence of the nerves we developed a cellular model system by isolating the 2 major cell types in the bladder: smooth muscle and urothelial cells. Extracellular matrix protein biosynthesis by these 2 cell types in vitro has been characterized by metabolic labeling of proteins with [14C] radiolabeled proline and analysis by gel electrophoresis. These studies demonstrate that fetal bovine bladder smooth muscle and urothelial cells synthesize fibronectin and types I and III interstitial collagen. Since bladder cells exist in an active physical environment, we have attempted to simulate this at the cellular level. Using a device developed in our laboratory, we applied a precise and reproducible mechanical strain (physical force) to these 2 cell types. By enzyme linked immunosorbent assay we quantitated collagen types I and III and fibronectin synthesized by fetal bovine bladder smooth muscle and urothelial cells undergoing mechanical strain (4.9%). These cells were compared to unstrained control cells that were exposed to the same experimental conditions. For bladder smooth muscle cells we found a significant increase in collagen type III and fibronectin synthesis when compared to unstrained cells. In contrast, collagen type I synthesis decreased with mechanical strain. For bladder urothelial cells we found an increase in collagen type I and fibronectin while collagen type III remained unchanged. These studies demonstrate that extracellular matrix synthesis by urothelial and smooth muscle cells can be modulated by stretch (strain) in the absence of neurological input. It is likely that bladder function may be impaired as a result of abnormal synthesis of connective tissue.

摘要

膀胱生理异常可能是由于梗阻(压力)和/或神经功能损害所致。临床上,这些异常可导致结缔组织增加,膀胱顺应性降低。为了在不受神经影响的情况下研究物理力对膀胱的作用,我们通过分离膀胱中的两种主要细胞类型:平滑肌细胞和尿路上皮细胞,建立了一个细胞模型系统。这两种细胞类型在体外的细胞外基质蛋白生物合成已通过用[14C]放射性标记的脯氨酸对蛋白质进行代谢标记并通过凝胶电泳分析来进行表征。这些研究表明,胎牛膀胱平滑肌细胞和尿路上皮细胞可合成纤连蛋白以及Ⅰ型和Ⅲ型间质胶原。由于膀胱细胞存在于活跃的物理环境中,我们试图在细胞水平上模拟这种环境。我们使用实验室开发的一种装置,对这两种细胞类型施加精确且可重复的机械应变(物理力)。通过酶联免疫吸附测定法,我们对经受机械应变(4.9%)的胎牛膀胱平滑肌细胞和尿路上皮细胞合成的Ⅰ型和Ⅲ型胶原以及纤连蛋白进行了定量。将这些细胞与暴露于相同实验条件下的未受应变的对照细胞进行比较。对于膀胱平滑肌细胞,与未受应变的细胞相比,我们发现Ⅲ型胶原和纤连蛋白的合成显著增加。相比之下,Ⅰ型胶原的合成随机械应变而减少。对于膀胱尿路上皮细胞,我们发现Ⅰ型胶原和纤连蛋白增加,而Ⅲ型胶原保持不变。这些研究表明,在没有神经输入的情况下,尿路上皮细胞和平滑肌细胞的细胞外基质合成可通过拉伸(应变)来调节。结缔组织合成异常可能会导致膀胱功能受损。

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