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Robust Efficient and Practical Electrogene Transfer Method for Human Mesenchymal Stem Cells Using Square Electric Pulses

机译:使用方电脉冲对人间充质干细胞进行稳健高效且实用的电基因转移方法

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摘要

Mesenchymal stem cells (MSCs) are multipotent nonhematopoietic cells with the ability to differentiate into various specific cell types, thus holding great promise for regenerative medicine. Early clinical trials have proven that MSC-based therapy is safe, with possible efficacy in various diseased states. Moreover, genetic modification of MSCs to improve their function can be safely achieved using electrogene transfer. We previously achieved transfection efficiencies of up to 32% with preserved viability in rat MSCs. In this study, we further improved the transfection efficiency and transgene expression in human MSCs (hMSCs), while preserving the cells viability and ability to differentiate into osteoblasts and adipocytes by increasing the plasmid concentration and altering the osmotic pressure of the electrotransfer buffer. Using a square-wave electric pulse generator, we achieved a transfection efficiency of more than 80%, with around 70% viability and a detectable transgene expression of up to 30 days. Moreover, we demonstrated that this transfection efficiency can be reproduced reliably on two different sources of hMSCs: the bone marrow and adipose tissue. We also showed that there was no significant donor variability in terms of their transfection efficiency and viability. The cell confluency before electrotransfer had no significant effect on the transfection efficiency and viability. Cryopreservation of transfected cells maintained their transgene expression and viability upon thawing. In summary, we are reporting a robust, safe, and efficient protocol of electrotransfer for hMSCs with several practical suggestions for an optimal use of genetically engineered hMSCs for clinical application.
机译:间充质干细胞(MSCs)是能分化为各种特定细胞类型的多能非造血细胞,因此对于再生医学具有广阔的前景。早期的临床试验证明,基于MSC的治疗是安全的,在各种疾病状态下均可能具有疗效。此外,可以使用电基因转移安全地实现MSC的遗传修饰以改善其功能。我们先前在大鼠MSC中实现了高达32%的转染效率,并保留了生存能力。在这项研究中,我们进一步提高了人MSC(hMSC)的转染效率和转基因表达,同时通过增加质粒浓度和改变电转移缓冲液的渗透压,保留了细胞的活力以及分化为成骨细胞和脂肪细胞的能力。使用方波电脉冲发生器,我们实现了超过80%的转染效率,大约70%的活力和长达30天的可检测转基因表达。此外,我们证明了这种转染效率可以在两种不同来源的hMSC上可靠地复制:骨髓和脂肪组织。我们还显示,就其转染效率和生存力而言,供体没有明显的变异性。电转移前的细胞融合度对转染效率和存活率没有显着影响。冷冻保存转染细胞可保持其转基因表达和解冻后的活力。总而言之,我们报告了一种针对hMSC的稳健,安全,有效的电转移方案,并提供了一些实用建议,以优化基因工程hMSC的临床应用。

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