Cancer Science Institute of SingaporeDepartments of PharmacologySurgery, National University Health System, National University of Singapore, Singapore.
Clin Exp Pharmacol Physiol. 2012 Mar;39(3):311-20. doi: 10.1111/j.1440-1681.2011.05586.x.
1. Bioactive compounds from medicinal plants with anticancer and anti-inflammatory effects have become key resources in drug discovery fields for the treatment of various malignancies and immunological disorders. 2. Tripterygium wilfordii (TW) is a medicinal plant that exhibits profound immunosuppressive effects and has been used in herbal regimens for the treatment of immunological diseases for thousand years in China. 3. Procedures for the isolation and characterization of TW bioactive compounds have been well established. Over the past three decades, more than 46 diterpenoids, 20 new triterpenoids, 26 alkaloids and other small molecules have been identified from TW. 4. Triptolide, celastrol and tripchlorolide are among the bioactive compounds conferring the immunosuppressive and anticancer activities of TW. Accumulated evidence suggests that the TW bioactive compounds exert their pharmacological actions by modulating the transcriptional activity of nuclear factor-κB signalling molecule. 5. Triptolide derivatives with improved water solubility have emerged as promising drug candidates. Clinical trials are being conducted on the derivatives to provide encyclopaedic knowledge on triptolide pharmacokinetics in patients.
具有抗癌和抗炎作用的药用植物中的生物活性化合物已成为治疗各种恶性肿瘤和免疫性疾病的药物发现领域的关键资源。
雷公藤是一种具有深刻免疫抑制作用的药用植物,在中国,它已被用于治疗免疫性疾病的草药方剂中已有数千年的历史。
雷公藤生物活性化合物的分离和特性鉴定程序已经得到很好的确立。在过去的三十年中,已经从雷公藤中鉴定出了超过 46 种二萜、20 种新三萜、26 种生物碱和其他小分子。
雷公藤红素、雷公藤内酯和雷公藤内酯醇是赋予雷公藤免疫抑制和抗癌活性的生物活性化合物之一。有大量证据表明,雷公藤生物活性化合物通过调节核因子-κB 信号分子的转录活性发挥其药理作用。
水溶性得到改善的雷公藤红素衍生物已成为有前途的候选药物。正在对这些衍生物进行临床试验,以提供关于患者中雷公藤红素药代动力学的百科全书知识。