Narmoneva Daria A, Vukmirovic Rada, Davis Michael E, Kamm Roger D, Lee Richard T
Cardiovascular Division, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, USA.
Circulation. 2004 Aug 24;110(8):962-8. doi: 10.1161/01.CIR.0000140667.37070.07. Epub 2004 Aug 9.
Endothelial-cardiac myocyte (CM) interactions play a key role in regulating cardiac function, but the role of these interactions in CM survival is unknown. This study tested the hypothesis that endothelial cells (ECs) promote CM survival and enhance spatial organization in a 3-dimensional configuration.
Microvascular ECs and neonatal CMs were seeded on peptide hydrogels in 1 of 3 experimental configurations: CMs alone, CMs mixed with ECs (coculture), or CMs seeded on preformed EC networks (prevascularized). Capillary-like networks formed by ECs promoted marked CM reorganization along the EC structures, in contrast to limited organization of CMs cultured alone. The presence of ECs markedly inhibited CM apoptosis and necrosis at all time points. In addition, CMs on preformed EC networks resulted in significantly less CM apoptosis and necrosis compared with simultaneous EC-CM seeding (P<0.01, ANOVA). Furthermore, ECs promoted synchronized contraction of CMs as well as connexin 43 expression.
These results provide direct evidence for a novel role of endothelium in survival and organization of nearby CMs. Successful strategies for cardiac regeneration may therefore depend on establishing functional CM-endothelium interactions.
内皮细胞与心肌细胞(CM)的相互作用在调节心脏功能中起关键作用,但这些相互作用在CM存活中的作用尚不清楚。本研究检验了以下假设:内皮细胞(EC)在三维结构中促进CM存活并增强空间组织。
微血管EC和新生CM以三种实验配置之一接种于肽水凝胶上:单独的CM、与EC混合的CM(共培养)或接种于预先形成的EC网络上的CM(预血管化)。与单独培养的CM有限的组织化相比,EC形成的毛细血管样网络促进了CM沿EC结构的显著重组。在所有时间点,EC的存在均显著抑制CM凋亡和坏死。此外,与同时进行EC-CM接种相比,接种于预先形成的EC网络上的CM导致的CM凋亡和坏死显著减少(P<0.01,方差分析)。此外,EC促进了CM的同步收缩以及连接蛋白43的表达。
这些结果为内皮在附近CM存活和组织化中的新作用提供了直接证据。因此,心脏再生的成功策略可能取决于建立功能性的CM-内皮相互作用。