Terranova Maria Letizia
Dip.to di Scienze e Tecnologie Chimiche, Università degli Studi di Roma "Tor Vergata", 00133 Roma, Italy.
Bioengineering (Basel). 2024 Jul 25;11(8):756. doi: 10.3390/bioengineering11080756.
This paper aims to highlight the physiological actions exerted by eumelanin present in several organs/tissues of the human body and to rationalise the often conflicting functional roles played by this biopolymer on the basis of its peculiar properties. Besides pigmentary disorders, a growing number of organ injuries and degenerative pathologies are presently ascribed to the modification of physiological eumelanin levels in terms of alterations in its chemical/structural features, and of a partial loss or uneven distribution of the pigment. The present review analyses the more recent research dedicated to the physiological and pathological actions of eumelanin and provides an insight into some melanogenesis-associated diseases of the skin, eye, ear, and brain, including the most significant neurodegenerative disorders. Also described are the potentialities of therapies based on the localised supply of exogeneous EU and the opportunities that EU produced via synthetic biology offers in order to redesign therapeutical and diagnostic applications.
本文旨在强调人体多个器官/组织中存在的真黑素所发挥的生理作用,并根据这种生物聚合物的独特性质,使其经常相互冲突的功能角色合理化。除色素沉着紊乱外,目前越来越多的器官损伤和退行性病变被归因于生理真黑素水平的改变,包括其化学/结构特征的改变,以及色素的部分丧失或分布不均。本综述分析了关于真黑素生理和病理作用的最新研究,并深入探讨了一些与黑素生成相关的皮肤、眼睛、耳朵和大脑疾病,包括最主要的神经退行性疾病。还介绍了基于外源性真黑素局部供应的治疗潜力,以及合成生物学产生的真黑素在重新设计治疗和诊断应用方面提供的机会。