Genetic variation and environmental factors in biological and arterial ageing.

T S Nawrot, J A Staessen
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Abstract

Arterial ageing is a complex continuously distributed phenotype, which comes about through the interaction between inherited susceptibility, life-style and environmental factors. We used an integrated approach combining methods from genetics, molecular biology and population sciences to study the role of genetic variation and environmental factors in biological ageing. The discussed work comprises four population based studies of which two had a prospective design and two integrated recently developed biomolecular markers of ageing with classical epidemiological tools. The striking variability in the age of the manifestation of cardiovascular diseases is not fully explained by conventional risk factors. Variation in biological age has been suggested. The initial telomere length of a person is mainly determined by genetic factors. In this regard, we noticed robust correlations in telomere length between fathers and daughters, between mothers and both sons and daughters, and among siblings. X-linked inheritance of telomere length is the most likely explanation for these findings. Telomere length shortens with each cell division, and exposition to harmful environmental factors results in shorter telomere length as we observed in smokers. Telomere length correlated with the distensibility of the carotid artery and oxidative stress and inflammation are major determinants of arterial and biological ageing. In this context, selenium a component of antioxidant enzymes such as glutathione peroxidase, correlated inversely with blood pressure in the population at large. Oxidative stress and inflammation are major determinants of arterial and biological ageing. If telomeres are indeed causally involved in the pathogenesis of arterial ageing, this might provide new avenues for future preventive and therapeutic strategies.

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生物和动脉老化中的遗传变异和环境因素。
动脉老化是一种复杂的连续分布表型,是遗传易感性、生活方式和环境因素共同作用的结果。我们采用遗传学、分子生物学和人口科学相结合的综合方法,研究了遗传变异和环境因素在生物衰老中的作用。所讨论的工作包括四项基于人口的研究,其中两项具有前瞻性设计,两项将最近开发的老化生物分子标记与经典流行病学工具相结合。心血管疾病表现在年龄上的显著差异并不能完全用传统的危险因素来解释。生物年龄的变化已经被提出。人的初始端粒长度主要由遗传因素决定。在这方面,我们注意到父亲和女儿之间、母亲和儿子和女儿之间以及兄弟姐妹之间的端粒长度有很强的相关性。端粒长度的x连锁遗传是这些发现最可能的解释。端粒长度随着每次细胞分裂而缩短,暴露于有害环境因素导致端粒长度缩短,正如我们在吸烟者中观察到的那样。端粒长度与颈动脉的扩张性、氧化应激和炎症相关,是动脉和生物老化的主要决定因素。在这种情况下,硒作为抗氧化酶如谷胱甘肽过氧化物酶的组成部分,与人群血压呈负相关。氧化应激和炎症是动脉和生物老化的主要决定因素。如果端粒确实与动脉老化的发病机制有因果关系,这可能为未来的预防和治疗策略提供新的途径。
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