Sun Bin, Yuan Hui-qing, Xi Guang-min, Ma Yu-dao, Lou Hong-xiang
School of Pharmaceutical Sciences, Shandong University, Jinan 200012, PR China.
Bioorg Med Chem. 2009 Jul 15;17(14):4981-9. doi: 10.1016/j.bmc.2009.05.077. Epub 2009 Jun 6.
The macrocyclic bisbibenzyl dihydroptychantol A (DHA), previously isolated from Asterella angusta, was synthesized and showed significant multidrug resistance (MDR) reverting activity in chemoresistant cancer cells. In an attempt to discover more potent MDR reversal agents for efficient cancer chemotherapy, DHA derivatives with thiazole rings (19-22) were synthesized, and their cytotoxicities and MDR reversal activities were evaluated in adriamycin-resistant K562/A02, vincristine-resistant KB/VCR and in their parental cells by MTT assays. In response to treatment with each compound, the K562 cell line was the most sensitive, and the vincristine-resistant KB/VCR cell line was the most resistant. Marked decreases in K562 and K562/A02 cell viability were detectable after treatment with the synthesized derivatives of DHA, while less inhibitory effects on cell growth were observed in chemical-resistant KB/VCR and KB cells. Moreover, among the tested compounds, the intermediate 17 and the analogues 19, 20, and 21 showed potent MDR reversal activities and increased vincristine cytotoxicity in KB/VCR cells, with the reversal fold ranges from 10.54 to 13.81 (10microM), which is 3.2-4.3-fold stronger than the natural product DHA.
大环双苄基二氢松萝醇A(DHA),先前从狭叶紫背苔中分离得到,已被合成,并在耐化疗的癌细胞中显示出显著的多药耐药性(MDR)逆转活性。为了发现更有效的MDR逆转剂用于高效的癌症化疗,合成了带有噻唑环的DHA衍生物(19 - 22),并通过MTT法在耐阿霉素的K562/A02、耐长春新碱的KB/VCR及其亲本细胞中评估了它们的细胞毒性和MDR逆转活性。在对每种化合物的处理反应中,K562细胞系最敏感,而耐长春新碱的KB/VCR细胞系最耐药。用合成的DHA衍生物处理后,可检测到K562和K562/A02细胞活力显著下降,而在耐化学药物的KB/VCR和KB细胞中观察到对细胞生长的抑制作用较小。此外,在所测试的化合物中,中间体17以及类似物19、20和21在KB/VCR细胞中显示出强大的MDR逆转活性并增加了长春新碱的细胞毒性,逆转倍数范围为10.54至13.81(10微摩尔),比天然产物DHA强3.2 - 4.3倍。