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Genetic manipulation of primate embryonic and hematopoietic stem cells with simian lentivirus vectors.

机译:猿猴慢病毒载体对灵长类胚胎和造血干细胞的遗传操作。

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During the past several years, many articles have described how human embryonic stem (ES) cells and adult hematopoietic stem cells (HSCs) can differentiate into cardiac muscle, blood vessels, and various other types of cells. The articles raised the expectation that these stem cells may become useful for the treatment of a variety of diseases, including cardiovascular diseases. Genetic manipulation of ES cells and HSCs would be important for such future applications of the cells. Until now, retroviral vectors have been used primarily for stable expression of transgenes in murine ES cells and HSCs. Because murine models may not predict reliably the biology of ES cells and HSCs in humans, we have utilized primate ES cells and HSCs as targets of gene transfer. We have shown that primate ES cells and HSCs can be transduced efficiently with lentiviral vectors derived from the simian immunodeficiency virus, and that the high transgene expression persists without transcriptional silencing. This highly efficient gene transfer method allows for safe and faithful gene delivery to primate ES cells and HSCs to test potential research and therapeutic applications.
机译:在过去的几年中,许多文章描述了人类胚胎干细胞(ES)和成年造血干细胞(HSC)如何分化为心肌,血管和各种其他类型的细胞。文章提出了对这些干细胞可能用于治疗多种疾病(包括心血管疾病)的期望。 ES细胞和HSC的基因操作对于此类细胞的未来应用将非常重要。迄今为止,逆转录病毒载体主要用于在小鼠ES细胞和HSC中稳定表达转基因。由于鼠模型可能无法可靠地预测人类ES细胞和HSC的生物学特性,因此我们将灵长类ES细胞和HSC用作基因转移的靶标。我们已经表明,可以使用源自猿猴免疫缺陷病毒的慢病毒载体有效地转导灵长类ES细胞和HSC,并且高转基因表达持续存在而没有转录沉默。这种高效的基因转移方法可将安全可靠的基因递送至灵长类ES细胞和HSC,以测试潜在的研究和治疗应用。

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