DNA-based animal models of human disease: from genotype to phenotype.

L B Schook, K Kuzmuk, S Adam, L Rund, K Chen, M Rogatcheva, M Mazur, C Pollock, C Counter
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引用次数: 13

Abstract

Biomedical research utilizes animal models to elucidate human disease processes at the cellular and molecular level and for the development of new therapies. Traditionally, mammalian models have been limited to the mouse, primarily because of well characterized genetic lines and the ability to manipulate the genome to directly test hypotheses regarding causal mutations and disease phenotypes. The emerging availability of genome sequences of other mammals (bovine, canine, equine, feline, and porcine) now permits utilization of the mammal in which the phenotype best approximates the human condition. Equally important is the use of somatic cell nuclear cloning (SCNT) coupled with targeted germline manipulation to create animals to resolve the molecular mechanisms of the disease state. Our efforts have focused on the pig, which has emerged as an important biomedical mammalian model due to its closer physiology to humans. The utility of porcine genetically-defined tumour, cardiovascular and neurological disease models is described.

基于dna的人类疾病动物模型:从基因型到表型。
生物医学研究利用动物模型在细胞和分子水平上阐明人类疾病的过程,并开发新的治疗方法。传统上,哺乳动物模型仅限于小鼠,主要是因为小鼠具有良好的遗传系特征和操纵基因组以直接测试有关因果突变和疾病表型的假设的能力。其他哺乳动物(牛、犬、马、猫和猪)基因组序列的出现,现在允许利用表型最接近人类状况的哺乳动物。同样重要的是利用体细胞核克隆(SCNT)结合有针对性的种系操作来创造动物,以解决疾病状态的分子机制。我们的研究重点是猪,由于猪的生理机能与人类更接近,猪已成为重要的生物医学哺乳动物模型。描述了猪基因定义肿瘤、心血管和神经疾病模型的效用。
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