Ye Qingmei, Zhou Xin, Han Fangxuan, Zheng Caijuan
Key Laboratory of Tropical Medicinal Resource Chemistry of Ministry of Education, Key Laboratory of Tropical Medicinal Plant Chemistry of Hainan Province, College of Chemistry and Chemical Engineering, Hainan Normal University, Haikou, Hainan, China.
Hainan General Hospital & Hainan Affiliated Hospital of Hainan Medical University, Haikou, Hainan, China.
Front Chem. 2023 Mar 16;11:1137547. doi: 10.3389/fchem.2023.1137547. eCollection 2023.
Cancer is the second leading cause of death worldwide. Specially, the high incidence rate and prevalence of drug resistance have rendered prostate cancer (PCa) a great threat to men's health. Novel modalities with different structures or mechanisms are in urgent need to overcome these two challenges. Traditional Chinese medicine toad venom-derived agents (TVAs) have shown to possess versatile bioactivities in treating certain diseases including PCa. In this work, we attempted to have an overview of bufadienolides, the major bioactive components in TVAs, in the treatment of PCa in the past decade, including their derivatives developed by medicinal chemists to antagonize certain drawbacks of bufadienolides such as innate toxic effect to normal cells. Generally, bufadienolides can effectively induce apoptosis and suppress PCa cells and , majorly mediated by regulating certain microRNAs/long non-coding RNAs, or by modulating key pro-survival and pro-metastasis players in PCa. Importantly, critical obstacles and challenges using TVAs will be discussed and possible solutions and future perspectives will also be presented in this review. Further in-depth studies are clearly needed to decipher the mechanisms, e.g., targets and pathways, toxic effects and fully reveal their application. The information collected in this work may help evoke more effects in developing bufadienolides as therapeutic agents in PCa.
癌症是全球第二大致死原因。特别地,高发病率和耐药性已使前列腺癌(PCa)对男性健康构成巨大威胁。迫切需要具有不同结构或机制的新型治疗方法来克服这两大挑战。中药蟾酥衍生剂(TVAs)已显示出在治疗包括PCa在内的某些疾病方面具有多种生物活性。在这项工作中,我们试图概述过去十年中TVAs的主要生物活性成分蟾蜍二烯内酯在PCa治疗中的应用,包括药物化学家开发的其衍生物,以对抗蟾蜍二烯内酯对正常细胞的固有毒性等某些缺点。一般来说,蟾蜍二烯内酯可以有效诱导细胞凋亡并抑制PCa细胞,主要通过调节某些微小RNA/长链非编码RNA,或通过调节PCa中的关键促生存和促转移因子来实现。重要的是,本文将讨论使用TVAs的关键障碍和挑战,并提出可能的解决方案和未来展望。显然需要进一步深入研究来阐明其机制,例如靶点和途径、毒性作用,并充分揭示其应用。本研究收集的信息可能有助于在开发蟾蜍二烯内酯作为PCa治疗药物方面发挥更大作用。