Chan-Park Mary B, Shen Jin Ye, Cao Ye, Xiong Yun, Liu Yunxiao, Rayatpisheh Shahrzad, Kang Gavin Chun-Wei, Greisler Howard P
School of Chemical and Biomedical Engineering, Nanyang Technological University, 50 Nanyang Ave, Singapore 639798, Singapore.
J Biomed Mater Res A. 2009 Mar 15;88(4):1104-21. doi: 10.1002/jbm.a.32318.
Small-diameter blood vessel substitutes are urgently needed for patients requiring replacements of their coronary and below-the-knee vessels and for better arteriovenous dialysis shunts. Circulatory diseases, especially those arising from atherosclerosis, are the predominant cause of mortality and morbidity in the developed world. Current therapies include the use of autologous vessels or synthetic materials as vessel replacements. The limited availability of healthy vessels for use as bypass grafts and the failure of purely synthetic materials in small-diameter sites necessitate the development of a biological substitute. Tissue engineering is such an approach and has achieved promising results, but reconstruction of a functional vascular tunica media, with circumferentially oriented contractile smooth muscle cells (SMCs) and extracellular matrix, appropriate mechanical properties, and vasoactivity has yet to be demonstrated. This review focuses on strategies to effect the switch of SMC phenotype from synthetic to contractile, which is regarded as crucial for the engineering of a functional vascular media. The synthetic SMC phenotype is desired initially for cell proliferation and tissue remodeling, but the contractile phenotype is then necessary for sufficient vasoactivity and inhibition of neointima formation. The factors governing the switch to a more contractile phenotype with in vitro culture are reviewed.
对于需要替换冠状动脉和膝下血管以及更好的动静脉透析分流器的患者来说,急需小直径血管替代品。循环系统疾病,尤其是由动脉粥样硬化引起的疾病,是发达国家死亡和发病的主要原因。目前的治疗方法包括使用自体血管或合成材料作为血管替代品。用作旁路移植物的健康血管供应有限,以及纯合成材料在小直径部位的失效,使得开发一种生物替代品成为必要。组织工程就是这样一种方法,并且已经取得了有希望的结果,但是具有周向排列的收缩性平滑肌细胞(SMC)和细胞外基质、适当的机械性能和血管活性的功能性血管中膜的重建尚未得到证实。本综述重点关注影响SMC表型从合成型转变为收缩型的策略,这被认为是功能性血管中膜工程的关键。最初需要合成型SMC表型以促进细胞增殖和组织重塑,但随后收缩型表型对于足够的血管活性和抑制内膜形成是必要的。本文综述了在体外培养中控制转变为更具收缩性表型的因素。