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营养新概念:维持衰老眼睛氧化还原调节和白内障疾病的治疗;天然抗氧化咪唑含氨基酸基化合物、伴侣蛋白和谷胱甘肽促进剂的协同作用:从人类研究中出现的衰老和长寿的系统观点。

New concept in nutrition for the maintenance of the aging eye redox regulation and therapeutic treatment of cataract disease; synergism of natural antioxidant imidazole-containing amino acid-based compounds, chaperone, and glutathione boosting agents: a systemic perspective on aging and longevity emerged from studies in humans.

机构信息

Innovative Vision Products, Inc., County of New Castle, DE, USA.

出版信息

Am J Ther. 2010 Jul-Aug;17(4):373-89. doi: 10.1097/MJT.0b013e3181d6b6c3.

Abstract

Cataract, opacification of the lens, is one of the commonest causes of loss of useful vision during aging, with an estimated 16 million people world-wide affected. The role of nutritional supplementation in prevention of onset or progression of ocular disease is of interest to health care professionals and patients. The aging eye seems to be at considerable risk from oxidative stress. This review outlines the potential role of the new nutritional strategy on redox balance in age-related eye diseases and detail how the synergism and interaction of imidazole-containing amino acid-based compounds (nonhydrolized L-carnosine, histidine), chaperone agents (such as, L-carnosine, D-pantethine), glutathione-boosting agents (N-acetylcysteine, vitamin E, methionine), and N-acetylcarnosine eye drops plays key roles in the function and maintenance of the redox systems in the aging eye and in the treatment of human cataract disease. A novel patented oral health supplement is presented which enhances the anticataract activity of eye drops and activates functional visual acuity. The clinical data demonstrate the effectiveness and safety of a combined oral health care treatment with amino acids possessing chaperone-like activity with N-acetylcarnosine lubricant eye drops. L-carnosine and N-acetylcarnosine protected the chaperone activity of alpha-crystallin and reduced the increased posttranslational modifications of lens proteins. Biological activities of the nonhydrolyzed carnosine in the oral formulation are based on its antioxidant and antiglycating (transglycating) action that, in addition to heavy metal chelation and pH-buffering ability, makes carnosine an essential factor for preventing sight-threatening eye disorders having oxidative stress in their pathogenesis, neurodegeneration, and accumulation of senile features. The findings suggest that synergism is required between carnosine or other imidazole-containing compounds and reduced glutathione in tissues and cells for efficacious protection from protein carbonylation as a biomarker for the ability of the non-toxic compounds to reduce oxidative stress. Potential therapeutic applications of oral forms of nonhydrolized carnosine and their specific mechanisms to manage telomere attrition and vascular aging might help elderly patients to withstand the problems of sight-threatening eye diseases related to oxidative stress and accelerated biological ageing in linked with earlier onset of diseases.

摘要

白内障,即晶状体混浊,是老年人视力下降的常见原因之一,全球估计有 1600 万人受到影响。营养补充在预防眼部疾病的发生或进展方面引起了医疗保健专业人员和患者的兴趣。衰老的眼睛似乎面临着相当大的氧化应激风险。本文概述了新的营养策略在与年龄相关的眼部疾病中的氧化还原平衡中的潜在作用,并详细说明了含咪唑氨基酸基化合物(未水解的 L-肉碱、组氨酸)、伴侣剂(如 L-肉碱、D-泛酰硫乙胺酸)、谷胱甘肽增强剂(N-乙酰半胱氨酸、维生素 E、蛋氨酸)和 N-乙酰 L-肉碱滴眼液的协同作用和相互作用如何在衰老眼睛的氧化还原系统的功能和维持中以及在人类白内障疾病的治疗中发挥关键作用。提出了一种新型专利口服保健补充剂,可增强滴眼液的抗白内障活性并激活功能性视力。临床数据表明,具有伴侣样活性的氨基酸与 N-乙酰 L-肉碱润眼液联合进行口腔保健治疗的有效性和安全性。L-肉碱和 N-乙酰 L-肉碱保护了α-晶体蛋白的伴侣活性,并减少了晶状体蛋白的翻译后修饰增加。口服制剂中未水解的肉碱的生物学活性基于其抗氧化和抗糖化(转糖化)作用,除了重金属螯合和 pH 缓冲能力外,使肉碱成为预防具有氧化应激发病机制、神经退行性变和衰老特征积累的威胁视力的眼部疾病的重要因素。研究结果表明,在组织和细胞中,肉碱或其他含咪唑的化合物与还原型谷胱甘肽之间需要协同作用,才能有效地防止蛋白质羰基化作为无毒化合物降低氧化应激能力的生物标志物。口服非水解肉碱的潜在治疗应用及其特定机制来管理端粒磨损和血管老化可能有助于老年患者耐受与氧化应激和与疾病更早发作相关的加速生物衰老相关的威胁视力的眼部疾病的问题。

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