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构建强力霉素介导的BMP-2转基因与APA微胶囊结合用于骨修复

Construction of doxycycline-mediated BMP-2 transgene combining with APA microcapsules for bone repair.

作者信息

Qian Dongyang, Bai Bo, Yan Guangbin, Zhang Shujiang, Liu Qi, Chen Yi, Tan Xiaobo, Zeng Yanjun

机构信息

a Department of Orthopaedics , the First Affiliated Hospital, Guangzhou Medical University , Guangzhou , P. R. China.

b Biomechanics & Medical Information Institute, Beijing University of Technology , Beijing , P. R. China.

出版信息

Artif Cells Nanomed Biotechnol. 2016;44(1):270-6. doi: 10.3109/21691401.2014.942458. Epub 2014 Aug 5.

Abstract

OBJECTIVES

The repairing of large segmental bone defects is difficult for clinical orthopedists at present. Gene therapy is regarded as a promising method for bone defects repair. The present study aimed to construct an effective and controllable Tet-On expression system for transferring hBMP-2 gene into bone marrow mesenchymal progenitor cells (BMSCs). Meanwhile, with combination of alginate-poly-L-lysine-alginate (APA) microencapsulation technology, we attempted to reduce the influence of immunologic rejection and examine the effect of the Tet-On expression system on osteogenesis of BMSCs.

METHODS

The adenovirus encoding hBMP-2 (ADV-hBMP2) was constructed using the means of molecular cloning. The ADV-hBMP2 and Adeno-X Tet-On virus was respectively transfected to the HEK293 for amplification and afterward BMSCs were co-infected with the virus of ADV-hBMP2 and the Adeno-X Tet-On. The expression of hBMP-2 was measured with induction by doxycycline (DOX) at different concentration by means of RT-PCR and ELISA. Combining Tet-On expression system and APA microcapsules with the use of the pulsed high-voltage electrostatic microcapsule instrument, we examined the expression level of hBMP-2 in APA microcapsules by ELISA as well as the osteogenesis by alizarin red S staining.

KEY FINDINGS

An effective Tet-On expression system for transferring hBMP-2 gene into BMSCs was constructed successfully. Also, the expression of hBMP-2 could be regulated by concentration of DOX. The data exhibited that BMSCs in APA microcapsules maintained the capability of proliferation and differentiation. The combination of Tet-On expression system and APA microcapsules could promote the osteogenesis of BMSCs.

CONCLUSIONS

According to the results, microencapsulated Tet-On expression system showed the effective characteristics of secreting hBMP-2 and enhancing osteogenesis, which would provide a promising way for bone repair.

摘要

目的

目前,大段骨缺损的修复对于临床骨科医生而言颇具难度。基因治疗被视作一种有前景的骨缺损修复方法。本研究旨在构建一种有效且可控的Tet-On表达系统,用于将人骨形态发生蛋白-2(hBMP-2)基因导入骨髓间充质祖细胞(BMSCs)。同时,结合海藻酸钠-聚-L-赖氨酸-海藻酸钠(APA)微囊化技术,我们试图降低免疫排斥的影响,并检测Tet-On表达系统对BMSCs成骨作用的效果。

方法

采用分子克隆手段构建编码hBMP-2的腺病毒(ADV-hBMP2)。将ADV-hBMP2和腺病毒-X Tet-On病毒分别转染至HEK293细胞进行扩增,随后BMSCs与ADV-hBMP2病毒和腺病毒-X Tet-On病毒共同感染。通过逆转录聚合酶链反应(RT-PCR)和酶联免疫吸附测定(ELISA),在不同浓度强力霉素(DOX)诱导下检测hBMP-2的表达。运用脉冲高压静电微囊仪将Tet-On表达系统与APA微囊相结合,通过ELISA检测APA微囊中hBMP-2的表达水平,并通过茜素红S染色检测成骨情况。

主要发现

成功构建了一种将hBMP-2基因导入BMSCs的有效Tet-On表达系统。此外,hBMP-2的表达可受DOX浓度调节。数据显示,APA微囊中的BMSCs保持了增殖和分化能力。Tet-On表达系统与APA微囊相结合可促进BMSCs的成骨作用。

结论

根据结果,微囊化的Tet-On表达系统展现出分泌hBMP-2和增强成骨的有效特性,这将为骨修复提供一种有前景的方法。

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