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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Injectable PNIPAM/Hyaluronic acid hydrogels containing multipurpose modified particles for cartilage tissue engineering: Synthesis, characterization, drug release and cell culture study
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Injectable PNIPAM/Hyaluronic acid hydrogels containing multipurpose modified particles for cartilage tissue engineering: Synthesis, characterization, drug release and cell culture study

机译:含有多发性改性颗粒的可注射肺脂/透明质酸水凝胶用于软骨组织工程:合成,表征,药物释放和细胞培养研究

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Novel injectable thermosensitive PNIPAM/hyaluronic acid hydrogels containing various amounts of chitosan-g-acrylic acid coated PLGA (ACH-PLGA) micro/nanoparticles were synthesized and designed to facilitate the regeneration of cartilage tissue. The ACH-PLGA particles were used in the hydrogels to play a triple role: first, the allyl groups on the chitosan-g-acrylic acid shell act as crosslinkers for PNIPAM and improved the mechanical properties of the hydrogel to mimic the natural cartilage tissue. Second, PLGA core acts as a carrier for the controlled release of chondrogenic small molecule melatonin. Third, they could reduce the syneresis of the thermosensitive hydrogel during gelation. The optimum hydrogel with the minimum syneresis and the maximum compression modulus was chosen for further evaluations. This hydrogel showed a great integration with the natural cartilage during the adhesion test, and also, presented an interconnected porous structure in scanning electron microscopy images. Eventually, to evaluate the cytotoxicity, mesenchymal stem cells were encapsulated inside the hydrogel. MTT and Live/Dead assay showed that the hydrogel improved the cells growth and proliferation as compared to the tissue culture polystyrene. Histological study of glycosaminoglycan (GAG) showed that melatonin treatment has the ability to increase the GAG synthesis. Overall, due to the improved mechanical properties, low syneresis, the ability of sustained drug release and also high bioactivity, this injectable hydrogel is a promising material system for cartilage tissue engineering. (c) 2019 Elsevier B.V. All rights reserved.
机译:合成含有各种量的壳聚糖-G-丙烯酸涂覆PLGA(ACH-PLGA)微/纳米颗粒的新型可注射热敏肺蛋白/透明质酸水凝胶,并设计用于促进软骨组织的再生。在水凝胶中使用ACH-PLGA颗粒以发挥三重作用:首先,壳聚糖-G-丙烯酸壳上的烯丙基作为丙基普米的交联剂,改善了水凝胶的机械性能以模拟天然软骨组织。其次,PLGA核心作为受控制释放的软骨内小分子褪黑素的载体。第三,它们可以减少热敏水凝胶在凝胶化过程中的共同作用。选择具有最小共同作用和最大压缩模量的最佳水凝胶用于进一步评价。该水凝胶在粘附试验期间与天然软骨相结合,并且还呈现了扫描电子显微镜图像中的相互连接的多孔结构。最终,为了评估细胞毒性,间充质干细胞包封在水凝胶内。 MTT和Live / Dead测定表明,与组织培养聚苯乙烯相比,水凝胶改善了细胞生长和增殖。糖胺聚糖(GAG)的组织学研究表明,褪黑素处理具有增加堵嘴合成的能力。总的来说,由于机械性能改善,低营养性,持续的药物释放能力和高生物活性,这种可注射水凝胶是软骨组织工程的有希望的材料系统。 (c)2019 Elsevier B.v.保留所有权利。

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