Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.
Antibody Production Research Unit, Institute of Biotechnology and Genetic Engineering, Chulalongkorn University, Bangkok 10330, Thailand.
Carbohydr Polym. 2017 Oct 1;173:178-191. doi: 10.1016/j.carbpol.2017.05.101. Epub 2017 Jun 3.
This work presented a simple, rapid, green and efficient approach to the synthesis of gold nanoparticles using pullulan as a reducing/stabilizing/capping agent for drug delivery systems to increase the safety and efficacy of these systems. Monodispersed AuNPs@pullulan with prolonged stability were fully characterized by UV-VIS, FTIR, TEM, EDX, TGA and zeta potential analyses. A mechanism of AuNPs formation was proposed in which pullulan created reducing species for the reduction of Au to AuNPs (Au) that resulted in the formation of spherical AuNPs@pullulan with an average size of approximately 11±5nm, while the hydroxyl groups of pullulan were oxidized to carboxylate compounds. Novel cassiarin A chloride derivatives (3d and 3i) as candidate anticancer drugs were successfully loaded onto AuNPs@pullulan through electrostatic interactions. AuNPs@pullulan-3d (IC=6.0±0.1μM) and AuNPs@pullulan-3i (5.2±0.1μM) exhibited a 10.2-fold and 7.1-fold higher cytotoxicity against KATO-III cells than free compounds 3d (60.9±0.6μM), 3i (37.1±0.2μM) and cisplatin (64.5±0.9μM), respectively. AuNPs@pullulan exhibited high cellular uptake, biocompatibility and non-cytotoxicity to normal cells. Therefore, AuNPs@pullulan-3d or AuNPs@pullulan-3i have the potential to be developed for treatment of gastric cancer.
本文提出了一种简单、快速、绿色、高效的方法,使用普鲁兰作为药物传递系统的还原剂/稳定剂/封端剂来合成金纳米粒子,以提高这些系统的安全性和疗效。通过 UV-VIS、FTIR、TEM、EDX、TGA 和 zeta 电位分析,对具有延长稳定性的单分散 AuNPs@pullulan 进行了全面表征。提出了 AuNPs 形成的机理,其中普鲁兰产生还原物质,将 Au 还原为 AuNPs(Au),导致形成平均尺寸约为 11±5nm 的球形 AuNPs@pullulan,而普鲁兰的羟基被氧化为羧酸盐化合物。新型卡沙里因 A 氯化物衍生物(3d 和 3i)作为候选抗癌药物,通过静电相互作用成功负载到 AuNPs@pullulan 上。AuNPs@pullulan-3d(IC=6.0±0.1μM)和 AuNPs@pullulan-3i(5.2±0.1μM)对 KATO-III 细胞的细胞毒性分别比游离化合物 3d(60.9±0.6μM)、3i(37.1±0.2μM)和顺铂(64.5±0.9μM)高 10.2 倍和 7.1 倍。AuNPs@pullulan 表现出高细胞摄取、生物相容性和对正常细胞的非细胞毒性。因此,AuNPs@pullulan-3d 或 AuNPs@pullulan-3i 有可能被开发用于治疗胃癌。