维生素D的骨骼外作用。

2区 医学 Q2 Medicine Frontiers of Hormone Research Pub Date : 2018-01-01 Epub Date: 2018-03-29 DOI:10.1159/000486072
Roger Bouillon
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引用次数: 63

摘要

有非常可靠的数据证实,维生素D内分泌系统不仅对钙运输或骨骼稳态很重要,而且对身体大多数细胞的运作功能也很重要。临床前研究令人信服地证明了维生素D内分泌系统对大多数细胞的增殖/分化(因此可能对癌症的演变)的一致作用。最可能的靶组织包括骨骼和心肌、所有免疫细胞、许多参与心血管稳态的细胞、脑细胞和生殖组织。这些数据是在(几乎)完全缺乏维生素D作用或暴露于非常高浓度的活性激素1,25-二羟基维生素D或其类似物的模型中产生的。在人类中,观察数据经常表明,维生素D水平低下与许多主要人类疾病(如癌症、肌肉无力和跌倒、感染或自身免疫性疾病、高血压和心血管风险和事件、肥胖、糖尿病和代谢综合征的各个方面以及其他健康问题)之间存在联系。到目前为止,干预研究还没有令人信服地证明对这些骨骼外健康结果的积极影响。然而,大量正在进行的研究(约3000项)应该有助于阐明维生素D对肌肉骨骼系统和全球健康的作用。
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Extra-Skeletal Effects of Vitamin D.

There are very solid data to confirm that the vitamin D endocrine system is important not only for calcium transport or bone homeostasis but also for operational functions in most cells of the body. Preclinical studies convincingly demonstrated coherent actions of the vitamin D endocrine system on the proliferation/differentiation of most cells (and thus possibly on the evolution of cancer). The most plausible target tissues include skeletal and cardiac muscle, all immune cells, many cells involved in cardiovascular homeostasis, brain cells, and reproductive tissues. These data have been generated in models of (near) total absence of vitamin D action or when exposed to very high concentrations of the active hormone, 1,25-dihydroxyvitamin D or its analogs. In humans, observational data frequently demonstrate a link between poor vitamin D status and a large number of major human diseases such as cancer, muscle weakness and falls, infections or autoimmune diseases, hypertension and cardiovascular risks and events, obesity, diabetes and all aspects of the metabolic syndrome, and other health problems. Intervention studies so far have not convincingly demonstrated a positive effect on such extra-skeletal health outcomes. A very large number of ongoing studies (about 3,000), however, should help to clarify the role of vitamin D on the musculoskeletal system and on global health.

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来源期刊
Frontiers of Hormone Research
Frontiers of Hormone Research 医学-内分泌学与代谢
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期刊介绍: A series of integrated overviews on cutting-edge topics New sophisticated technologies and methodological approaches in diagnostics and therapeutics have led to significant improvements in identifying and characterizing an increasing number of medical conditions, which is particularly true for all aspects of endocrine and metabolic dysfunctions. Novel insights in endocrine physiology and pathophysiology allow for new perspectives in clinical management and thus lead to the development of molecular, personalized treatments. In view of this, the active interplay between basic scientists and clinicians has become fundamental, both to provide patients with the most appropriate care and to advance future research.
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