Department of Cardiology, Xiamen Cardiovascular Hospital of Xiamen University, School of Medicine, Xiamen University, Fujian, China.
Curr Mol Med. 2023;23(10):1066-1076. doi: 10.2174/1566524023666221121105933.
Leptin, as one of the most important cytokines within the circulation, has been confirmed to play a vital role in the hypothalamus of the central nervous system (CNS), which could modulate energy homeostasis by suppressing food intake. Furthermore, leptin could also influence cell metabolism by acting directly on the leptin receptor, which is a relatively small peptide and is mainly produced and released by fat tissue in mammals. On the other hand, the excessive extracellular matrix (ECM) could induce damage in normal tissues or organ structures, which might further induce fibrotic development in multiple tissues or organs, including the liver, heart, and kidneys. Notably, the sustainable development of fibrosis promotes the structural lesion and functional decline of different organs, which subsequently threatens human health and poses serious risks to human life. Emerging evidence has shown that leptin plays an important role in the fibrotic progression within multiple tissues and organs in mammals and has an alleviating effect on fibrosis. Concerning this notion, it has been proposed that leptin could be identified as a vital therapeutic strategy for fibrotic progression in clinical practice. Consequently, this review summarized the potential mechanisms of leptin in modulating fibrotic development in diverse tissues and organs to provide a theoretical basis for treating fibrotic-related diseases. In addition, the potential mechanisms whereby leptin affects the development of fibrosis were also summarized in the current review.
瘦素作为循环中最重要的细胞因子之一,已被证实在中枢神经系统(CNS)的下丘脑发挥着重要作用,通过抑制食物摄入来调节能量平衡。此外,瘦素还可以通过直接作用于瘦素受体来影响细胞代谢,瘦素受体是一种相对较小的肽,主要由哺乳动物的脂肪组织产生和释放。另一方面,细胞外基质(ECM)的过度积累会导致正常组织或器官结构受损,进而可能导致包括肝脏、心脏和肾脏在内的多种组织或器官发生纤维化。值得注意的是,纤维化的持续发展会促进不同器官的结构损伤和功能下降,从而威胁人类健康,对人类生命构成严重威胁。新出现的证据表明,瘦素在哺乳动物多种组织和器官的纤维化进展中发挥着重要作用,并对纤维化具有缓解作用。鉴于这一观点,有人提出瘦素可以作为临床治疗纤维化进展的重要治疗策略。因此,本综述总结了瘦素调节不同组织和器官纤维化发展的潜在机制,为治疗与纤维化相关的疾病提供了理论依据。此外,本综述还总结了瘦素影响纤维化发展的潜在机制。