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从人类脂肪组织建立的多能细胞的脂肪细胞分化。

Adipocyte differentiation of multipotent cells established from human adipose tissue.

作者信息

Rodriguez Anne-Marie, Elabd Christian, Delteil Frédéric, Astier Julien, Vernochet Cécile, Saint-Marc Perla, Guesnet Joëlle, Guezennec Anne, Amri Ez-Zoubir, Dani Christian, Ailhaud Gérard

机构信息

Institut de Recherche Signalisation, Biologie du Développement et Cancer, UMR 6543 CNRS, Centre de Biochimie, Faculté des Sciences, Parc Valrose, 06108 Nice cedex 2, France.

出版信息

Biochem Biophys Res Commun. 2004 Mar 5;315(2):255-63. doi: 10.1016/j.bbrc.2004.01.053.

Abstract

In this study multipotent adipose-derived stem cells isolated from human adipose tissue (hMADS cells) were shown to differentiate into adipose cells in serum-free, chemically defined medium. During the differentiation process, hMADS cells exhibited a gene expression pattern similar to that described for rodent clonal preadipocytes and human primary preadipocytes. Differentiated cells displayed the key features of human adipocytes, i.e., expression of specific molecular markers, lipolytic response to agonists of beta-adrenoreceptors (beta2-AR agonist > beta1-AR agonist >> beta3-AR agonist) and to the atrial natriuretic peptide, insulin-stimulated glucose transport, and secretion of leptin and adiponectin. hMADS cells were able to respond to drugs as inhibition of adipocyte differentiation was observed in the presence of prostaglandin F2alpha, tumour necrosis factor-alpha, and nordihydroguaiaretic acid, a natural polyhydroxyphenolic antioxidant. Thus, for the first time, human adipose cells with normal karyotype and indefinite life span have been established. They represent a novel and valuable tool for studies of fat tissue development and metabolism.

摘要

在本研究中,从人脂肪组织分离得到的多能脂肪源性干细胞(hMADS细胞)在无血清、化学成分明确的培养基中被证明可分化为脂肪细胞。在分化过程中,hMADS细胞呈现出与啮齿动物克隆前脂肪细胞和人原代前脂肪细胞所描述的相似的基因表达模式。分化后的细胞表现出人类脂肪细胞的关键特征,即特定分子标志物的表达、对β-肾上腺素能受体激动剂(β2-AR激动剂>β1-AR激动剂>>β3-AR激动剂)和心房利钠肽的脂解反应、胰岛素刺激的葡萄糖转运以及瘦素和脂联素的分泌。hMADS细胞能够对药物产生反应,因为在前列腺素F2α、肿瘤坏死因子-α和去甲二氢愈创木酸(一种天然多羟基酚类抗氧化剂)存在的情况下观察到了脂肪细胞分化的抑制。因此,首次建立了具有正常核型和无限寿命的人脂肪细胞。它们代表了一种用于脂肪组织发育和代谢研究的新颖且有价值的工具。

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