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内皮再生。I. 大鼠主动脉内膜内皮再生初期的定量分析。

Endothelial regneration. I. Quantitative analysis of initial stages of endothelial regeneration in rat aortic intima.

作者信息

Schwartz S M, Haudenschild C C, Eddy E M

出版信息

Lab Invest. 1978 May;38(5):568-80.

PMID:642457
Abstract

The aortic endothelium is a naturally occurring monolayer which allows comparison between wound healing in the intact animal and similar phenomena studied with monolayers in tissue culture. We used the balloon catheter technique to abrade a defined portion of the lining of the aorta in rats. Proliferation and migration across the line of injury were quantitatively determined using tritiated thymidine autoradiography, incidenct light microscopy, and scanning electron microscopy. The findings in vivo differ from those in vitro in three ways: (1) The response in vivo is not limited to the line of injury. Cells up to 100 cells behind this line are stimulated to enter S phase and undergo a characteristic change in shape not seen in the tissue culture systems. (2) This same "regeneration zone" escapes normal controls on cell density, producing three times as many cells per unit area as in unstimulated endothelium. (3) Cell migration, but not proliferation, occurs preferentially along the axis of the vessel, equally well against and with blood flow. These findings differ from results of tissue culture studies and suggest that the "diffusion barrier" mechanism proposed for control of monolyaer regeneration in vitro does not explain contact inhibition of endothelium in vivo and that regeneration of endothelium is controlled either by factors released from the site of injury or by cell to cell interactions.

摘要

主动脉内皮是一种天然存在的单层结构,这使得在完整动物体内的伤口愈合情况与在组织培养中用单层细胞研究的类似现象之间能够进行比较。我们使用球囊导管技术磨损大鼠主动脉内膜的特定部分。利用氚标记的胸腺嘧啶核苷放射自显影术、明视显微镜和扫描电子显微镜对损伤线处的细胞增殖和迁移进行了定量测定。体内的研究结果在三个方面与体外研究结果不同:(1)体内反应不限于损伤线。这条线后方多达100个细胞被刺激进入S期,并发生在组织培养系统中未见的特征性形态变化。(2)这个相同的“再生区”不受细胞密度的正常控制,每单位面积产生的细胞数量是未受刺激的内皮细胞的三倍。(3)细胞迁移而非增殖优先沿血管轴发生,无论与血流方向相反还是相同都能很好地进行。这些发现与组织培养研究结果不同,表明为体外单层细胞再生控制提出的“扩散屏障”机制并不能解释体内内皮细胞的接触抑制,并且内皮细胞的再生要么由损伤部位释放的因子控制,要么由细胞间相互作用控制。

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