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The role of telomeres and vitamin D in cellular aging and age-related diseases

机译:端粒和维生素D在细胞衰老和与年龄有关的疾病中的作用

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摘要

Aging is a complex biological process characterized by a progressive decline of organ functions leading to an increased risk of age-associated diseases and death. Decades of intensive research have identified a range of molecular and biochemical pathways contributing to aging. However, many aspects regarding the regulation and interplay of these pathways are insufficiently understood. Telomere dysfunction and genomic instability appear to be of critical importance for aging at a cellular level. For example, age-related diseases and premature aging syndromes are frequently associated with telomere shortening. Telomeres are repetitive nucleotide sequences that together with the associated sheltrin complex protect the ends of chromosomes and maintain genomic stability. Recent studies suggest that micronutrients, such as vitamin D, folate and vitamin B12, are involved in telomere biology and cellular aging. In particular, vitamin D is important for a range of vital cellular processes including cellular differentiation, proliferation and apoptosis. As a result of the multiple functions of vitamin D it has been speculated that vitamin D might play a role in telomere biology and genomic stability. Here we review existing knowledge about the link between telomere biology and cellular aging with a focus on the role of vitamin D. We searched the literature up to November 2014 for human studies, animal models and in vitro experiments that addressed this topic.
机译:衰老是一个复杂的生物过程,其特征是器官功能逐渐下降,导致与年龄有关的疾病和死亡的风险增加。数十年的深入研究确定了导致衰老的一系列分子和生化途径。然而,关于这些途径的调节和相互作用的许多方面还没有被充分理解。端粒功能障碍和基因组不稳定性似乎对于细胞水平的衰老至关重要。例如,与年龄有关的疾病和过早衰老综合症通常与端粒缩短有关。端粒是重复的核苷酸序列,与相关的sheltrin复合物一起保护染色体的末端并保持基因组稳定性。最近的研究表明,微量营养素,例如维生素D,叶酸和维生素B12,与端粒生物学和细胞衰老有关。尤其是维生素D对于一系列重要的细胞过程(包括细胞分化,增殖和凋亡)非常重要。由于维生素D的多种功能,据推测维生素D可能在端粒生物学和基因组稳定性中起作用。在这里,我们回顾了有关端粒生物学与细胞衰老之间关系的现有知识,重点关注了维生素D的作用。我们检索了截至2014年11月的文献,以研究涉及该主题的人体研究,动物模型和体外实验。

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