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脂肪干细胞的剪应力处理以减少血小板对工程化血管移植物的黏附。

Shear Conditioning of Adipose Stem Cells for Reduced Platelet Binding to Engineered Vascular Grafts.

机构信息

1 Department of Biomedical Engineering, University of Minnesota , Minneapolis, Minnesota.

2 Department of Chemical Engineering and Materials Science, University of Minnesota , Minneapolis, Minnesota.

出版信息

Tissue Eng Part A. 2018 Aug;24(15-16):1242-1250. doi: 10.1089/ten.TEA.2017.0475. Epub 2018 Mar 20.

DOI:10.1089/ten.TEA.2017.0475
PMID:29448915
Abstract

Conferring antithrombogenicity to tissue-engineered vascular grafts remains a major challenge, especially for urgent bypass grafting that excludes approaches based on expanding autologous endothelial cells (ECs) that requires weeks of cell culture. Adipose-derived stem cells (ASCs) are available from most patients in sufficient number for coronary bypass graft seeding and may be effective as allogeneic cells. We thus compared the adhesion and platelet binding of human ASCs that were shear conditioned with constant and pulsatile shear stress (SS) after seeding the cells on a biologically engineered matrix suitable for arterial grafts. A monolayer of cells was maintained up to 15 dyn/cm constant SS and up to 15 dyn/cm mean pulsatile SS for 6 days of shear flow. Platelet binding was reduced from 83% to 6% of surface area and nitric oxide production was increased 23-fold with 7.5-15 dyn/cm constant SS, but not pulsatile SS, relative to cells cultured statically on the matrix for 6 days. The reduction in platelet binding varied from no reduction to maximum reduction over a constant shear range of ∼2 to 4 dyn/cm, respectively. Collectively, the study supports the potential use of ASCs to seed the luminal surface of a vascular graft made from this biologically engineered matrix to confer an antithrombogenic surface during the development of an endothelium from the seeded cells or the surrounding blood and tissue.

摘要

赋予组织工程血管移植物抗血栓形成能力仍然是一个主要挑战,特别是对于紧急旁路移植术,这种方法排除了基于扩展自体内皮细胞 (EC) 的方法,而这需要数周的细胞培养。脂肪来源的干细胞 (ASC) 在大多数患者中数量充足,可用于冠状动脉旁路移植术的种子细胞,并且可以作为同种异体细胞有效。因此,我们比较了在生物工程基质上接种细胞后,经恒剪切和脉动剪切(SS)剪切条件处理的人 ASC 的粘附和血小板结合情况,该基质适合用于动脉移植物。单层细胞在高达 15 dyn/cm 的恒剪切力和高达 15 dyn/cm 的平均脉动剪切力下维持 6 天的剪切流。与在基质上静态培养 6 天的细胞相比,血小板结合从表面积的 83%减少到 6%,一氧化氮的产生增加了 23 倍,而恒剪切力为 7.5-15 dyn/cm 的 SS 不会增加血小板结合,而脉动 SS 不会增加血小板结合。血小板结合的减少范围从没有减少到最大减少,分别对应于恒剪切范围约为 2 到 4 dyn/cm。总的来说,这项研究支持使用 ASC 来播种这种生物工程基质制成的血管移植物的内腔表面,以在种子细胞或周围血液和组织形成内皮期间赋予抗血栓形成表面。

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