Ji Xiaozhen, Liu Kai, Li Qingyue, Shen Qun, Han Fangxuan, Ye Qingmei, Zheng Caijuan
Hainan General Hospital and Hainan Affiliated Hospital of Hainan Medical University, Haikou, China.
Key Laboratory of Tropical Medicinal Plant Chemistry of Ministry of Education, College of Chemistry and Chemical Engineering, Hainan Normal University, Haikou, China.
Front Pharmacol. 2022 Mar 11;13:851589. doi: 10.3389/fphar.2022.851589. eCollection 2022.
The initial responses to standard chemotherapies among prostate cancer (PCa) patients are usually significant, while most of them will finally develop drug resistance, rendering them with limited therapies. To discover new regimens for the treatment of PCa including resistant PCa, natural products, the richest source of bioactive compounds, can serve as a library for screening and identifying promising candidates, and flavones such as apigenin and genistein have been used in lab and clinical trials for treating PCa over decades. In this mini-review, we take a look into the progress of apigenin and genistein, which are isomers, in treating PCa in the past decade. While possessing very similar structure, these two isomers can both target the same signaling pathways; they also are found to work differently in PCa cells. Given that more combinations are being developed and tested, genistein appears to be the more promising option to be approved. The anticancer efficacies of these two flavones can be confirmed by and studies, and their applications remain to be validated in clinical trials. Information gained in this work may provide important information for new drug development and the potential application of apigenin and genistein in treating PCa.
前列腺癌(PCa)患者对标准化疗的初始反应通常较为显著,但大多数患者最终会产生耐药性,导致治疗手段有限。为了发现包括耐药性PCa在内的PCa治疗新方案,天然产物作为生物活性化合物的最丰富来源,可作为筛选和鉴定有前景候选物的库,几十年来,芹菜素和染料木黄酮等黄酮类化合物已用于实验室和临床试验治疗PCa。在本综述中,我们探讨了同分异构体芹菜素和染料木黄酮在过去十年中治疗PCa的进展。虽然这两种同分异构体结构非常相似,但它们都能靶向相同的信号通路;同时发现它们在PCa细胞中的作用方式有所不同。鉴于正在开发和测试更多的联合用药方案,染料木黄酮似乎是更有希望获批的选择。这两种黄酮类化合物的抗癌疗效可通过[具体研究]和[具体研究]得到证实,它们的应用仍有待在临床试验中验证。本研究获得的信息可能为新药开发以及芹菜素和染料木黄酮在治疗PCa中的潜在应用提供重要信息。