Pankajakshan Divya, Krishnan Lissy K
Thrombosis Research Unit, Biomedical Technology Wing, Sree Chitra Tirunal Institute for Medical Sciences and Technology, Trivandrum, India.
Artif Organs. 2009 Jan;33(1):16-25. doi: 10.1111/j.1525-1594.2008.00670.x.
Tissue-engineered blood vessel substitutes should closely resemble native vessels in terms of structure, composition, mechanical properties, and function. Successful cardiovascular tissue engineering requires optimization of in vitro culture environment that would produce functional constructs. The extracellular matrix (ECM) protein elastin plays an essential role in the cardiovascular system to render elasticity to blood vessel wall, whereas collagen is responsible for providing mechanical strength. The objective of this study was to understand the significance of various ECM components on endothelial cell (EC) growth and tissue generation. We demonstrate that, even though fibrin is a good matrix for EC growth, fibronectin is the crucial component of the fibrin matrix that enhances EC adhesion, spreading, and proliferation. Vascular EC growth factor is known to influence in vitro growth of EC, but, so far, ECM deposition in in vitro culture has not been reported. In this study, it is shown that incorporation of a mixture of hypothalamus-derived angiogenic growth factors with fibrin matrix enhances synthesis and deposition of insoluble elastin and collagen in the matrix, within 10 days of in vitro culture. The results suggest that a carefully engineered fibrin composite matrix may support EC growth, survival, and remodeling of ECM in vitro and impart optimum properties to the construct for resisting the shear stress at the time of implantation.
组织工程血管替代物在结构、组成、力学性能和功能方面应与天然血管极为相似。成功的心血管组织工程需要优化体外培养环境,以产生具有功能的构建体。细胞外基质(ECM)蛋白弹性蛋白在心血管系统中起着至关重要的作用,使血管壁具有弹性,而胶原蛋白则负责提供机械强度。本研究的目的是了解各种ECM成分对内皮细胞(EC)生长和组织生成的重要性。我们证明,尽管纤维蛋白是EC生长的良好基质,但纤连蛋白是纤维蛋白基质的关键成分,可增强EC的粘附、铺展和增殖。血管内皮生长因子已知会影响EC的体外生长,但迄今为止,尚未报道其在体外培养中的ECM沉积情况。在本研究中,结果表明,在体外培养10天内,将下丘脑衍生的血管生成生长因子混合物与纤维蛋白基质结合,可增强基质中不溶性弹性蛋白和胶原蛋白的合成与沉积。结果表明,精心设计的纤维蛋白复合基质可在体外支持EC生长、存活和ECM重塑,并赋予构建体最佳性能,以抵抗植入时的剪切应力。