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Human androgen deficiency: insights gained from androgen receptor knockout mouse models

机译:人类雄激素缺乏症:从雄激素受体敲除小鼠模型获得的见解

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The mechanism of androgen action is complex. Recently, significant advances have been made into our understanding of how androgens act via the androgen receptor (AR) through the use of genetically modified mouse models. A number of global and tissue-specific AR knockout (ARKO) models have been generated using the Cre-loxP system which allows tissue- and/or cell-specific deletion. These ARKO models have examined a number of sites of androgen action including the cardiovascular system, the immune and hemopoetic system, bone, muscle, adipose tissue, the prostate and the brain. This review focuses on the insights that have been gained into human androgen deficiency through the use of ARKO mouse models at each of these sites of action, and highlights the strengths and limitations of these Cre-loxP mouse models that should be considered to ensure accurate interpretation of the phenotype.
机译:雄激素作用的机理很复杂。最近,通过使用转基因小鼠模型,我们对雄激素如何通过雄激素受体(AR)起作用的理解已取得重大进展。使用Cre-loxP系统已经产生了许多全局的和组织特异的AR基因敲除(ARKO)模型,该系统允许组织和/或细胞特异的缺失。这些ARKO模型检查了许多雄激素作用部位,包括心血管系统,免疫和造血系统,骨骼,肌肉,脂肪组织,前列腺和大脑。这篇综述重点在于通过在每个这些作用位点使用ARKO小鼠模型获得的对人类雄激素缺乏症的见解,并重点介绍了应考虑确保准确解释的这些Cre-loxP小鼠模型的优势和局限性的表型。

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