Yoshioka T, Fujimoto K, Tanaka O
Department of Anatomy, Shimane Medical University, Izumo, Japan.
Histochem J. 1990 Mar;22(3):134-42. doi: 10.1007/BF01003533.
Membrane-bound Ca2(+)-ATPase activity was localized cytochemically in the blood vessels of the spinal cord of rat embryos to obtain a better understanding of the membrane activities of vascular cells. The cytochemical method revealed a growth of the parenchymal vasculature. In the parenchyma, reaction product was dense over the entire plasma membrane of voluminous endothelial cells provided with large nuclei and enriched cytoplasmic organelles, suggesting that the endothelial cells may be of a vascular sprout. The parenchymal vessels with a wide lumen were frequently associated with pericytes, and the Ca2(+)-ATPase activity was diminished in intensity on the luminal surface of the flattened endothelial cells. On the other hand, the endothelium of extraparenchymal capillaries exhibited Ca2(+)-ATPase activity primarily on the luminal surface of the plasma membrane. Quercetin, a Ca2(+)-transporting ATPase inhibitor, considerably decreased the abluminal activity in the voluminous endothelial cells with slit-like vascular lumen and the luminal activity of functioning capillary endothelium as well. Thus, a dual activity of Ca2(+)-ATPase, postulating for the activities of Ca2(+)-transporting ATPase and ecto-ATPase, was closely correlated with the maturation processes of the capillary endothelium.
为了更好地了解血管细胞的膜活性,采用细胞化学方法对大鼠胚胎脊髓血管中的膜结合Ca2(+) - ATP酶活性进行定位。细胞化学方法显示实质脉管系统生长。在实质中,反应产物在具有大核和丰富细胞质细胞器的大量内皮细胞的整个质膜上密集,表明内皮细胞可能是血管芽。具有宽管腔的实质血管经常与周细胞相关,并且在扁平内皮细胞的腔表面上Ca2(+) - ATP酶活性强度降低。另一方面,实质外毛细血管的内皮主要在质膜的腔表面表现出Ca2(+) - ATP酶活性。槲皮素是一种Ca2(+) - 转运ATP酶抑制剂,它能显著降低具有狭缝状血管腔的大量内皮细胞的无腔活性以及功能性毛细血管内皮的腔活性。因此,推测为Ca2(+) - 转运ATP酶和胞外ATP酶活性的Ca2(+) - ATP酶的双重活性与毛细血管内皮的成熟过程密切相关。