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脂肪细胞不敏感综合征——解决包括肥胖及肥胖相关疾病在内的营养代谢问题的新方法。

Adipocyte insensitivity syndromes -- novel approach to nutritional metabolic problems including obesity and obesity related disorders.

作者信息

Erol Adnan

机构信息

Department of Internal Medicine, Silivri City Hospital, Ali Cetinkaya Cad, 34930 Silivri, Istanbul, Turkey.

出版信息

Med Hypotheses. 2005;64(4):826-32. doi: 10.1016/j.mehy.2004.09.017.

Abstract

Progresses in molecular biology have highlighted the central role of adipocytes in the development of obesity and other nutrition based disorders. Adipocytes, by virtue of their excellent and sensitive molecular machinery, seem to reflect nutritional alterations very precisely. Adipocyte determination and differentiation factor 1 (ADD1)/sterol regulatory element binding protein-1c (SREBP-1c), which is the main transcription factor, regulates the characteristic features of adipocyte, senses the glucose and fat excess and draws the excess into the adipocyte to preserve energy, and maintains the blood biochemistry within physiological ranges. ADD1/SREBP-1c has regulatory functions via transactivation over the other important mature adipocyte markers such as leptin, peroxisome proliferator-activated receptor gamma (PPARgamma) and lipogenic enzymes. In this paper, considering to the role of ADD1/SREBP-1c on adipogenic markers, two new concepts have been defined: the first is sensitive adipocyte, implying a fat cell that functions perfectly at molecular level; and the second is adipocyte insensitivity syndrome (AIS), in which deviations from the optimal function of adipocyte leads to various metabolic abnormalities. The two extreme ends for adipocyte function; obesity and lipodystrophy, and intermediate spectrums between these are categorized into four subgroups. According to this categorization, responses of adipogenic markers to the stimulation of the master transcription factor, ADD1/SREBP-1c might be different in adipocytes: higher lipogenic enzymes activities in type I AIS, insufficient transactivation of leptin in type II AIS, failure in the expression of PPARgamma in type III AIS, and insufficient increases of lipogenic enzymes in type IV AIS. The novel AIS classification, which asserts that the adipocyte has a central importance for the development of metabolic devastating diseases like obesity, metabolic syndrome, type 2 diabetes and atherosclerosis, provides simpler but effective answers for the puzzle by unifying the recent, good quality studies and points out to new therapeutic approaches, highlighting the possible molecular defects.

摘要

分子生物学的进展凸显了脂肪细胞在肥胖及其他营养相关疾病发生发展中的核心作用。脂肪细胞凭借其出色且灵敏的分子机制,似乎能非常精确地反映营养变化。脂肪细胞决定和分化因子1(ADD1)/固醇调节元件结合蛋白-1c(SREBP-1c)作为主要转录因子,调控着脂肪细胞的特征,感知葡萄糖和脂肪过剩情况,并将多余物质吸入脂肪细胞以储存能量,同时使血液生化指标维持在生理范围内。ADD1/SREBP-1c通过对其他重要的成熟脂肪细胞标志物(如瘦素、过氧化物酶体增殖物激活受体γ(PPARγ)和生脂酶)的反式激活发挥调节功能。本文基于ADD1/SREBP-1c对脂肪生成标志物的作用,定义了两个新概念:第一个是敏感脂肪细胞,指在分子水平功能完美的脂肪细胞;第二个是脂肪细胞不敏感综合征(AIS),即脂肪细胞功能偏离最佳状态会导致各种代谢异常。脂肪细胞功能的两个极端情况——肥胖和脂肪营养不良,以及它们之间的中间状态被分为四个亚组。根据这种分类,脂肪生成标志物对主要转录因子ADD1/SREBP-1c刺激的反应在不同亚组的脂肪细胞中可能不同:I型AIS中生脂酶活性较高,II型AIS中瘦素的反式激活不足,III型AIS中PPARγ表达缺失,IV型AIS中生脂酶增加不足。新的AIS分类表明脂肪细胞在肥胖、代谢综合征、2型糖尿病和动脉粥样硬化等代谢性破坏性疾病的发生发展中至关重要,通过整合近期高质量研究为这一难题提供了更简单但有效的答案,并指出了新的治疗方法,突出了可能的分子缺陷。

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