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The Evolving Role of Multivitamin/Multimineral Supplement Use among Adults in the Age of Personalized Nutrition.个性化营养时代成年人对多种维生素/多种矿物质补充剂使用的不断变化的作用。
Nutrients. 2018 Feb 22;10(2):248. doi: 10.3390/nu10020248.
2
Subclinical magnesium deficiency: a principal driver of cardiovascular disease and a public health crisis.亚临床镁缺乏:心血管疾病的主要驱动因素及一场公共卫生危机。
Open Heart. 2018 Jan 13;5(1):e000668. doi: 10.1136/openhrt-2017-000668. eCollection 2018.
3
Clinical and Vitamin Response to a Short-Term Multi-Micronutrient Intervention in Brazilian Children and Teens: From Population Data to Interindividual Responses.巴西儿童和青少年短期多种微量营养素干预的临床和维生素反应:从人群数据到个体反应。
Mol Nutr Food Res. 2018 Mar;62(6):e1700613. doi: 10.1002/mnfr.201700613. Epub 2018 Feb 22.
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Brain docosahexaenoic acid uptake and metabolism.脑二十二碳六烯酸摄取和代谢。
Mol Aspects Med. 2018 Dec;64:109-134. doi: 10.1016/j.mam.2017.12.004. Epub 2018 Feb 9.
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Omega-3 fatty acid supplementation may prevent loss of gray matter thickness in the left parieto-occipital cortex in first episode schizophrenia: A secondary outcome analysis of the OFFER randomized controlled study.ω-3 脂肪酸补充可能预防首发精神分裂症左顶枕叶皮质灰质厚度丢失:OFFER 随机对照研究的二次结局分析。
Schizophr Res. 2018 May;195:168-175. doi: 10.1016/j.schres.2017.10.013. Epub 2017 Nov 2.
6
Prophylactic role of taurine and its derivatives against diabetes mellitus and its related complications.牛磺酸及其衍生物对糖尿病及其相关并发症的预防作用。
Food Chem Toxicol. 2017 Dec;110:109-121. doi: 10.1016/j.fct.2017.10.022. Epub 2017 Oct 16.
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Vitamin D supplementation as a potential cause of U-shaped associations between vitamin D levels and negative health outcomes: a decision tree analysis for risk of frailty.维生素D补充剂作为维生素D水平与不良健康结局之间呈U型关联的潜在原因:一项关于衰弱风险的决策树分析
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Separate and combined associations of obesity and metabolic health with coronary heart disease: a pan-European case-cohort analysis.肥胖和代谢健康与冠心病的单独和联合关联:泛欧病例-队列分析。
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Metabolically Healthy Obese and Incident Cardiovascular Disease Events Among 3.5 Million Men and Women.代谢健康型肥胖与 350 万男性和女性心血管疾病事件的相关性。
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10
The Effect of Metformin and Taurine, Alone and in Combination, on the Oxidative Stress Caused by Diabetes in the Rat Brain.二甲双胍和牛磺酸单独及联合应用对糖尿病大鼠大脑氧化应激的影响。
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延长健康衰老:长寿维生素和蛋白质。

Prolonging healthy aging: Longevity vitamins and proteins.

机构信息

Nutrition and Metabolism Center, Children's Hospital Oakland Research Institute (CHORI), Oakland, CA 94609-1809

出版信息

Proc Natl Acad Sci U S A. 2018 Oct 23;115(43):10836-10844. doi: 10.1073/pnas.1809045115. Epub 2018 Oct 15.

DOI:10.1073/pnas.1809045115
PMID:30322941
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6205492/
Abstract

It is proposed that proteins/enzymes be classified into two classes according to their essentiality for immediate survival/reproduction and their function in long-term health: that is, survival proteins versus longevity proteins. As proposed by the triage theory, a modest deficiency of one of the nutrients/cofactors triggers a built-in rationing mechanism that favors the proteins needed for immediate survival and reproduction (survival proteins) while sacrificing those needed to protect against future damage (longevity proteins). Impairment of the function of longevity proteins results in an insidious acceleration of the risk of diseases associated with aging. I also propose that nutrients required for the function of longevity proteins constitute a class of vitamins that are here named "longevity vitamins." I suggest that many such nutrients play a dual role for both survival and longevity. The evidence for classifying taurine as a conditional vitamin, and the following 10 compounds as putative longevity vitamins, is reviewed: the fungal antioxidant ergothioneine; the bacterial metabolites pyrroloquinoline quinone (PQQ) and queuine; and the plant antioxidant carotenoids lutein, zeaxanthin, lycopene, α- and β-carotene, β-cryptoxanthin, and the marine carotenoid astaxanthin. Because nutrient deficiencies are highly prevalent in the United States (and elsewhere), appropriate supplementation and/or an improved diet could reduce much of the consequent risk of chronic disease and premature aging.

摘要

有人提出,根据蛋白质/酶对即时生存/繁殖的必要性及其在长期健康中的功能,可将其分为两类:即生存蛋白和长寿蛋白。正如分诊理论所提出的,一种营养物质/辅助因子的适度缺乏会触发一种内在的配给机制,这种机制有利于那些对即时生存和繁殖所必需的蛋白质(生存蛋白),而牺牲那些对预防未来损害所必需的蛋白质(长寿蛋白)。长寿蛋白功能的损害会导致与衰老相关的疾病风险悄然加速。我还提出,长寿蛋白功能所需的营养物质构成了一类维生素,在这里将其命名为“长寿维生素”。我认为,许多这样的营养物质对生存和长寿都具有双重作用。有证据表明牛磺酸是一种条件维生素,以下 10 种化合物是推定的长寿维生素:真菌抗氧化剂牛磺酸;细菌代谢物吡咯喹啉醌(PQQ)和喹啉;植物抗氧化剂叶黄素、玉米黄质、番茄红素、α-和β-胡萝卜素、β-隐黄质以及海洋类胡萝卜素虾青素。由于营养物质缺乏在美国(和其他地方)非常普遍,适当的补充和/或改善饮食可以降低许多由此导致的慢性疾病和过早衰老的风险。