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用于脂肪组织工程的仿生可注射 HUVEC-脂肪细胞/胶原/海藻酸钠微球共培养物。

Biomimetic injectable HUVEC-adipocytes/collagen/alginate microsphere co-cultures for adipose tissue engineering.

机构信息

Department of Mechanical Engineering, Tsinghua University, Beijing 100084, People's Republic of China.

出版信息

Biotechnol Bioeng. 2013 May;110(5):1430-43. doi: 10.1002/bit.24784. Epub 2012 Dec 27.

Abstract

Engineering adipose tissue that has the ability to engraft and establish a vascular supply is a laudable goal that has broad clinical relevance, particularly for tissue reconstruction. In this article, we developed novel microtissues from surface-coated adipocyte/collagen/alginate microspheres and human umbilical vein endothelial cells (HUVECs) co-cultures that resembled the components and structure of natural adipose tissue. Firstly, collagen/alginate hydrogel microspheres embedded with viable adipocytes were obtained to mimic fat lobules. Secondly, collagen fibrils were allowed to self-assemble on the surface of the microspheres to mimic collagen fibrils surrounding the fat lobules in the natural adipose tissue and facilitate HUVEC attachment and co-cultures formation. Thirdly, the channels formed by the gap among the microspheres served as the room for in vitro prevascularization and in vivo blood vessel development. The endothelial cell layer outside the microspheres was a starting point of rapid vascular ingrowth. Adipose tissue formation was analyzed for 12 weeks at 4-week intervals by subcutaneous injection into the head of node mice. The vasculature in the regenerated tissue showed functional anastomosis with host blood vessels. Long-term stability of volume and weight of the injection was observed, indicating that the vasculature formed within the constructs benefited the formation, maturity, and maintenance of adipose tissue. This study provides a microsurgical method for adipose regeneration and construction of biomimetic model for drug screening studies.

摘要

工程化具有植入和建立血管供应能力的脂肪组织是一个值得称赞的目标,具有广泛的临床相关性,特别是在组织重建方面。在本文中,我们从表面涂覆的脂肪细胞/胶原/藻酸盐微球和人脐静脉内皮细胞(HUVEC)共培养物中开发了新型微组织,这些微组织类似于天然脂肪组织的组成和结构。首先,获得了嵌入有活力脂肪细胞的胶原/藻酸盐水凝胶微球,以模拟脂肪小叶。其次,允许胶原纤维在微球表面自组装,以模拟天然脂肪组织中围绕脂肪小叶的胶原纤维,并促进 HUVEC 附着和共培养物形成。第三,微球之间的间隙形成的通道可作为体外血管形成和体内血管发育的空间。微球外的内皮细胞层是快速血管内生长的起点。通过将微球皮下注射到节点小鼠头部,每隔 4 周分析 12 周的脂肪组织形成情况。再生组织中的血管显示出与宿主血管的功能吻合。观察到注射体积和重量的长期稳定性,表明构建体内形成的血管有利于脂肪组织的形成、成熟和维持。这项研究为脂肪再生和仿生模型的构建提供了一种显微外科方法,可用于药物筛选研究。

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