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Fabricating PLGA sponge scaffold integrated with gelatin/hyaluronic acid for engineering cartilage

机译:制造明胶/透明质酸的PLGA海绵支架用于工程软骨

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The aim of present study is to characterize the physical properties of the PLGA-gelatin/HA composite scaffold and its ability for chondrocytes' attachment for cartilage tissue engineering applications. The 3D porous PLGA scaffold was fabricated by salt leaching method, and surface was integrated with gelatin and hyaluronic acid by crosslinked with 1-ethyl-3-(3-dimethyl aminopropyl) carbodiimide EDC solution. Water uptake ratio and element analysis were evaluated characterization of each scaffold. Porcine chondrocytes counting were used to calculate cell's attachment ratio on PLGA scaffold and PLGA-gelatin/HA scaffold post culturing at 4h and 24h, respectively. The results indicated that the attachment ratio of chondrocytes on PLGA-gelatin/HA scaffold is higher than on PLGA scaffold only. Furthermore, PLGA scaffold integrated with gelatin and HA not only increases the cell attachment, but also leads easy water and nutrient exchange into the scaffold. It may demonstrate that chondrocytes have better biocompatibility with PLGA-gelatin/HA scaffold for potential engineering cartilage.
机译:本研究的目的是表征PLGA-明胶/ HA复合支架的物理性质及其软骨细胞在软骨组织工程应用中的附着能力。通过盐浸法制备3D多孔PLGA支架,并通过与1-乙基-3-(3-二甲基氨基丙基)碳二亚胺EDC溶液交联,使表面与明胶和透明质酸结合在一起。评估每个支架的吸水率和元素分析。猪软骨细胞计数分别用于计算分别在4小时和24小时培养后的PLGA支架和PLGA-明胶/ HA支架上的细胞附着率。结果表明,在PLGA-明胶/ HA支架上软骨细胞的附着率高于仅在PLGA支架上。此外,与明胶和HA整合的PLGA支架不仅增加了细胞粘附,而且还易于水和养分交换进入支架。可能表明软骨细胞与PLGA-明胶/ HA支架具有更好的生物相容性,可用于潜在的工程软骨。

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