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大鼠输尿管平滑肌细胞的取向主要是纵向的。

Ureter smooth muscle cell orientation in rat is predominantly longitudinal.

机构信息

Department of Biomedical Engineering, CARIM School for Cardiovascular Diseases, Maastricht University, Maastricht, The Netherlands.

Department of Biomedical Engineering, CARIM School for Cardiovascular Diseases, Maastricht University, Maastricht, The Netherlands ; Institute of Computational Science, University of Lugano, Lugano, Switzerland.

出版信息

PLoS One. 2014 Jan 21;9(1):e86207. doi: 10.1371/journal.pone.0086207. eCollection 2014.

Abstract

In ureter peristalsis, the orientation of the contracting smooth muscle cells is essential, yet current descriptions of orientation and composition of the smooth muscle layer in human as well as in rat ureter are inconsistent. The present study aims to improve quantification of smooth muscle orientation in rat ureters as a basis for mechanistic understanding of peristalsis. A crucial step in our approach is to use two-photon laser scanning microscopy and image analysis providing objective, quantitative data on smooth muscle cell orientation in intact ureters, avoiding the usual sectioning artifacts. In 36 rat ureter segments, originating from a proximal, middle or distal site and from a left or right ureter, we found close to the adventitia a well-defined longitudinal smooth muscle orientation. Towards the lamina propria, the orientation gradually became slightly more disperse, yet the main orientation remained longitudinal. We conclude that smooth muscle cell orientation in rat ureter is predominantly longitudinal, though the orientation gradually becomes more disperse towards the proprial side. These findings do not support identification of separate layers. The observed longitudinal orientation suggests that smooth muscle contraction would rather cause local shortening of the ureter, than cause luminal constriction. However, the net-like connective tissue of the ureter wall may translate local longitudinal shortening into co-local luminal constriction, facilitating peristalsis. Our quantitative, minimally invasive approach is a crucial step towards more mechanistic insight into ureter peristalsis, and may also be used to study smooth muscle cell orientation in other tube-like structures like gut and blood vessels.

摘要

在输尿管蠕动中,收缩平滑肌细胞的方向至关重要,但目前对人类和大鼠输尿管中平滑肌层的方向和组成的描述并不一致。本研究旨在改善大鼠输尿管中平滑肌方向的定量描述,作为对蠕动机制理解的基础。我们方法中的一个关键步骤是使用双光子激光扫描显微镜和图像分析,为完整输尿管中平滑肌细胞方向提供客观、定量的数据,避免通常的切片伪影。在 36 个大鼠输尿管段中,来源于近端、中段或远端以及左侧或右侧输尿管,我们发现靠近外膜有一个明确的纵向平滑肌方向。向固有层方向,方向逐渐变得稍微分散,但主要方向仍然是纵向。我们得出结论,大鼠输尿管中平滑肌细胞的方向主要是纵向的,尽管方向逐渐向固有侧变得更加分散。这些发现不支持识别单独的层。观察到的纵向方向表明,平滑肌收缩更可能导致输尿管的局部缩短,而不是导致管腔收缩。然而,输尿管壁的网状结缔组织可能会将局部的纵向缩短转化为局部的管腔收缩,从而促进蠕动。我们的定量、微创方法是对输尿管蠕动进行更深入的机械理解的关键步骤,也可用于研究肠道和血管等其他管状结构中的平滑肌细胞方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7dd/3897663/b7ff8e126cb2/pone.0086207.g001.jpg

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