纳米载体
紫杉醇
泊洛沙姆
药理学
纳米凝胶
药物输送
化学
药品
体内
化疗
叶酸受体
医学
癌细胞
癌症
外科
内科学
生物
生物技术
有机化学
聚合物
共聚物
作者
Dinh Trung Nguyen,Thi Phuong Nguyen,Van Thoai Dinh,Ngoc Hao Nguyen,Kim Thi Hoang Nguyen,Thi‐Hiep Nguyen,Tuan‐Ngan Tang,Trần Thị Yến Nhi,Ha Le Bao Tran,Phuong Le Thi,Le Hang Dang,Ngoc Quyên Trân
标识
DOI:10.1016/j.ijbiomac.2023.125248
摘要
Dual-drug delivery systems for anticancer therapy have recently attracted substantial attention due to their potency to overcome limitations of conventional anti-cancer drugs, tackle drug resistance problems, as well as improve the therapeutic efficacy. In this study, we introduced a novel nanogel based on folic acid-gelatin-pluronic P123 (FA-GP-P123) conjugate to simultaneously deliver quercetin (QU) and paclitaxel (PTX) to the targeted tumor. The results indicated that the drug loading capacity of FA-GP-P123 nanogels was significantly higher than that of P123 micelles. The kinetic release profiles of QU and PTX from the nanocarriers were governed by Fickian diffusion and swelling behavior, respectively. Notably, FA-GP-P123/QU/PTX dual-drug delivery system induced higher toxicity to MCF-7 and Hela cancer cells than either QU or PTX individual delivery system, and the non-targeted dug delivery system (GP-P123/QU/PTX), indicating the synergistic combination of dual drugs and FA positive targeting effect. Furthermore, FA-GP-P123 could effectively deliver QU and PTX to tumors in vivo after administration into MCF-7 tumor-bearing mice, which resulted in 94.20 ± 5.90 % of tumor volume reduced at day 14. Moreover, the side effects of the dual-drug delivery system were significantly reduced. Overall, we suggest FA-GP-P123 as potential nanocarrier for dual-drug delivery for targeted chemotherapy.
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