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无支架、基于人间充质干细胞的组织工程血管

Scaffold-free, Human Mesenchymal Stem Cell-Based Tissue Engineered Blood Vessels.

作者信息

Jung Youngmee, Ji HaYeun, Chen Zaozao, Fai Chan Hon, Atchison Leigh, Klitzman Bruce, Truskey George, Leong Kam W

机构信息

Center for Biomaterials, Biomedical Research Institute, Korea Institute of Science and Technology, Seoul 130-650, Korea.

Department of Biomedical Engineering, Duke University, Durham, NC 27708, USA.

出版信息

Sci Rep. 2015 Oct 12;5:15116. doi: 10.1038/srep15116.

Abstract

Tissue-engineered blood vessels (TEBV) can serve as vascular grafts and may also play an important role in the development of organs-on-a-chip. Most TEBV construction involves scaffolding with biomaterials such as collagen gel or electrospun fibrous mesh. Hypothesizing that a scaffold-free TEBV may be advantageous, we constructed a tubular structure (1 mm i.d.) from aligned human mesenchymal cell sheets (hMSC) as the wall and human endothelial progenitor cell (hEPC) coating as the lumen. The burst pressure of the scaffold-free TEBV was above 200 mmHg after three weeks of sequential culture in a rotating wall bioreactor and perfusion at 6.8 dynes/cm(2). The interwoven organization of the cell layers and extensive extracellular matrix (ECM) formation of the hMSC-based TEBV resembled that of native blood vessels. The TEBV exhibited flow-mediated vasodilation, vasoconstriction after exposure to 1 μM phenylephrine and released nitric oxide in a manner similar to that of porcine femoral vein. HL-60 cells attached to the TEBV lumen after TNF-α activation to suggest a functional endothelium. This study demonstrates the potential of a hEPC endothelialized hMSC-based TEBV for drug screening.

摘要

组织工程血管(TEBV)可作为血管移植物,在芯片器官的发展中也可能发挥重要作用。大多数TEBV构建涉及使用生物材料作为支架,如胶原凝胶或电纺纤维网。假设无支架的TEBV可能具有优势,我们构建了一种管状结构(内径1毫米),其管壁由排列的人间充质细胞片(hMSC)构成,管腔由人内皮祖细胞(hEPC)包被。在旋转壁生物反应器中连续培养三周并以6.8达因/平方厘米的压力灌注后,无支架TEBV的爆破压力超过200毫米汞柱。基于hMSC的TEBV的细胞层交织组织和广泛的细胞外基质(ECM)形成类似于天然血管。该TEBV表现出血流介导的血管舒张、暴露于1微摩尔去氧肾上腺素后的血管收缩,并且以类似于猪股静脉的方式释放一氧化氮。TNF-α激活后,HL-60细胞附着于TEBV管腔,表明内皮具有功能。本研究证明了基于hEPC内皮化hMSC的TEBV用于药物筛选的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1684/4600980/1631e94cb9b1/srep15116-f1.jpg

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