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小鼠膈腹膜中的淋巴气孔:其出现时间及分布图

Lymphatic stomata in the murine diaphragmatic peritoneum: the timing of their appearance and a map of their distribution.

作者信息

Nakatani T, Ohtani O, Tanaka S

机构信息

Department of Anatomy (II), School of Medicine, Kanazawa University, Japan.

出版信息

Anat Rec. 1996 Apr;244(4):529-39. doi: 10.1002/(SICI)1097-0185(199604)244:4<529::AID-AR11>3.0.CO;2-R.

Abstract

BACKGROUND

Fluid and free cells in the peritoneal cavity enter the lymphatics through the lymphatic stomata which are channels connecting the lymphatics in the peritoneal side of the diaphragm with the peritoneal cavity. While the stomata thus play a very important in the physiology of the peritoneal cavity, it is unclear when they appear or how they are distributed on the diaphragm. We therefore conducted an embryological study of the process and timing of mouse lymphatic stomata development in the peritoneal surface of the diaphragm.

METHODS

The mouse diaphragm, at stage ranging from embryonic day 18 (ED18) to postnatal week 10 (PW10), was observed by scanning electron microscopy, and the number of lymphatic stomata was counted on each observation day. A map of the data was constructed to illustrate the process of appearance of lymphatic stomata.

RESULTS

Lymphatic stomata were not found on ED18. They were first found on PD0 and their number increased exponentially until PW10. Lymphatic stomata were usually located in cuboidal cell areas but not in the areas lined with flattened cells. The cuboidal cell area with several lymphatic stomata was first found in the retroparasternal region on PD0, followed by in the muscular portion, as "ridges" on PD4 and "bands" on PD6 or up to a few days later. The long axis of the ridges and bands was oriented from the center to periphery of the diaphragm. Subsequently, cuboidal cell areas with lymphatic stomata formed along the border between the central tendon and the muscular portion, most frequently on PD10. Another cuboidal cell area with lymphatic stomata appeared rather suddenly ventral to the inferior vena cava on PD10. This was the full complement of cuboidal cell areas seen in the adult of PW10.

CONCLUSION

These results verified that the course of the change of the shape and distribution of cuboidal cell areas parallels that of the underlying lymphatic lacunae, suggesting the delivery of some stimuli from the lymphatic lacunae to the overlying mesothelial cells that results in alternation of their cell shape.

摘要

背景

腹腔内的液体和游离细胞通过淋巴小孔进入淋巴管,淋巴小孔是连接膈肌腹膜侧淋巴管与腹腔的通道。虽然这些小孔在腹腔生理学中起着非常重要的作用,但它们何时出现以及如何分布在膈肌上尚不清楚。因此,我们对小鼠膈肌腹膜表面淋巴小孔发育的过程和时间进行了胚胎学研究。

方法

通过扫描电子显微镜观察胚胎第18天(ED18)至出生后第10周(PW10)不同阶段的小鼠膈肌,并在每个观察日计数淋巴小孔的数量。构建数据图以说明淋巴小孔的出现过程。

结果

在ED18未发现淋巴小孔。它们首次在出生后第0天(PD0)被发现,其数量呈指数增长直至PW10。淋巴小孔通常位于立方体细胞区域,而不在扁平细胞排列的区域。在PD0,首次在胸骨后区域发现有几个淋巴小孔的立方体细胞区域,随后在肌肉部分,在PD4时呈“嵴”状,在PD6时或几天后呈“带”状。嵴和带的长轴从膈肌中心向周边延伸。随后,在中央腱和肌肉部分之间的边界处,最常在PD10形成有淋巴小孔的立方体细胞区域。另一个有淋巴小孔的立方体细胞区域在PD10时突然出现在下腔静脉腹侧。这就是PW10成年小鼠中所见的立方体细胞区域的完整分布。

结论

这些结果证实,立方体细胞区域的形状和分布变化过程与下方的淋巴腔隙的变化过程平行,表明从淋巴腔隙向覆盖的间皮细胞传递了一些刺激,导致其细胞形状发生改变。

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