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藻酸盐、透明质酸盐及透明质酸盐衍生物生物材料对非关节软骨细胞外基质合成的影响。

The effect of alginate, hyaluronate and hyaluronate derivatives biomaterials on synthesis of non-articular chondrocyte extracellular matrix.

作者信息

Gerard C, Catuogno C, Amargier-Huin C, Grossin L, Hubert P, Gillet P, Netter P, Dellacherie E, Payan E

机构信息

Laboratoire de Pharmacologie, UMR 7561 CNRS UHP, Faculté de Médecine, 54505, Vandoeuvre-les-Nancy, France.

出版信息

J Mater Sci Mater Med. 2005 Jun;16(6):541-51. doi: 10.1007/s10856-005-0530-3.

Abstract

Cartilage engineering consists of re-constructing functional cartilage by seeding chondrocytes in suitable biomaterials in vitro. The characteristics of neocartilage differ upon the type of biomaterial chosen. This study aims at determining the appropriate scaffold material for articular cartilage reconstruction using non articular chondrocytes harvested from rat sternum. For this purpose, the use of polysaccharide hydrogels such as alginate (AA) and hyaluronic acid (HA) was investigated. Several ratios of AA/HA were used as well as three derivatives obtained by chemical modification of HA (HA-C18, HA-C12(2.3), HA-C12(2.5)-TEG0.5). Sternal chondrocytes were successfully cultured in 3D alginate and alginate/HA scaffolds. HA retention in alginate beads was found to be higher in beads seeded with cells than in beads without cells. HA-C18 improved HA retention in beads but inhibited the chondrocyte synthesis process. Cell proliferation and metabolism were enhanced in all biomaterials when beads were mechanically agitated. Preliminary results have shown that the chondrocyte neo-synthesised matrix had acquired articular characteristics after 21 days culture.

摘要

软骨工程包括通过在体外将软骨细胞接种到合适的生物材料中来重建功能性软骨。新软骨的特性因所选生物材料的类型而异。本研究旨在使用从大鼠胸骨采集的非关节软骨细胞确定用于关节软骨重建的合适支架材料。为此,研究了多糖水凝胶如藻酸盐(AA)和透明质酸(HA)的使用。使用了几种AA/HA比例以及通过HA化学修饰获得的三种衍生物(HA-C18、HA-C12(2.3)、HA-C12(2.5)-TEG0.5)。胸骨软骨细胞成功地在3D藻酸盐和藻酸盐/HA支架中培养。发现接种细胞的珠子中HA在藻酸盐珠中的保留率高于未接种细胞的珠子。HA-C18改善了HA在珠子中的保留,但抑制了软骨细胞合成过程。当珠子进行机械搅拌时,所有生物材料中的细胞增殖和代谢均增强。初步结果表明,软骨细胞新合成的基质在培养21天后已获得关节特性。

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