Hendrickx Jan, Doggen Kris, Weinberg Ellen O, Van Tongelen Pascale, Fransen Paul, De Keulenaer Gilles W
Laboratory for Physiology, Department of Pharmacology, University of Antwerp, Antwerp, Belgium.
Physiol Genomics. 2004 Oct 4;19(2):198-206. doi: 10.1152/physiolgenomics.00143.2004. Epub 2004 Aug 10.
In addition to a number of common features, cardiovascular endothelium displays structural, functional, and genetic differences according to its position in the cardiovascular tree. In the heart, endocardial and cardiac microvascular endothelia (CMVE) interact directly with surrounding cardiomyocytes, whereas the endothelium within blood vessels interacts with smooth muscle cells. In this study, we investigated whether cardiac endothelial cells were distinct from aortic endothelial (AE) cells at the transcriptional level. Using Affymetrix microarray technology and subsequent real-time PCR analyses for validation, we identified sets of genes with marked preferential expression in cultured endocardial endothelium (EE) compared with cultured AE and vice versa. Among the genes preferentially expressed in EE, some were also expressed in cultured CMVE. Immunohistochemical staining of cardiac and aortic tissue revealed that the endothelial genetic diversity observed in culture reflects, in part, a physiological diversity existing in vivo. The identification of a set of genes preferentially expressed in EE provides new insights in the functional adaptations of this endothelial subtype to its intracavitary localization and to its role in the control of ventricular performance.
除了一些共同特征外,心血管内皮根据其在心血管系统中的位置表现出结构、功能和基因差异。在心脏中,心内膜和心脏微血管内皮(CMVE)直接与周围的心肌细胞相互作用,而血管内的内皮则与平滑肌细胞相互作用。在本研究中,我们调查了心脏内皮细胞在转录水平上是否与主动脉内皮(AE)细胞不同。使用Affymetrix微阵列技术及随后的实时PCR分析进行验证,我们鉴定出与培养的AE相比,在培养的心内膜内皮(EE)中有明显优先表达的基因集,反之亦然。在EE中优先表达的基因中,有些也在培养的CMVE中表达。心脏和主动脉组织的免疫组织化学染色显示,在培养中观察到的内皮基因多样性部分反映了体内存在的生理多样性。一组在EE中优先表达的基因的鉴定为这种内皮亚型对其心腔内定位及其在控制心室功能中的作用的功能适应性提供了新的见解。