首页> 外文期刊>Biomaterials >THREE-DIMENSIONAL COMPOSITE OF DEMINERALIZED BONE POWDER AND COLLAGEN FOR IN VITRO ANALYSIS OF CHONDROINDUCTION OF HUMAN DERMAL FIBROBLASTS
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THREE-DIMENSIONAL COMPOSITE OF DEMINERALIZED BONE POWDER AND COLLAGEN FOR IN VITRO ANALYSIS OF CHONDROINDUCTION OF HUMAN DERMAL FIBROBLASTS

机译:异质骨粉和胶原蛋白的三维复合材料体外分析人真皮成纤维细胞的软骨诱导

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摘要

Implantation of demineralized bone powder (DBP) in muscle or connective tissue stimulates chondrogenesis followed by ectopic bone formation, in this way inducing the differentiation of endochondral bone. A new 3-dimensional in vitro composite sponge was designed to duplicate the packing density of in vivo DBP implants. The composite device, which consists of DBP packed between two layers of a porous collagen lattice, was used to assess the chondroblastic differentiation of human dermal fibroblasts. Important design considerations for this device were biocompatibility, rigidity and ability of cells to penetrate. In this study, collagen concentration and source, irradiation, and lyophilization conditions were varied in fabrication. Human dermal fibroblasts were seeded onto the composite sponge, migrated through the collagen lattice into the packet of DBP, and deposited a metachromatic extracellular matrix amongst the particles of DBP. In contrast, cells cultured in collagen sponges or in composite sponges with inactivated guanidine-extracted DBP did not secrete metachromatic matrix. This new in vitro system will be valuable in defining the mechanism of differentiation by osteoinductive materials and in evaluating the influence of other extracellular components and soluble factors on skeletal differentiation. (C) 1996 Elsevier Science Limited. [References: 29]
机译:将去矿质骨粉(DBP)植入肌肉或结缔组织中会刺激软骨形成,然后异位骨形成,从而诱导软骨内骨的分化。设计了一种新的三维体外复合海绵,以复制体内DBP植入物的堆积密度。该复合装置由填充在两层多孔胶原蛋白格子之间的DBP组成,用于评估人皮肤成纤维细胞的软骨细胞分化。该设备的重要设计考虑因素是生物相容性,刚度和细胞穿透能力。在这项研究中,胶原蛋白的浓度和来源,辐照和冻干条件在制造过程中有所不同。将人类皮肤成纤维细胞接种到复合海绵上,通过胶原蛋白晶格迁移到DBP包中,并在DBP颗粒之间沉积变色的细胞外基质。相反,用灭活的胍提取的DBP在胶原海绵或复合海绵中培养的细胞不会分泌异色基质。这种新的体外系统在确定骨诱导材料的分化机制以及评估其他细胞外成分和可溶性因子对骨骼分化的影响方面将具有重要价值。 (C)1996 Elsevier Science Limited。 [参考:29]

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