Genomic Medicine Core Laboratory, Department of Medical Research and Development, Chang Gung Memorial Hospital, Linkou 333, Taiwan.
Genomics Research Center, Academia Sinica, Taipei 115, Taiwan.
Int J Mol Sci. 2021 Mar 11;22(6):2870. doi: 10.3390/ijms22062870.
Leptin is an obesity-associated adipokine that is known to regulate energy metabolism and reproduction and to control appetite via the leptin receptor. Recent work has identified specific cell types other than adipocytes that harbor leptin and leptin receptor expression, particularly in cancers and tumor microenvironments, and characterized the role of this signaling axis in cancer progression. Furthermore, the prognostic significance of leptin in various types of cancer and the ability to noninvasively detect leptin levels in serum samples have attracted attention for potential clinical applications. Emerging findings have demonstrated the direct and indirect biological effects of leptin in regulating cancer proliferation, metastasis, angiogenesis and chemoresistance, warranting the exploration of the underlying molecular mechanisms to develop a novel therapeutic strategy. In this review article, we summarize and integrate transcriptome and clinical data from cancer patients together with the recent findings related to the leptin signaling axis in the aforementioned malignant phenotypes. In addition, a comprehensive analysis of leptin and leptin receptor distribution in a pancancer panel and in individual cell types of specific organs at the single-cell level is presented, identifying those sites that are prone to leptin-mediated tumorigenesis. Our results shed light on the role of leptin in cancer and provide guidance and potential directions for further research for scientists in this field.
瘦素是一种与肥胖相关的脂肪因子,已知它通过瘦素受体调节能量代谢和生殖,并控制食欲。最近的研究已经确定了除脂肪细胞以外的特定细胞类型,这些细胞类型表达瘦素和瘦素受体,特别是在癌症和肿瘤微环境中,并描述了该信号轴在癌症进展中的作用。此外,瘦素在各种类型癌症中的预后意义以及在血清样本中无创检测瘦素水平的能力引起了人们对潜在临床应用的关注。新出现的研究结果表明,瘦素在调节癌症增殖、转移、血管生成和化疗耐药性方面具有直接和间接的生物学作用,这需要探索潜在的分子机制,以开发新的治疗策略。在这篇综述文章中,我们总结并整合了癌症患者的转录组和临床数据,以及与上述恶性表型中瘦素信号轴相关的最新发现。此外,我们还对泛癌面板和特定器官中单个细胞类型的瘦素和瘦素受体分布进行了全面分析,确定了那些易于发生瘦素介导的肿瘤形成的部位。我们的研究结果阐明了瘦素在癌症中的作用,并为该领域的科学家提供了指导和潜在的研究方向。