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不同聚对苯二甲酸乙二酯纤维增强胶原海绵中大鼠间充质干细胞的增殖及成骨分化增强

Enhanced proliferation and osteogenic differentiation of rat mesenchymal stem cells in collagen sponge reinforced with different poly(ethylene terephthalate) fibers.

作者信息

Takamoto Tomoaki, Hiraoka Yosuke, Tabata Yasuhiko

机构信息

Department of Biomaterials, Field of Tissue Engineering, Institute for Frontier Medical Sciences, Kyoto University, 53 Kawara-cho, Shogoin, Sakyo-ku, Kyoto, 606-8507, Japan.

出版信息

J Biomater Sci Polym Ed. 2007;18(7):865-81. doi: 10.1163/156856207781367738.

DOI:10.1163/156856207781367738
PMID:17688745
Abstract

The objective of this study was to investigate the feasibility of collagen sponges mechanically reinforced by the incorporation of poly(ethylene terephthalate) (PET) fibers in stem cell culture. A collagen solution with homogeneously dispersed PET fibers was freeze-dried, followed by dehydrothermal cross-linking to obtain the collagen sponge incorporating PET fibers. By scanning electron microscopy observation, the collagen sponges exhibited isotropic and interconnected pore structures with an average size of 200 microm, irrespective of PET fiber incorporation. As expected, PET fibers incorporation significantly enhanced the compression strength of collagen sponge. When used for rat mesenchymal stem cells (MSC), the collagen sponge incorporating PET fibers was superior to the original collagen sponge without PET fibers incorporation in terms of the initial attachment, proliferation and osteogenic differentiation of cells, irrespective of the amount and diameter of fibers incorporated. The shrinkage of sponges during cell culture was significantly suppressed by the fiber incorporation. It is possible that the shrinkage suppression maintains the three-dimensional inner pore structure of collagen sponges without impairing the cell compatibility, resulting in the superior MSC attachment and the subsequent osteogenic differentiation in the sponge incorporating PET fiber.

摘要

本研究的目的是探讨在干细胞培养中加入聚对苯二甲酸乙二酯(PET)纤维对胶原海绵进行机械增强的可行性。将含有均匀分散PET纤维的胶原溶液冷冻干燥,然后进行脱水热交联,以获得含有PET纤维的胶原海绵。通过扫描电子显微镜观察,无论是否加入PET纤维,胶原海绵均呈现各向同性且相互连通的孔隙结构,平均孔径为200微米。正如预期的那样,加入PET纤维显著提高了胶原海绵的抗压强度。当用于大鼠间充质干细胞(MSC)时,无论所加入纤维的数量和直径如何,含有PET纤维的胶原海绵在细胞的初始附着、增殖和成骨分化方面均优于未加入PET纤维的原始胶原海绵。纤维的加入显著抑制了细胞培养过程中海绵的收缩。收缩抑制可能在不损害细胞相容性的情况下维持胶原海绵的三维内部孔隙结构,从而使含有PET纤维的海绵具有优异的MSC附着及随后的成骨分化能力。

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