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冻干人血清白蛋白可提高间充质干细胞在矿化异体人骨移植物上的黏附和增殖。

Freeze-dried human serum albumin improves the adherence and proliferation of mesenchymal stem cells on mineralized human bone allografts.

机构信息

Tissue Engineering Laboratory, Department of Human Physiology and Clinical Experimental Research, Semmelweis University, 1094 Budapest Tu"zolt utcaó 37-47, Budapest 1094, Hungary.

出版信息

J Orthop Res. 2012 Mar;30(3):489-96. doi: 10.1002/jor.21527.

Abstract

Mineralized scaffolds are widely used as bone grafts with the assumption that bone marrow derived cells colonize and remodel them. This process is slow and often unreliable so we aimed to improve the biocompatibility of bone grafts by pre-seeding them with human mesenchymal stem cells from either bone marrow or dental pulp. Under standard cell culture conditions very low number of seeded cells remained on the surface of freeze-dried human or bovine bone graft or hydroxyapatite. Coating the scaffolds with fibronectin or collagen improved seeding efficiency but the cells failed to grow on the surface until the 18th day. In contrast, human albumin was a very potent facilitator of both seeding and proliferation on allografts which was further improved by culturing in a rotating bioreactor. Electron microscopy revealed that cells do not form a monolayer but span the pores, emphasizing the importance of pore size and microstructure. Albumin coated bone chips were able to unite a rat femoral segmental defect, while uncoated ones did not. Micro-hardness measurements confirmed that albumin coating does not influence the physical characteristics of the scaffold, so it is possible to introduce albumin coating into the manufacturing process of lyophilized bone allografts.

摘要

矿化支架被广泛用作骨移植物,假设骨髓来源的细胞定植并对其进行重塑。这个过程很慢,而且往往不可靠,所以我们旨在通过预先用骨髓或牙髓来源的人间质干细胞接种骨移植物来提高骨移植物的生物相容性。在标准细胞培养条件下,在冻干的人骨或牛骨移植物或羟磷灰石的表面上只有很少数量的接种细胞残留。用纤连蛋白或胶原蛋白涂覆支架可以提高接种效率,但细胞在第 18 天之前无法在表面生长。相比之下,人白蛋白是一种非常有效的同种异体移植物接种和增殖促进剂,在旋转生物反应器中培养可进一步提高。电子显微镜显示细胞不会形成单层,而是跨越孔,这强调了孔径和微观结构的重要性。白蛋白涂覆的骨片能够连接大鼠股骨节段性缺损,而未涂覆的则不能。微硬度测量证实白蛋白涂层不会影响支架的物理特性,因此可以将白蛋白涂层引入冻干同种异体骨移植物的制造过程中。

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