Guangxi Key Lab of Agricultural Resources Chemistry and Biotechnology, College of Chemistry and Food Science, Yulin Normal University, 1303 Jiaoyudong Road, Yulin 537000, PR China.
Department of Chemistry, Guilin Normal College, 9 Feihu Road, Gulin 541001, China.
Dalton Trans. 2020 Feb 7;49(5):1613-1619. doi: 10.1039/c9dt04594e. Epub 2020 Jan 16.
We herein designed two new Pt prodrugs of oxoplatin (cis,cis,cis-[PtCl(NH)(OH)]), [PtCl(NH)(OC-FA)] (Pt-2) and [PtCl(NH)(OC-RH)] (Pt-3), by conjugating with ferulic acid (FA-COOH) and rhein (RH-COOH) which have well-known biological activities. Three other Pt(iv) complexes of [PtCl(NH)(OC-BA)] (Pt-1), [PtCl(NH)(OC-CA)] (Pt-4) and [PtCl(NH)(OC-TCA)] (Pt-5) (where BA-COOH = benzoic acid, CA-COOH = crotonic acid and TCA-COOH = trans-cinnamic acid) were also prepared for the comparative study. Like most Pt prodrug complexes, the cytotoxicity of Pt-3 containing the biologically active rhein (RH-COOH) ligand against lung carcinoma (A549 and A549/DDP) cells was higher than those of Pt-1, Pt-2, Pt-4, cisplatin and Pt-5. Moreover, the cytotoxicity of Pt-3 in HL-7702 normal cells was lower than those of Pt derivatives bearing BA-COOH, FA-COOH, TCA-COOH and CA-COOH ligands. The highly efficacious Pt-2 and Pt-3 were found to accumulate strongly in the A549/DDP cells, with the prodrug Pt-3 showing highest levels of penetration into the mitochondria. The prodrug Pt-3 effectively entered the A549/DDP cells and caused mitochondrial damage, significantly greater than Pt-2. In addition, the prodrug Pt-3 exhibited higher antitumor efficacy (inhibition rates (IR) = 67.45%) than Pt-2 (28.12%) and cisplatin (33.05%) in the A549/DDP xenograft mouse model. Thus, the prodrug Pt-3 containing the rhein (RH-COOH) ligand is a promising candidate drug targeting the mitochondria.
我们在此设计了两种新型奥沙利铂(顺式,顺式,顺式-[PtCl(NH)(OH)])的铂前药,[PtCl(NH)(OC-FA)](Pt-2)和[PtCl(NH)(OC-RH)](Pt-3),通过与具有已知生物活性的阿魏酸(FA-COOH)和大黄酸(RH-COOH)偶联。还制备了另外三种铂(iv)配合物[PtCl(NH)(OC-BA)](Pt-1),[PtCl(NH)(OC-CA)](Pt-4)和[PtCl(NH)(OC-TCA)](Pt-5)(其中BA-COOH=苯甲酸,CA-COOH=巴豆酸和TCA-COOH=反式肉桂酸)进行比较研究。与大多数铂前药配合物一样,含有生物活性大黄酸(RH-COOH)配体的铂-3对肺癌(A549 和 A549/DDP)细胞的细胞毒性高于 Pt-1、Pt-2、Pt-4、顺铂和 Pt-5。此外,在 HL-7702 正常细胞中,Pt-3 的细胞毒性低于含有 BA-COOH、FA-COOH、TCA-COOH 和 CA-COOH 配体的铂衍生物。高效的 Pt-2 和 Pt-3 被发现强烈积聚在 A549/DDP 细胞中,其中前药 Pt-3 显示出最高水平的穿透线粒体。前药 Pt-3 有效地进入 A549/DDP 细胞并引起线粒体损伤,明显大于 Pt-2。此外,前药 Pt-3 在 A549/DDP 异种移植小鼠模型中显示出比 Pt-2(28.12%)和顺铂(33.05%)更高的抗肿瘤疗效(抑制率(IR)=67.45%)。因此,含有大黄酸(RH-COOH)配体的前药 Pt-3 是一种有前途的靶向线粒体的候选药物。