Office of Public Health Studies, University of Hawai'i at Mānoa, Honolulu, HI, USA.
Nutr Cancer. 2020;72(5):808-825. doi: 10.1080/01635581.2019.1653472. Epub 2019 Aug 22.
Chronic aging-related diseases result in the greatest burden to the health care system, yet there is little agreement on optimal levels of vitamins or the functional significance of many other dietary molecules in disease prevention. This review presents accumulated information regarding the role of γ-tocopherol in the prevention of nitrogen oxide-mediated damage and its impact on aging-related diseases. γ-Tocopherol is ubiquitous in the diet and levels appear to be physiologically regulated such that levels rise in response to inflammation and deficiencies in certain key vitamins. The unique antioxidant properties of γ-tocopherol, whereby DNA-damaging nitrogen dioxide is rapidly converted to nitric oxide, suggest a mechanistic justification for a functional role in the prevention of DNA damage over time. Data from cell, animal, and human studies indicate that γ-tocopherol appears to have significant beneficial effects, protecting cells from inflammatory damage; however, interpretation of epidemiologic studies is complex due to the paradoxical rise in levels of γ-tocopherol in response to known etiologic risk factors. Current knowledge of its antioxidant mechanism of action, apparent physiological regulation, and impact on various enzymatic pathways suggests γ-tocopherol may have a functional role in maintaining human health. Its utility as a biomarker and the consequences of its deficiency deserve further study.
慢性与衰老相关的疾病对医疗体系造成的负担最大,但人们对于最佳维生素水平或许多其他饮食分子在疾病预防中的功能意义仍存在分歧。本综述介绍了 γ-生育酚在预防一氧化氮介导的损伤及其对与衰老相关的疾病的影响方面的累积信息。γ-生育酚在饮食中普遍存在,其水平似乎受到生理调节,即在炎症和某些关键维生素缺乏时会升高。γ-生育酚独特的抗氧化特性,即将具有 DNA 损伤性的二氧化氮迅速转化为一氧化氮,这为其在随时间推移预防 DNA 损伤方面发挥功能作用提供了一种机制上的合理性。来自细胞、动物和人体研究的数据表明,γ-生育酚似乎具有显著的有益作用,可以保护细胞免受炎症损伤;然而,由于对已知病因风险因素的反应导致 γ-生育酚水平升高的矛盾现象,对流行病学研究的解释变得复杂。目前对其抗氧化作用机制、明显的生理调节以及对各种酶促途径的影响的了解表明,γ-生育酚可能在维持人体健康方面具有功能作用。其作为生物标志物的用途及其缺乏的后果值得进一步研究。