非洲爪蟾幼虫到成虫小肠微血管床的空间生长和模式形成:微血管腐蚀铸件的扫描电镜研究。

Anatomy and Embryology Pub Date : 2006-10-01 Epub Date: 2006-08-08 DOI:10.1007/s00429-006-0104-2
A Lametschwandtner, U Lametschwandtner, Ch Radner, B Minnich
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引用次数: 9

摘要

通过扫描电子显微镜(SEM)、血管腐蚀铸型(VCCs)和光学显微镜研究了南非爪蟾(Xenopus laevis (Daudin))发育阶段55 - 65和成年的蜕变蝌蚪小肠的微血管解剖。直到62期,vcc显示密集的二维血管网络包围着肠管,其近端部分形成顺时针螺旋形的外圈,远端部分形成逆时针螺旋形的内圈。肠网的血管呈扁平状,呈圆形或略斜向。局部可见密集的毛细血管丛,有小“孔”,表明肠套微血管正在生长(IMG)和血管成熟。小肠近端内陷,可见致密的毛细血管床,伴有局部持续的IMG。62/63期vcc首次显示三维血管床,纵向肠褶皱大小和高度不等,大大扩大了肠管的管腔交换面积。从65期开始,纵向肠褶皱呈波浪形,尽管在vcc中存在更宽的窦状血管,中间有小“孔”,表明它们的尺寸更小,更不成熟,但与成年爪蟾小肠中的肠褶皱非常相似。我们的数据表明,在62-63期之后,小蝌蚪小肠血管模式逐渐成熟,这一时期的生长以肠套叠为主。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatial growth and pattern formation in the small intestine microvascular bed from larval to adult Xenopus laevis: a scanning electron microscope study of microvascular corrosion casts.

The microvascular anatomy of the small intestine of metamorphosing tadpoles of the South African Clawed Toad, Xenopus laevis (Daudin) is studied from developmental stages 55 to 65 and in adults by scanning electron microscopy (SEM) of vascular corrosion casts (VCCs) and light microscopy. Up to stage 62, VCCs reveal a dense two-dimensional vascular network ensheating the intestinal tube, whose proximal portion forms a clockwise spiralling outer and its distal portion an anti-clockwise spiralling inner coil. Vessels of the intestinal network impose flat and run circularly to slightly obliquely. Locally, dense capillary plexus with small "holes" indicating ongoing intussusceptive microvascular growth (IMG) and vessel maturation, are present. The typhlosole, an invagination along the proximal portion of the small intestine, reveals a dense capillary bed with locally ongoing IMG. VCCs of stages 62/63 for the first time reveal a three-dimensional vascular bed with longitudinal intestinal folds of varying size and heights greatly enlarging the luminal exchange area of the intestinal tube. From stage 65 onwards, longitudinal intestinal folds undulate and, though smaller in size and less mature as indicated in VCCs by the presence of wider, sinus-like vessels with small "holes" interposed between, closely resemble the intestinal folds present in the small intestine of adult Xenopus. Our data suggest that maturation of the vascular pattern in the small intestine of X. laevis tadpoles takes place successively after stages 62-63, and growth during this period is preferentially by intussusception.

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