Department of Pharmaceutical Chemistry, Faculty of Pharmaceutical Sciences, Prince of Songkla University, Hat Yai 90112, Songkhla, Thailand.
Drug Delivery System Excellence Center, Faculty of Pharmaceutical Sciences, Prince of Songkla University, Hat Yai 90112, Songkhla, Thailand.
Molecules. 2023 Mar 16;28(6):2693. doi: 10.3390/molecules28062693.
This work aimed at preparing nanomicelles from -benzyl-,-succinyl chitosan (NBSCh) loaded with a curcumin analog, 2,6-bis((3-methoxy-4-hydroxyphenyl) methylene) cyclohexanone, a.k.a. cyqualone (CL), for antineoplastic colon cancer chemotherapy. The CL-loaded NBSCh micelles were spherical and less than 100 nm in size. The entrapment efficiency of CL in the micelles ranged from 13 to 39%. Drug release from pristine CL was less than 20% in PBS at pH 7.4, whereas the release from CL-NBSCh micelles was significantly higher. The release study of CL-NBSCh revealed that around 40% of CL content was released in simulated gastric fluid at pH 1.2; 79 and 85% in simulated intestinal fluids at pH 5.5 and 6.8, respectively; and 75% in simulated colonic fluid at pH 7.4. CL-NBSCh showed considerably high selective cytotoxicity towards mucosal epithelial human colon cancer (HT-29) cells and lower levels of toxicity towards mouse connective tissue fibroblasts (L929). CL-NBSCh was also more cytotoxic than the free CL. Furthermore, compared to free CL, CL-NBSCh micelles were found to be more efficient at arresting cell growth at the G2/M phase, and induced apoptosis earlier in HT-29 cells. Collectively, these results indicate the high prospective potential of CL-loaded NBSCh micelles as an oral therapeutic intervention for colon cancer.
这项工作旨在制备负载姜黄素类似物 2,6-双((3-甲氧基-4-羟基苯基)亚甲基)环己酮(又名环奎酮,CL)的-β-苄基-β-琥珀酰壳聚糖(NBSCh)纳米胶束,用于抗肿瘤结肠癌化疗。载 CL 的 NBSCh 胶束呈球形,粒径小于 100nm。CL 在胶束中的包封效率为 13%至 39%。在 pH7.4 的 PBS 中,CL 的原始载药胶束的药物释放率低于 20%,而 CL-NBSCh 胶束的药物释放率则显著提高。CL-NBSCh 的释放研究表明,约 40%的 CL 含量在 pH1.2 的模拟胃液中释放;在 pH5.5 和 6.8 的模拟肠液中分别释放 79%和 85%;在 pH7.4 的模拟结肠液中释放 75%。CL-NBSCh 对黏膜上皮人结肠癌细胞(HT-29)具有相当高的选择性细胞毒性,对小鼠结缔组织成纤维细胞(L929)的毒性较低。CL-NBSCh 的细胞毒性也高于游离 CL。此外,与游离 CL 相比,CL-NBSCh 胶束在 G2/M 期更有效地抑制细胞生长,并更早诱导 HT-29 细胞凋亡。总的来说,这些结果表明负载 CL 的 NBSCh 胶束作为结肠癌口服治疗干预具有很高的应用潜力。