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外源性电流对肌腱纤维增生的调节作用。

Modulation of tendon fibroplasia by exogenous electric currents.

作者信息

Cleary S F, Liu L M, Graham R, Diegelmann R F

机构信息

Department of Physiology, Medical College of Virginia, Virginia Commonwealth University, Richmond 23298.

出版信息

Bioelectromagnetics. 1988;9(2):183-94. doi: 10.1002/bem.2250090210.

Abstract

A chicken tendon explant model system has been developed to investigate the effects of extremely-low-frequency (ELF), low-amplitude, unipolar, square wave pulsed electric fields on fibroplasia in vitro. An electric field parameter set consisting of 1-Hz, 1-ms duration pulses, with a time-averaged current density of 7 mA/m2 (peak current density 7 A/m2) induced maximal (32%) increase in fibroblast proliferation in tendon explants exposed for 4 days. Exposure to the same field at an average current density of 1.8 mA/m2 had no effect on fibroblast proliferation, whereas exposure to current densities on greater than 10 mA/m2 inhibited proliferation and relative collagen synthesis, without affecting noncollagen protein synthesis. Fibroplasia was significantly increased in explants oriented parallel to applied electric fields having current densities of 3.5 or 7 mA/m2, but there was no detectable effect on explants oriented perpendicular to the same electric field. Fibroblast proliferation and relative collagen synthesis were inversely proportional to donor age for chickens in the 3- to 16-week age group used in this study. For these dependent variables (proliferation and relative collagen synthesis), there was no interaction between donor age and ELF electric field exposure.

摘要

已开发出一种鸡肌腱外植体模型系统,用于研究极低频(ELF)、低振幅、单极、方波脉冲电场对体外纤维组织形成的影响。由1赫兹、持续时间1毫秒的脉冲组成的电场参数集,时间平均电流密度为7毫安/平方米(峰值电流密度7安/平方米),可使暴露4天的肌腱外植体中的成纤维细胞增殖最大增加(32%)。以1.8毫安/平方米的平均电流密度暴露于相同电场对成纤维细胞增殖没有影响,而暴露于大于10毫安/平方米的电流密度会抑制增殖和相对胶原蛋白合成,且不影响非胶原蛋白合成。在与电流密度为3.5或7毫安/平方米的施加电场平行定向的外植体中,纤维组织形成显著增加,但对与相同电场垂直定向的外植体没有可检测到的影响。在本研究中使用的3至16周龄鸡群中,成纤维细胞增殖和相对胶原蛋白合成与供体年龄成反比。对于这些因变量(增殖和相对胶原蛋白合成),供体年龄和极低频电场暴露之间没有相互作用。

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