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首页> 外文期刊>Gene therapy >Efficient and sustained transgene expression in human corneal cells mediated by a lentiviral vector.
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Efficient and sustained transgene expression in human corneal cells mediated by a lentiviral vector.

机译:慢病毒载体介导的人角膜细胞中高效持续的转基因表达。

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摘要

The development of vectors and techniques able to transfer potentially therapeutic genetic information to corneal tissues efficiently may have broad clinical applications. Although a variety of vectors have been tested for their ability to transduce corneal tissue, these systems have been ineffective at transducing all cell types or have been associated with a relatively short duration of transgene expression. Towards the implementation of efficient, long-term transgene expression in all corneal cell types, we have studied the ability of a recombinant lentiviral vector, containing the enhanced green fluorescent protein (eGFP), to mediate gene transfer into human corneal tissue in vitro and in situ. Human primary keratocytes, cultured in vitro, were efficiently transduced by a lentiviral vector as determined by fluorescent-activated cell sorting (FACS) and by fluorescent microscopy. Transduction efficiency was found to be dependent upon multiplicity of infection (MOI); 92% of keratocytes were transduced at an MOI of 1000. The proportion of eGFP-positive cells remained unchanged throughout continuous culture for 60 days, indicating stable expression and a lack of selective pressure for or against transduced cells. Human corneal tissue, obtained at the time of penetrating keratoplasty, demonstrated efficient in situ transduction with this vector. Endothelial cells, epithelial cells and stromal keratocytes at the exposed cut edge of the corneal tissue in situ demonstrated eGFP expression. Underlying stromal cells not in direct contact with vector-containing media, were not transduced, implying that virus-cell contact is required for transduction. Transduced corneal tissues expressed eGFP in situ for the life of the corneal button in extended organ culture (60 days). These results imply that lentiviral vectors may prove to be useful tools, able to transduce corneal tissue efficiently, and that transgene expression is temporally stable. Gene Therapy (2000) 7, 196-200.
机译:能够将潜在的治疗遗传信息有效地转移到角膜组织的载体和技术的开发可能具有广泛的临床应用。尽管已经测试了多种载体转导角膜组织的能力,但是这些系统在转导所有细胞类型方面无效,或者与转基因表达的持续时间较短有关。为了在所有类型的角膜细胞中实现有效的长期转基因表达,我们研究了包含增强型绿色荧光蛋白(eGFP)的重组慢病毒载体介导基因在体外和体外转移到人角膜组织中的能力。原地。通过荧光激活细胞分选(FACS)和荧光显微镜确定,慢病毒载体可有效地转导体外培养的人原代角膜细胞。发现转导效率取决于感染的多重性(MOI)。 92%的角质形成细胞以1000的MOI进行转导。eGFP阳性细胞的比例在连续培养60天中保持不变,表明表达稳定,并且缺乏对转导细胞的抗性或针对转导细胞的选择性压力。在穿透性角膜移植术中获得的人角膜组织证明了该载体的有效原位转导。角膜组织裸露的切缘处的内皮细胞,上皮细胞和基质角膜细胞原位显示eGFP表达。没有与含载体的培养基直接接触的底层基质细胞没有被转导,这意味着转导需要病毒与细胞的接触。在延长的器官培养物中(60天),在角膜扣的整个生命期内,转导的角膜组织原位表达eGFP。这些结果表明,慢病毒载体可能被证明是有用的工具,能够有效地转导角膜组织,并且转基因表达在时间上是稳定的。基因疗法(2000)7,196-200。

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