首页> 外文期刊>Journal of experimental & clinical cancer research : >Exosomes from?the tumour-adipocyte interplay stimulate beige/brown differentiation and reprogram metabolism in stromal adipocytes to promote tumour progression
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Exosomes from?the tumour-adipocyte interplay stimulate beige/brown differentiation and reprogram metabolism in stromal adipocytes to promote tumour progression

机译:来自肿瘤-脂肪细胞相互作用的外泌体刺激米色/棕色分化并重编程基质脂肪细胞中的代谢以促进肿瘤进展

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Emerging evidence supports the pivotal roles of adipocytes in breast cancer progression. Tumour induced beige/brown adipose tissue differentiation contributes to the hypermetabolic state of the breast cancer. However, the mediators and mechanisms remain unclear. Survival probabilities were estimated using the Kaplan–Meier method based on immunohistochemistry results. Biochemical studies were performed to characterize the novel interrelation between breast cancer cells and adipocytes. We show that tumour-surrounding adipocytes exhibit an altered phenotype in terms of upregulated beige/brown characteristics and increased catabolism associated with an activated state characterized by the release of metabolites, including free fatty acids, pyruvate, lactate and ketone bodies. Likewise, tumour cells cocultivated with mature adipocytes exhibit metabolic adaptation and an aggressive phenotype in vitro and in vivo. Mechanistically, we show that tumour cells induce beige/brown differentiation and remodel metabolism in resident adipocytes by exosomes from the co-culture system that carry high levels of miRNA-144 and miRNA-126. miRNA-144 promotes beige/brown adipocyte characteristics by downregulating the MAP3K8/ERK1/2/PPARγ axis, and exosomal miRNA-126 remodels metabolism by disrupting IRS/Glut-4 signalling, activating the AMPK/autophagy pathway and stabilizing HIF1α expression in imminent adipocytes. In vivo inhibition of miRNA-144 or miRNA-126 decreases adipocyte–induced tumour growth. These results demonstrate that by inducing beige/brown differentiation and enhancing catabolism in recipient adipocytes, exosomal miRNA-144 and miRNA-126 from the tumour-adipocyte interaction reprogram systemic energy metabolism to facilitate tumour progression.
机译:越来越多的证据支持脂肪细胞在乳腺癌进展中的关键作用。肿瘤引起的米色/棕色脂肪组织分化促进了乳腺癌的高代谢状态。但是,调解人和机制仍不清楚。根据免疫组织化学结果,使用Kaplan-Meier方法估算生存率。进行了生化研究以表征乳腺癌细胞和脂肪细胞之间的新型相互关系。我们显示,围绕肿瘤的脂肪细胞在上调的米色/棕色特征方面表现出改变的表型,并具有与代谢产物(包括游离脂肪酸,丙酮酸,乳酸和酮体)释放为特征的活化态相关的分解代谢。同样,与成熟脂肪细胞共培养的肿瘤细胞在体外和体内均表现出代谢适应性和侵略性表型。从机制上讲,我们显示肿瘤细胞诱导米色/棕色分化,并通过携带高水平miRNA-144和miRNA-126的共培养系统的外泌体重塑常驻脂肪细胞中的代谢。 miRNA-144通过下调MAP3K8 / ERK1 / 2 /PPARγ轴来促进米色/棕色脂肪细胞特性,而外泌体miRNA-126通过破坏IRS / Glut-4信号传导,激活AMPK /自噬途径并稳定临近的脂肪细胞中的HIF1α表达来重塑代谢。 。体内抑制miRNA-144或miRNA-126会降低脂肪细胞诱导的肿瘤生长。这些结果表明,通过诱导米色/棕色分化并增强受体脂肪细胞的分解代谢,来自肿瘤-脂肪细胞相互作用的外泌体miRNA-144和miRNA-126重新编程系统能量代谢,以促进肿瘤进展。

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