Fahmy Usama A, Fahmy Omar, Alhakamy Nabil A
Department of Pharmaceutics, Faculty of Pharmacy, King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Center of Excellence for Drug Research & Pharmaceutical Industries, King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Pharmaceutics. 2020 Dec 24;13(1):20. doi: 10.3390/pharmaceutics13010020.
Clinical application of icariin (ICA) is limited, despite its activity against cancer growth, because of the low solubility of ICA in an aqueous environment. Therefore, the present study attempted to develop and optimize ICA-loaded cubosome delivery and to explore its efficacy and possible mechanism of action against ovarian cancer. The optimization of the cubosome formulation was performed using the Box‒Behnken statistical design; during the characterization, the particle sizes were in the range of 73 to 183 nm and the entrapment efficiency was 78.3% to 97.3%. Optimized ICA-loaded cubosomes (ICA-Cubs) exhibited enhanced cytotoxicity and apoptotic potential, compared with ICA-raw, against ovarian cancer cell lines (SKOV-3 and Caov 3). The optimized ICA-Cubs showed a relatively non-cytotoxic effect on normal EA.hy926 endothelial cells. Further analysis of cell cycle arrest suggested a potential role in the pre-G1 and G2/M phases for ICA-Cubs in comparison with ICA-raw. ICA-Cubs increased the generation of reactive oxygen species (ROS) and the overexpression of p53 and caspase-3 in the SKOV-3 cell line. In conclusion, the cubosomal delivery of ICA might provide a prospective approach towards the superior control of ovarian cancer cell growth. Its improved efficacy compared with that of the free drug might be due to the improved solubility and cellular permeability of ICA.
尽管淫羊藿苷(ICA)具有抗癌生长活性,但其在水性环境中的低溶解度限制了它的临床应用。因此,本研究试图开发并优化负载ICA的立方液晶纳米粒递送系统,并探索其对卵巢癌的疗效及可能的作用机制。采用Box-Behnken统计设计对立方液晶纳米粒制剂进行优化;在表征过程中,粒径范围为73至183nm,包封率为78.3%至97.3%。与淫羊藿苷原料药相比,优化后的负载ICA的立方液晶纳米粒(ICA-Cubs)对卵巢癌细胞系(SKOV-3和Caov 3)表现出增强的细胞毒性和凋亡潜力。优化后的ICA-Cubs对正常EA.hy926内皮细胞显示出相对无细胞毒性的作用。与淫羊藿苷原料药相比,对细胞周期阻滞的进一步分析表明ICA-Cubs在G1期前和G2/M期具有潜在作用。ICA-Cubs增加了SKOV-3细胞系中活性氧(ROS)的生成以及p53和caspase-3的过表达。总之,ICA的立方液晶纳米粒递送可能为卵巢癌细胞生长的更好控制提供一种前瞻性方法。与游离药物相比,其疗效提高可能归因于ICA溶解度和细胞通透性的改善。