Koutsari Christina, Jensen Michael D
Endocrine Research Unit, Mayo Clinic, Rochester, MN 55905, USA.
J Lipid Res. 2006 Aug;47(8):1643-50. doi: 10.1194/jlr.R600011-JLR200. Epub 2006 May 9.
Adipose tissue lipolysis provides circulating FFAs to meet the body's lipid fuel demands. FFA release is well regulated in normal-weight individuals; however, in upper-body obesity, excess lipolysis is commonly seen. This abnormality is considered a cause for at least some of the metabolic defects (dyslipidemia, insulin resistance) associated with upper-body obesity. "Normal" lipolysis is sex-specific and largely determined by the individual's resting metabolic rate. Women have greater FFA release rates than men without higher FFA concentrations or greater fatty acid oxidation, indicating that they have greater nonoxidative FFA disposal, although the processes and tissues involved in this phenomenon are unknown. Therefore, women have the advantage of having greater FFA availability without exposing their tissues to higher and potentially harmful FFA concentrations. Upper-body fat is more lipolytically active than lower-body fat in both women and men. FFA released by the visceral fat depot contributes only a small percentage of systemic FFA delivery. Upper-body subcutaneous fat is the dominant contributor to circulating FFAs and the source of the excess FFA release in upper-body obesity. We believe that abnormalities in subcutaneous lipolysis could be more important than those in visceral lipolysis as a cause of peripheral insulin resistance. Understanding the regulation of FFA availability will help to discover new approaches to treat FFA-induced abnormalities in obesity.
脂肪组织的脂肪分解产生循环游离脂肪酸(FFA),以满足身体对脂质燃料的需求。在体重正常的个体中,FFA的释放受到良好调节;然而,在上半身肥胖人群中,脂肪分解过多的情况较为常见。这种异常被认为是与上半身肥胖相关的至少部分代谢缺陷(血脂异常、胰岛素抵抗)的一个原因。“正常”的脂肪分解具有性别特异性,很大程度上由个体的静息代谢率决定。女性的FFA释放率高于男性,但其FFA浓度并不更高,脂肪酸氧化也没有更剧烈,这表明女性具有更强的非氧化FFA处理能力,尽管参与这一现象的过程和组织尚不清楚。因此,女性具有优势,即有更多的FFA可利用,同时又不会使其组织暴露于更高且可能有害的FFA浓度下。无论男女,上半身脂肪的脂肪分解活性都高于下半身脂肪。内脏脂肪库释放的FFA仅占全身FFA供应的一小部分。上半身皮下脂肪是循环FFA的主要来源,也是上半身肥胖中FFA过度释放的源头。我们认为,皮下脂肪分解异常作为外周胰岛素抵抗的一个原因,可能比内脏脂肪分解异常更为重要。了解FFA可用性的调节机制将有助于发现治疗肥胖中FFA诱导异常的新方法。