Li Run-Ze, Wang Xuan-Run, Wang Jian, Xie Chun, Wang Xing-Xia, Pan Hu-Dan, Meng Wei-Yu, Liang Tu-Liang, Li Jia-Xin, Yan Pei-Yu, Wu Qi-Biao, Liu Liang, Yao Xiao-Jun, Leung Elaine Lai-Han
State Key Laboratory of Dampness Syndrome of Chinese Medicine, The Second Affiliated Hospital of Guangzhou University of Chinese Medicine (Guangdong Provincial Hospital of Chinese Medicine), Guangzhou, China.
Guangdong-Hong Kong-Macau Joint Lab on Chinese Medicine and Immune Disease Research, Macao, Macao SAR, China.
Front Oncol. 2022 Jul 27;12:941643. doi: 10.3389/fonc.2022.941643. eCollection 2022.
Biologically active sphingolipids are closely related to the growth, differentiation, aging, and apoptosis of cancer cells. Some sphingolipids, such as ceramides, are favorable metabolites in the sphingolipid metabolic pathway, usually mediating antiproliferative responses, through inhibiting cancer cell growth and migration, as well as inducing autophagy and apoptosis. However, other sphingolipids, such as S1P, play the opposite role, which induces cancer cell transformation, migration and growth and promotes drug resistance. There are also other sphingolipids, as well as enzymes, played potentially critical roles in cancer physiology and therapeutics. This review aimed to explore the important roles of sphingolipid metabolism in cancer. In this article, we summarized the role and value of sphingolipid metabolism in cancer, including the distribution of sphingolipids, the functions, and their relevance to cancer diagnosis and prognosis. We also summarized the known and potential antitumor targets present in sphingolipid metabolism, analyzed the correlation between sphingolipid metabolism and tumor immunity, and summarize the antitumor effects of natural compounds based on sphingolipids. Through the analysis and summary of sphingolipid antitumor therapeutic targets and immune correlation, we aim to provide ideas for the development of new antitumor drugs, exploration of new therapeutic means for tumors, and study of immunotherapy resistance mechanisms.
生物活性鞘脂与癌细胞的生长、分化、衰老及凋亡密切相关。一些鞘脂,如神经酰胺,是鞘脂代谢途径中的有益代谢产物,通常通过抑制癌细胞生长和迁移以及诱导自噬和凋亡来介导抗增殖反应。然而,其他鞘脂,如1-磷酸鞘氨醇(S1P),则发挥相反作用,它可诱导癌细胞转化、迁移和生长并促进耐药性。还有其他鞘脂以及酶在癌症生理学和治疗中发挥着潜在的关键作用。本综述旨在探讨鞘脂代谢在癌症中的重要作用。在本文中,我们总结了鞘脂代谢在癌症中的作用和价值,包括鞘脂的分布、功能及其与癌症诊断和预后的相关性。我们还总结了鞘脂代谢中已知的和潜在的抗肿瘤靶点,分析了鞘脂代谢与肿瘤免疫的相关性,并总结了基于鞘脂的天然化合物的抗肿瘤作用。通过对鞘脂抗肿瘤治疗靶点及免疫相关性的分析和总结,我们旨在为开发新型抗肿瘤药物、探索肿瘤新治疗手段以及研究免疫治疗耐药机制提供思路。