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载有 VEGF 的矿物质涂层微颗粒可改善骨修复,并与小鼠骨不连中 epo 和 RUNX-2 的表达增加有关。

VEGF-loaded mineral-coated microparticles improve bone repair and are associated with increased expression of epo and RUNX-2 in murine non-unions.

机构信息

Department of Trauma, Hand and Reconstructive Surgery, Saarland University, Homburg, Germany.

Institute for Clinical and Experimental Surgery, Saarland University, Homburg, Germany.

出版信息

J Orthop Res. 2019 Apr;37(4):821-831. doi: 10.1002/jor.24267. Epub 2019 Mar 28.

Abstract

A poor vascular supply of the fracture gap is a key factor for the development of atrophic non-unions. Mineral-coated microparticles (MCM) represent a sophisticated carrier system for the delivery of vascular endothelial growth factor (VEGF). Hence, we investigated whether VEGF-loaded MCM improve bone repair in non-unions. For this purpose, we analyzed binding and release kinetics of MCM for VEGF in vitro. Moreover, we applied VEGF-loaded or -unloaded MCM in a murine non-union model in vivo and studied the process of bone healing by means of biomechanical, radiological, histomorphometric, and Western blot techniques. MCM-free non-unions served as controls. The binding efficiency of MCM for VEGF was 46 ± 3% and the release profile revealed an initial minor burst release followed by a sustained release over a 50-day study period, thus, mimicking the physiological expression profile of VEGF during bone healing. In vivo, bone defects treated with VEGF-loaded MCM exhibited a higher bending stiffness, a higher fraction of bone volume/tissue volume and a larger callus area on days 14 and 70 when compared to the other groups. Western blot analyses on day 14 revealed a higher expression of VEGF, erythropoietin (EPO), and runt-related transcription factor 2, but not of EPO-receptor in bone defects treated with VEGF-loaded MCM. These findings demonstrate that the use of MCM for VEGF delivery shows great potential due to the ability to maintain protein stability and functionality in vivo. Moreover, the application of VEGF-loaded MCM represent a promising strategy for the treatment of non-unions. © 2019 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res.

摘要

骨折间隙的血液供应不足是萎缩性骨不连发展的关键因素。矿化涂层微颗粒(MCM)是血管内皮生长因子(VEGF)传递的复杂载体系统。因此,我们研究了负载 VEGF 的 MCM 是否能改善骨不连的修复。为此,我们在体外分析了 MCM 对 VEGF 的结合和释放动力学。此外,我们在体内的鼠骨不连模型中应用了负载或未负载 VEGF 的 MCM,并通过生物力学、放射学、组织形态计量学和 Western blot 技术研究了骨愈合的过程。无 MCM 的非愈合骨作为对照。MCM 对 VEGF 的结合效率为 46±3%,释放曲线显示初始小爆发释放,随后在 50 天的研究期间持续释放,因此,模拟了 VEGF 在骨愈合过程中的生理表达谱。在体内,与其他组相比,负载 VEGF 的 MCM 治疗的骨缺损在第 14 天和第 70 天具有更高的弯曲刚度、更大的骨体积/组织体积分数和更大的骨痂面积。第 14 天的 Western blot 分析显示,负载 VEGF 的 MCM 治疗的骨缺损中 VEGF、促红细胞生成素(EPO)和 runt 相关转录因子 2 的表达较高,但 EPO 受体的表达较低。这些发现表明,由于 MCM 能够在体内维持蛋白质的稳定性和功能,因此使用 MCM 来传递 VEGF 具有很大的潜力。此外,负载 VEGF 的 MCM 的应用代表了治疗骨不连的一种很有前途的策略。

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