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    张泽人, 李亚民, 刘天舒, 蒋佳, 赵金忠, 李玉林, 刘昌胜. 锂藻土基可注射材料制备及其体外成骨分化[J]. 功能高分子学报, 2021, 34(1): 80-88. doi: 10.14133/j.cnki.1008-9357.20200801001
    引用本文: 张泽人, 李亚民, 刘天舒, 蒋佳, 赵金忠, 李玉林, 刘昌胜. 锂藻土基可注射材料制备及其体外成骨分化[J]. 功能高分子学报, 2021, 34(1): 80-88. doi: 10.14133/j.cnki.1008-9357.20200801001
    ZHANG Zeren, LI Yamin, LIU Tianshu, JIANG Jia, ZHAO Jinzhong, LI Yulin, LIU Changsheng. Development of Injectable Laponite-Based Materials with Promoted Osteogenic Differentiation Capacity[J]. Journal of Functional Polymers, 2021, 34(1): 80-88. doi: 10.14133/j.cnki.1008-9357.20200801001
    Citation: ZHANG Zeren, LI Yamin, LIU Tianshu, JIANG Jia, ZHAO Jinzhong, LI Yulin, LIU Changsheng. Development of Injectable Laponite-Based Materials with Promoted Osteogenic Differentiation Capacity[J]. Journal of Functional Polymers, 2021, 34(1): 80-88. doi: 10.14133/j.cnki.1008-9357.20200801001

    锂藻土基可注射材料制备及其体外成骨分化

    Development of Injectable Laponite-Based Materials with Promoted Osteogenic Differentiation Capacity

    • 摘要: 根据骨仿生原理,将具有类骨组成的羟基磷灰石(HAp)原位掺杂到具有成骨诱导活性的纳米盘结构锂藻土(LP)基体中,利用锂藻土良好的水溶液分散性及原位成胶能力,通过一步法简单快速地制备了一种具有触变性的高活性钙磷复合可注射生物材料。与纯锂藻土可注射材料(LIM)相比,锂藻土羟基磷灰石可注射复合材料(LHIM)中的羟基磷灰石分散均匀,羟基磷灰石的引入增大了锂藻土凝胶表面的粗糙度,提高了兔骨髓间充质干细胞在锂藻土凝胶表面的黏附、迁移、增殖以及成骨分化能力。

       

      Abstract: In this study, rod like hydroxyapatite (HAp) with a length of 25—35 nm and a width of 10—20 nm was synthesized by chemical precipitation method. Then the HAp was doped in situ into the nano-disk osteogenic Laponite (LP) matrix. A type of injectable composite with high bioactivity was prepared by a single-step ultrasonic mixing method by leveraging Laponite’s good water solubility and in situ gelation property. The prepared gel material showed good injectability and thixotropic properties. A comparative study was conducted between pure LP injectable material (LIM) and LP/HAp injectable material (LHIM). The results of X-Ray Energy Spectrum showed that the HAp in the LHIM was well dispersed. The results of Scanning Electron Microscope (SEM) showed that the introduction of HAp increased the surface roughness of LHIM compared with LIM. The results of rabbit bone marrow mesenchymal stem cells (rBMSCs) in vitro showed that both LHIM and LIM had good cytocompatibility, and more rBMSCs adhered to the surface of LHIM in one day. The results of transwell showed that compared with LIM, LHIM could further improve the migration ability of rBMSCs. The results of osteogenic activity in vitro showed that LHIM can increase rBMSCs alkaline phosphatase (ALP), Runt-related transcription factor 2 (Runx2) and osteocalcin (OCN) activity. LHIM has the advantages of simple preparation, rapid gelation, no cross-linking agent, easy storage and good osteogenic activity. Therefore, LHIM is expected to be a bone repair material for clinical use. The current study provides a potential therapeutic tool for bone repair and regeneration.

       

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