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同型精氨酸与健康和疾病

Homoarginine in health and disease.

作者信息

Tsikas Dimitrios

机构信息

Institute of Toxicology, Core Unit Proteomics, Hannover Medical School, Hannover, Germany.

出版信息

Curr Opin Clin Nutr Metab Care. 2023 Jan 1;26(1):42-49. doi: 10.1097/MCO.0000000000000889. Epub 2022 Nov 3.

Abstract

PURPOSE OF REVIEW

Homoarginine (hArg) is an endogenous, nonproteinogenic amino acid. It is enzymatically synthesized from L-arginine and L-lysine. Low hArg concentrations appear to be a risk factor in the renal and cardiovascular systems. This review discusses advances in-vitro and in-vivo experimental and clinical research on hArg in health and disease.

RECENT FINDINGS

Recent studies indicate that low circulating and low urinary concentrations of hArg are associated with morbidity and worse outcome. Although the biological activities of hArg remain still unexplored, hArg supplementation is intensely investigated as a strategy to increase hArg concentration to reach normal levels in cases of low hArg concentrations. The greatest changes in circulating hArg concentrations are observed during pregnancy and after delivery. In healthy adults, a daily dose of 125 mg hArg seems to be optimum to normalize circulating levels. Short-term supplementation of inorganic nitrate enhances hArg biosynthesis in healthy young men. Apart from hArg supplementation, dietary L-arginine and L-citrulline appear to be a promising alternative.

SUMMARY

Considerable progress has been made in recent years, but hArg remains still enigmatic. Further research is required to explore the biological activities of hArg. Supplementation of hArg or its precursors L-citrulline/L-arginine seem to be promising strategies to prevent and overcome altered hArg synthesis.

摘要

综述目的

高瓜氨酸(hArg)是一种内源性非蛋白质氨基酸。它由L-精氨酸和L-赖氨酸通过酶促合成。低hArg浓度似乎是肾脏和心血管系统的一个危险因素。本综述讨论了hArg在健康和疾病方面的体外和体内实验及临床研究进展。

最新发现

近期研究表明,循环中及尿液中hArg浓度低与发病率及不良预后相关。尽管hArg的生物学活性仍未得到充分研究,但作为一种在hArg浓度低的情况下提高hArg浓度至正常水平的策略,hArg补充剂正受到深入研究。孕期及产后循环中hArg浓度变化最大。在健康成年人中,每日125毫克hArg的剂量似乎最有利于使循环水平正常化。短期补充无机硝酸盐可增强健康年轻男性体内hArg的生物合成。除了补充hArg外,膳食中的L-精氨酸和L-瓜氨酸似乎也是一种有前景的替代方法。

总结

近年来已取得了相当大的进展,但hArg仍然充满谜团。需要进一步研究来探索hArg的生物学活性。补充hArg或其前体L-瓜氨酸/L-精氨酸似乎是预防和克服hArg合成改变的有前景的策略。

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