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慢病毒载体介导的间充质干细胞修饰与体外缺血模型中细胞存活的增强。

Lentiviral vector mediated modification of mesenchymal stem cells & enhanced survival in an in vitro model of ischaemia.

机构信息

Regenerative Medicine Institute and Department of Medicine, National University of Ireland, Galway and Galway University Hospital, University Road, Galway, Ireland.

出版信息

Stem Cell Res Ther. 2011 Mar 7;2(2):12. doi: 10.1186/scrt53.

Abstract

INTRODUCTION

A combination of gene and cell therapies has the potential to significantly enhance the therapeutic value of mesenchymal stem cells (MSCs). The development of efficient gene delivery methods is essential if MSCs are to be of benefit using such an approach. Achieving high levels of transgene expression for the required period of time, without adversely affecting cell viability and differentiation capacity, is crucial. In the present study, we investigate lentiviral vector-mediated genetic modification of rat bone-marrow derived MSCs and examine any functional effect of such genetic modification in an in vitro model of ischaemia.

METHODS

Transduction efficiency and transgene persistence of second and third generation rHIV-1 based lentiviral vectors were tested using reporter gene constructs. Use of the rHIV-pWPT-EF1-α-GFP-W vector was optimised in terms of dose, toxicity, cell species, and storage. The in vivo condition of ischaemia was modelled in vitro by separation into its associated constituent parts i.e. hypoxia, serum and glucose deprivation, in which the effect of therapeutic gene over-expression on MSC survival was investigated.

RESULTS

The second generation lentiviral vector rHIV-pWPT-EF1-α-GFP-W, was the most efficient and provided the most durable transgene expression of the vectors tested. Transduction with this vector did not adversely affect MSC morphology, viability or differentiation potential, and transgene expression levels were unaffected by cryopreservation of transduced cells. Over-expression of HSP70 resulted in enhanced MSC survival and increased resistance to apoptosis in conditions of hypoxia and ischaemia. MSC differentiation capacity was significantly reduced after oxygen deprivation, but was preserved with HSP70 over-expression.

CONCLUSIONS

Collectively, these data validate the use of lentiviral vectors for efficient in vitro gene delivery to MSCs and suggest that lentiviral vector transduction can facilitate sustained therapeutic gene expression, providing an efficient tool for ex vivo MSC modification. Furthermore, lentiviral mediated over-expression of therapeutic genes in MSCs may provide protection in an ischaemic environment and enable MSCs to function in a regenerative manner, in part through maintaining the ability to differentiate. This finding may have considerable significance in improving the efficacy of MSC-based therapies.

摘要

简介

基因和细胞疗法的结合有可能显著提高间充质干细胞(MSCs)的治疗价值。如果要通过这种方法利用 MSCs,则必须开发有效的基因传递方法。实现所需时间内的转基因高水平表达,而不会对细胞活力和分化能力产生不利影响,是至关重要的。在本研究中,我们研究了慢病毒载体介导的大鼠骨髓来源的 MSC 的基因修饰,并在缺血的体外模型中检查了这种基因修饰的任何功能影响。

方法

使用报告基因构建体测试第二代和第三代 rHIV-1 基于慢病毒载体的转导效率和转基因持续时间。优化了 rHIV-pWPT-EF1-α-GFP-W 载体的剂量、毒性、细胞种类和储存。通过将其分离为缺氧、血清和葡萄糖剥夺等相关组成部分,在体外模拟缺血的体内状态,研究了治疗性基因过表达对 MSC 存活的影响。

结果

第二代慢病毒载体 rHIV-pWPT-EF1-α-GFP-W 是最有效的,提供了测试的载体中最持久的转基因表达。用该载体转导不会对 MSC 形态、活力或分化潜能产生不利影响,并且转导细胞的冷冻保存不会影响转基因表达水平。HSP70 的过表达导致缺氧和缺血条件下 MSC 存活增加和抗凋亡能力增强。氧剥夺后 MSC 分化能力显著降低,但 HSP70 过表达可保留其分化能力。

结论

总的来说,这些数据验证了慢病毒载体在 MSC 中的高效体外基因传递,并表明慢病毒载体转导可以促进持续的治疗性基因表达,为 MSC 的体外修饰提供了有效的工具。此外,MSC 中治疗性基因的慢病毒介导过表达可能在缺血环境中提供保护,并使 MSC 以再生方式发挥作用,部分原因是保持分化能力。这一发现可能对提高基于 MSC 的治疗的疗效具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff47/3226283/18135d0a2c55/scrt53-1.jpg

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