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使用负载胰岛素的纳米羟基磷灰石/胶原蛋白/聚乳酸-羟基乙酸共聚物复合支架增强骨再生。

Enhanced bone regeneration using an insulin-loaded nano-hydroxyapatite/collagen/PLGA composite scaffold.

作者信息

Wang Xing, Zhang Guilan, Qi Feng, Cheng Yongfeng, Lu Xuguang, Wang Lu, Zhao Jing, Zhao Bin

机构信息

Shanxi Medical University Stomatological Hospital, Taiyuan.

Department of Stomatology, Nanfang Hospital, Southern Medical University, Guangzhou, China.

出版信息

Int J Nanomedicine. 2017 Dec 21;13:117-127. doi: 10.2147/IJN.S150818. eCollection 2018.

Abstract

Insulin is widely considered as a classical hormone and drug in maintaining energy and glucose homeostasis. Recently, insulin has been increasingly recognized as an indispensable factor for osteogenesis and bone turnover, but its applications in bone regeneration have been restricted because of the short periods of activity and uncontrolled release. In this study, we incorporated insulin-loaded poly lactic-co-glycolic-acid (PLGA) nanospheres into nano-hydroxyapatite/collagen (nHAC) scaffolds and investigated the bioactivity of the composite scaffolds in vitro and in vivo. Bioactive insulin was successfully released from the nanospheres within the scaffold, and the release kinetics of insulin could be efficiently controlled by uniform-sized nanospheres. The physical characterizations of the composite scaffolds demonstrated that incorporation of nanospheres in nHAC scaffolds using this method did not significantly change the porosity, pore diameters, and compressive strengths of nHAC. In vitro, the insulin-loaded nHAC/PLGA composite scaffolds possessed favorable biological function for bone marrow mesenchymal stem cells adhesion and proliferation, as well as the differentiation into osteoblasts. In vivo, the optimized bone regenerative capability of this composite scaffold was confirmed in rabbit mandible critical size defects. These results demonstrated successful development of a functional insulin-PLGA-nHAC composite scaffold that enhances the bone regeneration capability of nHAC.

摘要

胰岛素被广泛认为是维持能量和葡萄糖稳态的经典激素和药物。最近,胰岛素越来越被认为是骨生成和骨转换的不可或缺的因素,但其在骨再生中的应用由于活性持续时间短和释放不受控制而受到限制。在本研究中,我们将负载胰岛素的聚乳酸-乙醇酸共聚物(PLGA)纳米球掺入纳米羟基磷灰石/胶原蛋白(nHAC)支架中,并研究了复合支架在体外和体内的生物活性。生物活性胰岛素成功地从支架内的纳米球中释放出来,并且胰岛素的释放动力学可以通过尺寸均匀的纳米球有效地控制。复合支架的物理表征表明,使用这种方法将纳米球掺入nHAC支架中不会显著改变nHAC的孔隙率、孔径和抗压强度。在体外,负载胰岛素的nHAC/PLGA复合支架对骨髓间充质干细胞的粘附和增殖以及向成骨细胞的分化具有良好的生物学功能。在体内,这种复合支架在兔下颌骨临界尺寸缺损中证实了优化的骨再生能力。这些结果表明成功开发了一种功能性胰岛素-PLGA-nHAC复合支架,其增强了nHAC的骨再生能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95f5/5743129/2029ebf578dc/ijn-13-117Fig1.jpg

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