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用于体外构建工程化软骨的可注射自交联 HA-SH/Col I 混合水凝胶。

Injectable self-crosslinking HA-SH/Col I blend hydrogels for in vitro construction of engineered cartilage.

机构信息

National Engineering Research Center for Biomaterials, Sichuan University, 29 Wangjiang Road, Chengdu, 610064, PR China.

State Key Laboratory of Oral Diseases, Department of Orthodontics, West China Hospital of Stomatology, Sichuan University, 14#, 3rd Section of Renmin South Road, Chengdu, 610041, PR China.

出版信息

Carbohydr Polym. 2018 Jun 15;190:57-66. doi: 10.1016/j.carbpol.2018.02.057. Epub 2018 Mar 21.

Abstract

The injectable self-crosslinking blend hydrogel by combination of collagen I and thiolated hyaluronic acid could alleviate collagen I contraction in vitro and overcome weak cell adhesive sites of hyaluronic acid. Five groups of injectable hydrogels with different ratios were prepared to investigate their gelation time, injection force, mechanical properties, swelling capacity and disintegration performance. These results indicated that ColHA-SH hydrogel achieved the optimal controlled and injectable effect, the gelation time was just ten seconds with injection force at 3.5 N, and the storage modulus of hydrogel could reach 11 kPa with frequency at 10 Hz. Furthermore, the phenotype maintaining, biocompatibility and chondrocytes proliferation were administrated by CLSM, SEM, histological staining, immuohistochemical staining, MTT test and glycoaminoglycans quantification. Similarly, the ColHA-SH blend hydrogel encapsulated chondrocytes presented most excellent proliferation potential, phenotype maintaining, biocompatibility and convenient operational characteristics. These findings might approach the underlying clinical application of blend hydrogel in cartilage repair.

摘要

将 I 型胶原和巯基化透明质酸结合而成的可注射自交联混合水凝胶,可减轻体外 I 型胶原收缩,并克服透明质酸黏附力弱的问题。制备了五组不同比例的可注射水凝胶,以研究其凝胶时间、注射力、机械性能、溶胀能力和崩解性能。结果表明,ColHA-SH 水凝胶达到了最佳的可控和可注射效果,凝胶时间仅为 10 秒,注射力为 3.5N,水凝胶的储能模量在 10Hz 时可达 11kPa。此外,通过 CLSM、SEM、组织学染色、免疫组织化学染色、MTT 试验和糖胺聚糖定量研究了 ColHA-SH 混合水凝胶的表型维持、生物相容性和软骨细胞增殖情况。同样,ColHA-SH 混合水凝胶包被的软骨细胞表现出了最佳的增殖潜力、表型维持、生物相容性和操作简便的特性。这些发现可能接近混合水凝胶在软骨修复中的潜在临床应用。

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