Pherez-Farah Alfredo, López-Sánchez Rosa Del Carmen, Villela-Martínez Luis Mario, Ortiz-López Rocío, Beltrán Brady E, Hernández-Hernández José Ascención
Tecnologico de Monterrey, Escuela de Medicina y Ciencias de la Salud, Monterrey 64710, Nuevo Leon, Mexico.
Facultad de Medicina, Universidad Autónoma de Sinaloa, Culiacán Rosales 80030, Sinaloa, Mexico.
Cancers (Basel). 2022 Apr 19;14(9):2051. doi: 10.3390/cancers14092051.
Lymphomas are a highly heterogeneous group of hematological neoplasms. Given their ethiopathogenic complexity, their classification and management can become difficult tasks; therefore, new approaches are continuously being sought. Metabolic reprogramming at the lipid level is a hot topic in cancer research, and sphingolipidomics has gained particular focus in this area due to the bioactive nature of molecules such as sphingoid bases, sphingosine-1-phosphate, ceramides, sphingomyelin, cerebrosides, globosides, and gangliosides. Sphingolipid metabolism has become especially exciting because they are involved in virtually every cellular process through an extremely intricate metabolic web; in fact, no two sphingolipids share the same fate. Unsurprisingly, a disruption at this level is a recurrent mechanism in lymphomagenesis, dissemination, and chemoresistance, which means potential biomarkers and therapeutical targets might be hiding within these pathways. Many comprehensive reviews describing their role in cancer exist, but because most research has been conducted in solid malignancies, evidence in lymphomagenesis is somewhat limited. In this review, we summarize key aspects of sphingolipid biochemistry and discuss their known impact in cancer biology, with a particular focus on lymphomas and possible therapeutical strategies against them.
淋巴瘤是一类高度异质性的血液系统肿瘤。鉴于其发病机制的复杂性,对它们的分类和管理可能成为艰巨的任务;因此,人们一直在不断寻求新的方法。脂质水平的代谢重编程是癌症研究中的一个热门话题,由于鞘脂类(如鞘氨醇碱基、1-磷酸鞘氨醇、神经酰胺、鞘磷脂、脑苷脂、球苷脂和神经节苷脂)等分子具有生物活性,鞘脂组学在这一领域受到了特别关注。鞘脂代谢尤其令人兴奋,因为它们通过极其复杂的代谢网络参与几乎每一个细胞过程;事实上,没有两种鞘脂具有相同的命运。不出所料,这一水平的紊乱是淋巴瘤发生、扩散和化疗耐药的常见机制,这意味着潜在的生物标志物和治疗靶点可能隐藏在这些途径之中。虽然已有许多全面的综述描述了它们在癌症中的作用,但由于大多数研究是在实体恶性肿瘤中进行的,因此关于淋巴瘤发生的证据在一定程度上有限。在本综述中,我们总结了鞘脂生物化学的关键方面,并讨论了它们在癌症生物学中的已知影响,特别关注淋巴瘤以及针对它们的可能治疗策略。