University of Liverpool, School of Biological Sciences, Crown Street, Liverpool, L69 7ZB, United Kingdom.
Biochim Biophys Acta Mol Cell Biol Lipids. 2020 Nov;1865(11):158699. doi: 10.1016/j.bbalip.2020.158699. Epub 2020 Mar 20.
The history of carotenoid research as this progressed from chemistry to biochemistry and biology is outlined. Proposed roles of carotenoids in eye health, as antioxidants, and in protection against cancer and other degenerative diseases, as well as stimulatory effects on the immune system and metabolism are covered. Proposed biological actions must be consistent with the chemistry of carotenoids in the largely aqueous biological systems, which may differ from the known chemistry of carotenoids in organic solvents. In particular, carotenoids tend to form aggregates. The effects of this aggregation and of other molecular interactions in vivo are likely to be crucial to biological activity. These perspectives of the chemistry of carotenoids and carotenoid free radicals are examined and the need for carotenoid samples used in experimental work to be pure and free from breakdown products and pro-oxidant peroxides is emphasised. This article is part of a Special Issue entitled Carotenoids recent advances in cell and molecular biology edited by Johannes von Lintig and Loredana Quadro.
本文概述了类胡萝卜素研究的历史,从化学到生物化学和生物学的发展过程。涵盖了类胡萝卜素在眼睛健康、抗氧化剂、预防癌症和其他退行性疾病方面的作用,以及对免疫系统和新陈代谢的刺激作用。提出的生物学作用必须与类胡萝卜素在主要为水相的生物体系中的化学性质相一致,这可能与有机溶剂中已知的类胡萝卜素化学性质不同。特别是,类胡萝卜素往往会形成聚集体。这种聚集和体内其他分子相互作用的影响可能对生物活性至关重要。本文从类胡萝卜素化学和类胡萝卜素自由基的角度进行了考察,并强调了实验工作中使用的类胡萝卜素样品必须是纯净的,没有分解产物和促氧化剂过氧化物。本文是由 Johannes von Lintig 和 Loredana Quadro 编辑的题为“类胡萝卜素:细胞和分子生物学的最新进展”特刊的一部分。