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Molecular Genetic Studies of Gene Identification for Osteoporosis: The 2009 Update

机译:骨质疏松症基因鉴定的分子遗传学研究:2009年更新

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Osteoporosis is a complex human disease that results in increased susceptibility to fragility fractures. It can be phenotypically characterized using several traits, including bone mineral density, bone size, bone strength, and bone turnover markers. The identification of gene variants that contribute to osteoporosis phenotypes, or responses to therapy, can eventually help individualize the prognosis, treatment, and prevention of fractures and their adverse outcomes. Our previously published reviews have comprehensively summarized the progress of molecular genetic studies of gene identification for osteoporosis and have covered the data available to the end of September 2007. This review represents our continuing efforts to summarize the important and representative findings published between October 2007 and November 2009. The topics covered include genetic association and linkage studies in humans, transgenic and knockout mouse models, as well as gene-expression microarray and proteomics studies. Major results are tabulated for comparison and ease of reference. Comments are made on the notable findings and representative studies for their potential influence and implications on our present understanding of the genetics of osteoporosis.
机译:骨质疏松症是一种复杂的人类疾病,导致易碎性骨折的易感性增加。可以使用几种特征在表型上进行表征,包括骨矿物质密度,骨大小,骨强度和骨转换标记。鉴定有助于骨质疏松症表型或对治疗产生反应的基因变异体,最终可以帮助个性化骨折的预后,治疗和预防及其不良后果。我们先前发表的评论全面概述了骨质疏松症基因鉴定的分子遗传学研究进展,并涵盖了截至2007年9月底的可用数据。该评论代表我们继续努力,总结了2007年10月至11月之间发表的重要且有代表性的发现2009。涵盖的主题包括人类基因关联和连锁研究,转基因和基因敲除小鼠模型,以及基因表达微阵列和蛋白质组学研究。表中列出了主要结果,以供比较和参考。本文对这些显着的发现和代表性研究对他们对我们目前对骨质疏松症遗传学的潜在影响和影响进行了评论。

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