首页> 外文期刊>Journal of biomedical materials research, Part A >In vitro evaluation of hydroxyapatite-chitosan-gelatin composite membrane in guided tissue regeneration.
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In vitro evaluation of hydroxyapatite-chitosan-gelatin composite membrane in guided tissue regeneration.

机译:羟基磷灰石-壳聚糖-明胶复合膜在引导组织再生中的体外评估。

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摘要

Resorbable biomaterials have been investigated as barrier membranes to compartmentalize the periodontal defects while selectively guiding osteoprogenitor cell proliferation and bone tissue expansion. Hydroxyapatite (H), chitosan (C), and gelatin (G) have chemical similarity to the structural components of natural bone and their composites have been tested as bone scaffolds. Human mesenchymal stem or stromal cells (hMSCs) are inducible osteoprogenitors and are responsible for bone tissue repair and regeneration. In this study, the dynamic interactions of hMSC with composite hydroxyapatite-chitosan-gelatin (HCG) membranes were investigated. The association of HCG formed a biodegradable membrane with ~60 wt % water and an initial stiffness of ~20 kPa. Preconditioning in serum-containing media resulted in the formation nanopores in the HCG membranes and the increase of extracellular matrix (ECM) protein adsorption. Expression of integrin α(2)β(1) and α(5)β(1) coincided with ECM enrichment, suggesting the enhanced cell-ECM interactions. The elevated expression of bone marker proteins and genes in the HCG membranes suggests the progression of hMSC osteogenic differentiation in the absence of chemical induction. The results showed that the HCG membranes possess sufficient mechanical and structural properties to function as a barrier membrane, and that the adsorbed ECM proteins effectively functionalized the HCG membranes and promoted hMSC osteogenic differentiation.
机译:已经研究了可吸收生物材料作为屏障膜,以分隔牙周缺损,同时选择性地引导骨祖细胞增殖和骨组织扩张。羟基磷灰石(H),壳聚糖(C)和明胶(G)与天然骨骼的化学成分具有化学相似性,并且它们的复合材料已作为骨骼支架进行了测试。人间充质干细胞或基质细胞(hMSC)是可诱导的骨祖细胞,负责骨组织的修复和再生。在这项研究中,研究了hMSC与复合羟基磷灰石-壳聚糖-明胶(HCG)膜的动态相互作用。 HCG的缔合形成了具有〜60 wt%水和〜20 kPa初始刚度的可生物降解的膜。含血清培养基中的预处理导致HCG膜中形成纳米孔,并增加细胞外基质(ECM)蛋白的吸附。整合素α(2)β(1)和α(5)β(1)的表达与ECM富集相吻合,表明细胞-ECM相互作用增强。 HCG膜中骨标志物蛋白和基因的表达升高表明在没有化学诱导的情况下hMSC成骨分化的进程。结果表明,HCG膜具有足够的机械和结构特性,可以用作屏障膜,并且吸附的ECM蛋白可以有效地使HCG膜功能化,并促进hMSC成骨分化。

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