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大鼠心脏血管平滑肌细胞和周细胞的扫描电子显微镜研究。

Scanning electron microscopic studies of the vascular smooth muscle cells and pericytes in the rat heart.

作者信息

Higuchi K, Hashizume H, Aizawa Y, Ushiki T

机构信息

Department of Anatomy and Histology, Faculty of Medicine, Niigata University, Japan.

出版信息

Arch Histol Cytol. 2000 May;63(2):115-26. doi: 10.1679/aohc.63.115.

Abstract

The cytoarchitecture of smooth muscle cells and pericytes in the rat cardiac vessels was studied by scanning electron microscopy after the removal of connective tissue matrices using a modified KOH-collagenase digestion method. The initial stem of the coronary arteries had groups of smooth muscle cells which ran in various directions on the outermost layer of the media. Although smooth muscle cells in coronary arteries of more than 100 microm in the outer diameter were arranged in a rough circle around the vessel axis, oblique and/or longitudinal muscle bundles were often present in the medio-adventitial border of the vessels. The presence of irregularly oriented muscular bundles is probably connected with resistance against the stretching force induced by the beating of the heart. As the vessel size decreased toward the periphery, almost all of the smooth muscle cells became spindle-shaped with several tiny processes and ran circularly or helicaly to the vessel axis. In the precapillary arterioles (6-12 microm), smooth muscle cells acquired various cytoplasmic processes which helicaly surrounded endothelial cells. Unmyelinated nerves were often associated with arterioles. Blood capillaries were morphologically divided into three segments: arterial capillaries which had pericytes with wide and circularly oriented processes, true capillaries whose pericytes extended long and thin primary processes bilaterally along the vessel axis, and venous capillaries surrounded irregularly and loosely by wide pericytic processes. The stellate pericytes in the postcapillary venules (10-30 microm) gradually changed into flat tape-like smooth muscle cells, which ran circularly in the collecting venules and veins (30-200 microm). The large collecting veins were finally overwhelmed by superficial thin layer of the myocardium, their own smooth muscle cells being very sparse. This suggests that large veins have poor ability to contract by themselves but are influenced by the surrounding myocardial cells.

摘要

采用改良的KOH-胶原酶消化法去除结缔组织基质后,通过扫描电子显微镜研究了大鼠心脏血管中平滑肌细胞和周细胞的细胞结构。冠状动脉的起始段有成群的平滑肌细胞,它们在中膜的最外层向各个方向延伸。尽管外径超过100微米的冠状动脉中的平滑肌细胞围绕血管轴呈大致圆形排列,但在血管的中膜-外膜边界处经常存在斜向和/或纵向肌束。不规则取向的肌束的存在可能与抵抗心脏跳动引起的拉伸力有关。随着血管向周边逐渐变细,几乎所有的平滑肌细胞都变成纺锤形,有几个微小的突起,并围绕血管轴呈圆形或螺旋形排列。在毛细血管前微动脉(6-12微米)中,平滑肌细胞获得了各种细胞质突起,这些突起呈螺旋状围绕内皮细胞。无髓神经常与微动脉相连。毛细血管在形态上分为三段:动脉毛细血管,其周细胞具有宽的圆形突起;真毛细血管,其周细胞沿血管轴两侧延伸出长而细的初级突起;静脉毛细血管,被宽的周细胞突起不规则且松散地包围。毛细血管后微静脉(10-30微米)中的星状周细胞逐渐转变为扁平带状平滑肌细胞,这些细胞在集合微静脉和静脉(30-200微米)中呈圆形排列。大的集合静脉最终被心肌的浅表薄层所覆盖,其自身的平滑肌细胞非常稀疏。这表明大静脉自身收缩能力较差,但受周围心肌细胞的影响。

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