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体外细胞对机械刺激和电刺激的反应比较。

A comparison of in vitro cellular responses to mechanical and electrical stimulation.

作者信息

Lee R C, Rich J B, Kelley K M, Weiman D S, Mathews M B

出版信息

Am Surg. 1982 Nov;48(11):567-74.

PMID:7149472
Abstract

In the last several decades, enormous interest has been generated toward understanding the cell as it is controlled by its external physical environment. The purpose of this study was to determine the effects of well-defined applied mechanical stress and time-varying electric fields on the cellular synthesis of connective tissue macromolecules. Chondrocytes harvested by trypsin digestion of 15-day-old chick embryo sternae were randomly dispersed and cultured on elastin membranes in a humidified atmosphere with 10 per cent CO2 and 90 per cent air. Following five days of growth in F12 media and 5 per cent fetal calf serum, the membranes underwent either 1) a 10 per cent cyclic mechanical stretch or 2) 60 Hz A.C. electrical stimulation with current densities of 1 to 1,000 nA/mm2 or 3) control without stimulation, each for an eight-hour period. C14-hydroxyproline incorporation into collagen, and H2 35 SO4 incorporation into glycosaminoglycans (GAGs) were measured by liquid scintillation techniques. Scanning and transmission electron microscopy analysis of control and stimulated cells demonstrated discernable differences. Both mechanically and electrically stimulated chondrocytes showed a two- to three-fold increase in GAG synthesis and a general depression in protein and collagen synthesis over controls. The general similarity in response to both mechanical and electrical stress suggests common processes by which they modulate cellular synthesis of cartilage connective tissue proteins.

摘要

在过去几十年里,人们对了解细胞如何受其外部物理环境控制产生了极大兴趣。本研究的目的是确定明确施加的机械应力和时变电场对结缔组织大分子细胞合成的影响。通过胰蛋白酶消化15日龄鸡胚胸骨收获软骨细胞,将其随机分散并在含10%二氧化碳和90%空气的湿润气氛中培养在弹性蛋白膜上。在含有5%胎牛血清的F12培养基中生长五天后,这些膜分别经历以下处理:1)10%的周期性机械拉伸;2)电流密度为1至1000 nA/mm2的60 Hz交流电刺激;3)无刺激的对照,每种处理持续八小时。通过液体闪烁技术测量14C-羟脯氨酸掺入胶原蛋白以及35H2SO4掺入糖胺聚糖(GAGs)的情况。对对照细胞和受刺激细胞进行扫描和透射电子显微镜分析显示出明显差异。与对照相比,机械和电刺激的软骨细胞GAG合成均增加了两到三倍,而蛋白质和胶原蛋白合成总体上受到抑制。对机械和电应力的反应普遍相似,这表明它们调节软骨结缔组织蛋白细胞合成的共同过程。

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