King Judy, Hamil Tray, Creighton Judy, Wu Songwei, Bhat Priya, McDonald Freda, Stevens Troy
Department of Pathology, Center for Lung Biology, The University of South Alabama College of Medicine, Mobile, AL 36617, USA.
Microvasc Res. 2004 Mar;67(2):139-51. doi: 10.1016/j.mvr.2003.11.006.
Lung macro- and microvascular endothelial cells exhibit unique functional attributes, including signal transduction and barrier properties. We therefore sought to identify structural and functional features of endothelial cells that discriminate their phenotypes in the fully differentiated lung. Rat lung macro- (PAEC) and microvascular (PMVEC) endothelial cells each exhibited expression of typical markers. Screening for reactivity with nine different lectins revealed that Glycine max and Griffonia (Bandeiraea) simplicifolia preferentially bound microvascular endothelia whereas Helix pomatia preferentially bound macrovascular endothelia. Apposition between the apical plasmalemma and endoplasmic reticulum was closer in PAECs (8 nm) than in PMVECs (87 nm), implicating this coupling distance in the larger store operated calcium entry responses observed in macrovascular cells. PMVECs exhibited a faster growth rate than did PAECs and, once a growth program was initiated by serum, PMVECs sustained growth in the absence of serum. Thus, PAECs and PMVECs differ in their structure and function, even under similar environmental conditions.
肺的大血管和微血管内皮细胞具有独特的功能特性,包括信号转导和屏障特性。因此,我们试图确定内皮细胞的结构和功能特征,以区分它们在完全分化的肺中的表型。大鼠肺大血管(PAEC)和微血管(PMVEC)内皮细胞均表现出典型标志物的表达。对与九种不同凝集素的反应性进行筛选发现,大豆凝集素和简叶相思豆凝集素优先结合微血管内皮,而苹果蜗牛凝集素优先结合大血管内皮。PAEC中顶端质膜与内质网之间的并置距离(8纳米)比PMVEC中(87纳米)更近,这表明这种偶联距离与在大血管细胞中观察到的更大的储存操纵性钙内流反应有关。PMVEC的生长速度比PAEC快,并且一旦由血清启动生长程序,PMVEC在无血清的情况下仍能持续生长。因此,即使在相似的环境条件下,PAEC和PMVEC在结构和功能上也存在差异。