前药
环丙沙星
化学
透明质酸
药物输送
抗菌活性
Zeta电位
药理学
体外
抗生素
微生物学
生物化学
医学
细菌
生物
材料科学
纳米技术
纳米颗粒
有机化学
遗传学
解剖
作者
Usri H. Ibrahim,Nikita Devnarain,Mahir M. Sharif,Calvin A. Omolo,Mohammed A. Gafar,Mohammed Salih,Amit Pant,Letitia Shunmugam,Chunderika Mocktar,René B. Khan,Jung Kwon Oh,Thirumala Govender
标识
DOI:10.1016/j.ijbiomac.2022.09.173
摘要
The incidence and of bacterial infections, and resulting mortality, among cancer patients is growing dramatically, worldwide. Several therapeutics have been reported to have dual anticancer and antibacterial activity. However, there is still an urgent need to develop new drug delivery strategies to improve their clinical efficacy. Therefore, this study aimed to develop a novel acid cleavable prodrug (HA-Cip) from ciprofloxacin and hyaluronic acid to simultaneously enhance the anticancer and antibacterial properties of Cip as a superior drug delivery system. HA-Cip was synthesised and characterised (FT-IR, HR-MS, and H1 NMR). HA-Cip generated stable micelles with an average particle size, poly dispersion index (PDI) and zeta potential (ZP) of 237.89 ± 25.74 nm, 0.265 ± 0.013, and -17.82 ± 1.53 mV, respectively. HA-Cip showed ≥80 % cell viability against human embryonic kidney 293 cells (non-cancerous cells), ˂0.3 % haemolysis; and a faster pH-responsive ciprofloxacin release at pH 6.0. HA-Cip showed a 5.4-fold improvement in ciprofloxacin in vitro anticancer activity against hepatocellular cancer (HepG2) cells; and enhanced in vitro antibacterial activity against Escherichia coli and Klebsiella pneumoniae at pH 6.0. Our findings show HA-Cip as a promising prodrug for targeted delivery of ciprofloxacin to efficiently treat bacterial infections associated, and/or co-existing, with cancer. • Successful synthesis of novel acid-cleavable hyaluronic acid-based prodrug of ciprofloxacin (HA-Cip) • In silico studies confirmed HA-Cip self-assembly and interactions with CD44 receptors. • HA-Cip self-assembled into pH-responsive micelles. • Cytotoxicity and haemolytic activity studies was confirmed HA-Cip biocompatibility. • HA-Cip showed an enhanced in vitro anticancer and antibacterial activity compared to the bare Cip.
科研通智能强力驱动
Strongly Powered by AbleSci AI