Department of Anatomy, Saint Petersburg State Pediatric Medical University, Saint Petersburg 194100, Russia.
Department of Anatomy, Ivanovo State Medical University, Ivanovo 153012, Russia.
Int J Mol Sci. 2024 Sep 25;25(19):10322. doi: 10.3390/ijms251910322.
The mechanisms responsible for the growth and development of vascular beds in intestinal villi during postnatal ontogenesis remain enigmatic. For instance, according to the current consensus, in the sprouting type of angiogenesis, there is no blood flow in the rising capillary sprout. However, it is known that biomechanical forces resulting from blood flow play a key role in these processes. Here, we present evidence for the existence of the intussusception type of angiogenesis during the postnatal development of micro-vessel patterns in the intestinal villi of rats. This process is based on the high-level flattening of blood capillaries on the flat surfaces of intestinal villi, contacts among the opposite apical plasma membrane of endothelial cells in the area of inter-endothelial contacts, or the formation of bridges composed of blood leucocytes or local microthrombi. We identified factors that, in our opinion, ensure the splitting of the capillary lumen and the formation of two parallel vessels. These phenomena are in agreement with previously described features of intussusception angiogenesis.
在肠绒毛的出生后个体发生过程中,血管床生长和发育的机制仍然是一个谜。例如,根据目前的共识,在发芽型血管生成中,正在上升的毛细血管芽中没有血流。然而,众所周知,血流产生的生物力学力在这些过程中起着关键作用。在这里,我们提出了在大鼠肠绒毛中小血管模式的出生后发育过程中存在套叠型血管生成的证据。这个过程基于在肠绒毛的平坦表面上血液毛细血管的高水平扁平化,内皮细胞的相对顶端质膜在内皮细胞接触区域中的接触,或由血液白细胞或局部微血栓形成的桥梁的形成。我们确定了一些因素,我们认为这些因素确保了毛细血管腔的分裂和两个平行血管的形成。这些现象与以前描述的套叠血管生成的特征是一致的。