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Exploring biologically relevant pathways in frailty.

机译:探索脆弱的生物学相关途径。

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BACKGROUND: Frailty is a late-life syndrome of vulnerability to adverse health outcomes characterized by a phenotype that includes muscle weakness, fatigue, and inflammatory pathway activation. The identification of biologically relevant pathways that influence frailty is challenged by its biological complexity and the necessity in separating disease states from the syndrome of frailty. As with longevity research, genetic analyses may help to provide insights into biologically relevant pathways that contribute to frailty. METHODS: Based on current understanding of the physiological basis of frailty, we hypothesize that variation in genes related to inflammation and muscle maintenance would associate with frailty. One thousand three hundred and fifty-four single-nucleotide polymorphisms were genotyped across 134 candidate genes using the Illumina Genotyping platform, and the rank order by strength of association between frailty and genotype was determined in a cross-sectional study. RESULTS: Although no single-nucleotide polymorphism reached study-wide significance after controlling family-wise false-discovery rate at 0.05, single-nucleotide polymorphisms within the 5-methyltetrahydrofolate-homocysteine methyltransferase (MTR), Caspase 8 (CASP8), CREB-binding protein (CREBBP), lysine acetyltransferase 2B (KAT2B), and beta-transducin repeat containing (BTRC) loci were among those strongly associated with frailty. CONCLUSIONS: The apoptosis- and transcription regulation-related pathways highlighted by this preliminary analysis were consistent with prior gene expression studies in a frail mouse model and provide useful etiological insights for future biological studies of frailty.
机译:背景:虚弱是一种易患不良健康结果的晚年综合症,其特征在于表型包括肌肉无力,疲劳和炎性途径激活。影响脆弱性的生物学相关途径的鉴定受到其生物学复杂性和将疾病状态与脆弱性综合征分离的必要性的挑战。与长寿研究一样,遗传分析可能有助于提供洞察促成衰弱的生物学相关途径的信息。方法:基于目前对体弱的生理基础的理解,我们假设与炎症和肌肉维持相关的基因变异将与体弱相关。使用Illumina基因分型平台,对134个候选基因的134个单核苷酸多态性进行了基因分型,并在横断面研究中确定了基于脆弱性与基因型之间的关联强度的排名顺序。结果:尽管没有将单核苷酸多态性控制在家庭错误发现率控制在0.05后,但在5-甲基四氢叶酸-高半胱氨酸甲基转移酶(MTR),半胱天冬酶8(CASP8),CREB结合中单核苷酸多态性蛋白(CREBBP),赖氨酸乙酰转移酶2B(KAT2B)和含β-转导重复序列(BTRC)的基因位点与衰弱密切相关。结论:该初步分析强调的与凋亡和转录调控相关的途径与以前在脆弱小鼠模型中的基因表达研究一致,并为将来的脆弱生物学研究提供了有用的病因学见解。

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