Tecnologico de Monterrey, Institute of Advanced Materials for Sustainable Manufacturing, Epigmenio González 500 Fracc. San Pablo, Querétaro, Qro 76130, Mexico.
Laboratorio Integral de Investigación en Alimentos, Tecnológico Nacional de México-Instituto Tecnológico de Tepic. Av. Tecnológico 2595 Fracc. Lagos del Country, Tepic, Nayarit 63175, Mexico.
Fitoterapia. 2024 Oct;178:106187. doi: 10.1016/j.fitote.2024.106187. Epub 2024 Aug 13.
Breast and gynecological cancers are major health concerns due to their increasing incidence rates, and in some cases, their low survival probability. In recent years, multiple compounds of natural origin have been analyzed as alternative treatments for this disease. For instance, Acetogenins are plant secondary metabolites from the Annonaceae family, and its potential anticancer activity has been reported against a wide range of cancer cells both in vitro and in vivo. Several studies have demonstrated promising results of Acetogenins' antitumor capacity, given their selective activity of cellular inhibition at low concentrations. This review outlines the origin, structure, and antineoplastic activities in vitro and in vivo of Acetogenins from Annonaceae against breast cancer and gynecological cancers reported to date. Here, we also provide a systematic summary of the activity and possible mechanisms of action of Acetogenins against these types of cancer and provide references for developing future therapies based on Acetogenins and nanotechnologies.
乳腺癌和妇科癌症是主要的健康关注点,因为它们的发病率不断上升,在某些情况下,它们的生存率较低。近年来,已经分析了多种天然来源的化合物作为治疗这种疾病的替代方法。例如,醋酸盐是来自番荔枝科的植物次生代谢物,其潜在的抗癌活性已被报道在体外和体内对多种癌细胞均有作用。多项研究表明,醋酸盐具有抗肿瘤能力,因为它们在低浓度下具有选择性的细胞抑制活性。本文综述了迄今为止报道的番荔枝科醋酸盐的来源、结构和体外及体内抗乳腺癌和妇科癌症的抗肿瘤活性。在这里,我们还系统地总结了醋酸盐对这些类型癌症的作用和可能的作用机制,并为基于醋酸盐和纳米技术开发未来疗法提供了参考。