Structure-Function-Environment Relationship of the Isomers Zeaxanthin and Lutein

Photochem Pub Date : 2022-04-18 DOI:10.3390/photochem2020022
B. Demmig-Adams, S. K. Polutchko, W. W. Adams
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引用次数: 13

Abstract

A synthesis is provided of the roles of the carotenoids zeaxanthin and/or lutein in opposing (i) photodamage in plants, (ii) photodamage to the human eye as well as cognitive dysfunction and a host of human diseases and disorders, and (iii) damage to extremophile microorganisms in the most inhospitable environments on earth. Selected examples are used to examine microenvironments and basic biological structures with which these xanthophylls associate as well as the effect of the organisms’ external environment. An overview is presented of the multiple principal mechanisms through which these xanthophylls can directly or indirectly impact organisms’ internal redox (oxidant/antioxidant) balance that provides input into the orchestration of growth, development, and defense in prokaryotic microorganisms, plants, and humans. Gaps in the research are identified, specifically with respect to the need for further in vivo assessment of the mechanisms.
玉米黄质和叶黄素异构体的结构-功能-环境关系
合成了类胡萝卜素玉米黄质和/或叶黄素在对抗(i)植物的光损伤,(ii)人眼的光损伤以及认知功能障碍和许多人类疾病和失调中的作用,以及(iii)在地球上最不适宜居住的环境中对极端微生物的损伤。选定的例子用于检查与这些叶黄素相关的微环境和基本生物结构以及生物体外部环境的影响。本文概述了这些叶黄素直接或间接影响生物体内氧化还原(氧化剂/抗氧化剂)平衡的多种主要机制,这些氧化还原平衡为原核微生物、植物和人类的生长、发育和防御提供了输入。确定了研究中的空白,特别是需要进一步对其机制进行体内评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.60
自引率
0.00%
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