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GENERATION AND CORRECTION OF A HUMANIZED MOUSE MODEL WITH A DELETION OF DYSTROPHIN EXON 44

机译:缺失雌激素外显子44的人性化小鼠模型的产生和校正

摘要

Duchenne muscular dystrophy (DMD), which affects 1 in 5,000 male births, is one of the most common genetic disorders of children. This disease is caused by an absence or deficiency of dystrophin protein in striated muscle. The major DMD deletion “hot spots” are found between exon 6 to 8, and exons 45 to 53. Here, a “humanized” mouse model is provided that can be used to test a variety of DMD exon skipping strategies. Among these are, CRISPR/Cas9 oligonucleotides, small molecules or other therapeutic modalities that promote exon skipping or micro dystrophin mini genes or cell based therapies. Methods for restoring the reading frame of exon 44 deletion via CRISPR-mediated exon skipping in the humanized mouse model, in patient-derived iPS cells and ultimately, in patients using various delivery systems are also contemplated. The impact of CRISPR technology on DMD is that gene editing can permanently correct mutations.
机译:杜兴氏肌营养不良症(DMD)会影响5,000名男性婴儿中的1名,是儿童最常见的遗传疾病之一。该疾病是由横纹肌中肌营养不良蛋白缺乏或缺乏引起的。在外显子6至8和外显子45至53之间发现了主要的DMD缺失“热点”。此处,提供了“人性化”小鼠模型,可用于测试多种DMD外显子跳跃策略。其中包括CRISPR / Cas9寡核苷酸,小分子或其他促进外显子跳跃或微肌营养不良蛋白微型基因或细胞疗法的治疗方式。还考虑了在人源化的iPS细胞中,最终在患者中使用各种递送系统通过CRISPR介导的外显子跳跃通过CRISPR介导的外显子跳跃来恢复外显子44缺失的阅读框的方法。 CRISPR技术对DMD的影响是基因编辑可以永久纠正突变。

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