Otasevic Vesna, Korac Aleksandra, Buzadzic Biljana, Stancic Ana, Jankovic Aleksandra, Korac Bato
Department of Physiology, Institute for Biological Research, Sinisa Stankovic, University of Belgrade, Belgrade, Serbia.
Front Biosci (Schol Ed). 2011 Jun 1;3(3):1180-95. doi: 10.2741/219.
Only recently we can link thermogenesis, mitochondria, nitric oxide, and redox regulation in biochemical terms. Currently, we are discussing these processes from the aspect of fundamental principles of molecular physiology. Thus, the present article highlights both cell physiology and the principles of the maintenance of energy homeostasis in organisms. Energy homeostasis means much more than simple combustion; adipose tissues at this point of evolution development are related to a broad spectrum of metabolic disturbances and all aspects of cellular remodeling (i.e. structural, metabolic and endocrine changes). Therefore, this paper addresses not only thermogenesis but also energy homeostasis, oxidative phosphorylation and ATP production, proliferation and differentiation of brown adipocytes, their life and death, mitochondriogenesis and angiogenesis. These processes will be united by molecular players of oxidation/reduction reactions, thus creating the principles based on the redox regulation.
直到最近,我们才能够从生化角度将产热、线粒体、一氧化氮和氧化还原调节联系起来。目前,我们正从分子生理学基本原理的角度来探讨这些过程。因此,本文重点介绍了细胞生理学以及生物体能量稳态维持的原理。能量稳态远不止简单的燃烧;在进化发展的这个阶段,脂肪组织与广泛的代谢紊乱以及细胞重塑的各个方面(即结构、代谢和内分泌变化)相关。因此,本文不仅探讨了产热,还涉及能量稳态、氧化磷酸化和ATP生成、棕色脂肪细胞的增殖和分化、它们的生死、线粒体生成和血管生成。这些过程将由氧化/还原反应的分子参与者统一起来,从而建立基于氧化还原调节的原理。