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正常生长过程中的微血管发育与血流减少:一种新模型的介绍

Microvascular development during normal growth and reduced blood flow: introduction of a new model.

作者信息

Wang D H, Prewitt R L

机构信息

Department of Physiology, Eastern Virginia Medical School, Norfolk 23501.

出版信息

Am J Physiol. 1991 Jun;260(6 Pt 2):H1966-72. doi: 10.1152/ajpheart.1991.260.6.H1966.

DOI:10.1152/ajpheart.1991.260.6.H1966
PMID:2058728
Abstract

The purpose of this study was to evaluate microvascular development during normal skeletal muscle maturation and to determine the alterations associated with decreased blood flow caused by a decrease in demand. Unilateral orchidectomy was performed on 4-wk-old rats to reduce muscle tension and growth of one cremaster muscle. Three weeks later, total blood flow was reduced to 58 +/- 9% measured by the dual-slit velocity technique and 55 +/- 9% by radioactive microspheres, and the muscle was smaller when compared with the intact contralateral muscle. Blood flow per gram of tissue was not significantly different. Measured by closed-circuit television microscopy, the internal diameters and wall cross-sectional areas of all orders of arterioles (1A-4A), and the number of 4As per 3A had increased with age in the control muscle. The arcading arterioles increased in length by 35% as the intact muscle grew, but the number of 3As remained unchanged. Arteriolar length increased but not in proportion to muscle mass. As a result, large and small arteriolar density decreased with age. Thus, during normal skeletal muscle maturation, preexisting arterioles became elongated and only precapillary arterioles increased in number, resulting in a decreased ratio of arteriolar number to tissue mass. Unilateral orchidectomy inhibited the growth of arterioles in both size and number. A reduced diameter of the 1A in the orchidectomy muscle resulted in unchanged wall shear rate. Flow-induced shear stress and/or local changes in growth factors are suggested as possible mechanisms mediating the alterations.

摘要

本研究的目的是评估正常骨骼肌成熟过程中的微血管发育,并确定与需求减少导致的血流减少相关的变化。对4周龄大鼠进行单侧睾丸切除术,以降低一侧提睾肌的肌肉张力和生长。三周后,采用双缝速度技术测得总血流量减少至58±9%,放射性微球测得为55±9%,与完整的对侧肌肉相比,该肌肉更小。每克组织的血流量无显著差异。通过闭路电视显微镜测量,对照肌肉中各级小动脉(1A - 4A)的内径和壁横截面积,以及每3A中4A的数量均随年龄增加。随着完整肌肉的生长,弓状小动脉长度增加了35%,但3A的数量保持不变。小动脉长度增加,但与肌肉质量不成比例。结果,大、小动脉密度随年龄降低。因此,在正常骨骼肌成熟过程中,既有小动脉变长,只有毛细血管前小动脉数量增加,导致小动脉数量与组织质量的比值降低。单侧睾丸切除术抑制了小动脉在大小和数量上的生长。睾丸切除肌肉中1A的直径减小导致壁剪切率不变。血流诱导的剪切应力和/或生长因子的局部变化被认为是介导这些变化的可能机制。

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Microvascular development during normal growth and reduced blood flow: introduction of a new model.正常生长过程中的微血管发育与血流减少:一种新模型的介绍
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