Herrera Arturo S, Solís Arias Paola E, Esparza María Del C A, Bernal Luis F T, Bondarev Andrey D, Fisenko Vladimir P, Chubarev Vladimir N, Minyaeva Nina N, Mikhaleva Liudmila M, Tarasov Vadim V, Somasundaram Siva G, Kirkland Cecil E, Aliev Gjumrakch
1Human Photosynthesis Study Centre, Aguascalientes, Mexico; 2Universidad Autónoma de Aguascalientes, Aguascalientes, Ags., Mexico; 3Asociación para Evitar la Ceguera en México, I.A.P., Mexico City, Mexico; 4I. M. Seche-nov First Moscow State Medical University of the Ministry of Health of the Russian Federation (Sechenov University), Moscow, Russian Federation; 5National Research University Higher School of Economics, 20 Myasnitskaya Street, Moscow101000, Russian Federation; 6Research Institute of Human Morphology, 3 Tsyurupy Street, Moscow117418, Russian Federation; 7Department of Biological Sciences, Salem University, Salem, WV, USA; 8Institute of Physiologically Active Compounds of the Russian Academy of Sciences, Chernogolovka, Russia; 9GALLY International Research Institute, San Antonio, TX- 78229, USA.
Curr Genomics. 2020 Nov;21(7):525-530. doi: 10.2174/1389202921999200417172817.
The ability of the human body to produce metabolic energy from light modifies fundamental concepts of biochemistry.
This review discusses the relationships between the long-accepted concept is that glucose has a unique dual role as an energy source and as the main source of carbon chains that are precursors of all organic matter. The capability of melanin to produce energy challenges this premise.
The prevalent biochemical concept, therefore, needs to be adjusted to incorporate a newly discovered state of Nature based on melanin's ability to dissociate water to produce energy and to re-form water from molecular hydrogen and oxygen.
Our findings regarding the potential implication of QIAPI-1 as a melanin precursor that has bioenergetics capabilities.
Specifically, we reported its promising application as a means for treating retinopathy of prematurity (ROP). The instant report focuses on the long-term treatment medical effects of melanin in treating ROP.
人体从光中产生代谢能量的能力改变了生物化学的基本概念。
本综述讨论了长期以来被接受的概念之间的关系,即葡萄糖作为能量来源和作为所有有机物前体的碳链的主要来源具有独特的双重作用。黑色素产生能量的能力对这一前提提出了挑战。
因此,普遍的生化概念需要调整,以纳入基于黑色素分解水产生能量以及从分子氢和氧重新形成水的能力而新发现的自然状态。
我们关于QIAPI-1作为具有生物能量学能力的黑色素前体的潜在影响的发现。
具体而言,我们报告了其作为治疗早产儿视网膜病变(ROP)的一种手段的有前景的应用。本即时报告重点关注黑色素治疗ROP的长期医学效果。