Djonov V G, Galli A B, Burri P H
Institute of Anatomy, Berne, Switzerland.
Anat Embryol (Berl). 2000 Nov;202(5):347-57. doi: 10.1007/s004290000126.
Various reports indicate that the process of intussusceptive microvascular growth (IMG) plays a crucial role in capillary network formation of the chorio-allantoic membrane (CAM). In the present study we demonstrate by methylmethacrylate (Mercox) casting and in vivo time-lapse observations that intussusception, i.e. insertion of transcapillary tissue pillars, is also strongly involved in vascular tree formation, a process we refer to as intussusceptive arborization (IAR). From day 7 to day 14 of incubation, several arterial and venous branching generations arise from the capillary plexus. The process is initiated by pillar formation in rows, which are demarcating future large vessels in the capillary meshwork. In a subsequent step the pillars undergo reshaping to form narrow tissue septa that successively merge, which results in the production of new generations of blood vessels. This is followed by growth and maturation of all vascular components. The process of IAR in the CAM is very active at days 10 and 11 of incubation and takes place in preferentially perfused capillary regions determining "dynamic areas". The process of intussusception may be preceded by endothelial division, but the transcapillary pillar formation itself occurs primarily by rearrangement and attenuation of the endothelial cells without local endothelial cell proliferation. We conclude that after the early sprouting phase, the process of intussusception is the basic mechanism of CAM vascularization. It leads to capillary network growth and expansion (IMG) and, at the same time to feed vessel formation with several branching generations (IAR).
各种报告表明,套叠式微血管生长(IMG)过程在绒毛尿囊膜(CAM)的毛细血管网络形成中起着关键作用。在本研究中,我们通过甲基丙烯酸甲酯(Mercox)铸型和体内延时观察证明,套叠,即跨毛细血管组织柱的插入,也强烈参与血管树的形成,我们将这一过程称为套叠式分支化(IAR)。在孵化的第7天到第14天,毛细血管丛产生了几代动脉和静脉分支。这个过程由成排的柱形成启动,这些柱在毛细血管网中划分出未来的大血管。在随后的步骤中,柱会重塑形成狭窄的组织隔膜,这些隔膜会相继融合,从而产生新一代的血管。随后是所有血管成分的生长和成熟。CAM中的IAR过程在孵化的第10天和第11天非常活跃,并且发生在优先灌注的毛细血管区域,即“动态区域”。套叠过程可能在内皮细胞分裂之前发生,但跨毛细血管柱的形成本身主要是通过内皮细胞的重排和变薄,而没有局部内皮细胞增殖。我们得出结论,在早期萌芽阶段之后,套叠过程是CAM血管化的基本机制。它导致毛细血管网络的生长和扩张(IMG),同时导致具有几代分支的供血血管形成(IAR)。