Jiangsu Key Laboratory of New Drug Research and Clinical Pharmacy, Xuzhou Medical University, Xuzhou, 221004, China; School of Pharmacy, Xuzhou Medical University, Xuzhou, 221004, China.
School of Pharmacy, Jiangxi Science and Technology Normal University, Nanchang, 330013, China.
Int J Pharm. 2017 Oct 30;532(1):384-392. doi: 10.1016/j.ijpharm.2017.09.023. Epub 2017 Sep 10.
In this article, a new type of carboxymethyl chitosan/phospholipid bilayer-capped mesoporous carbon nanomatrix (CCS/PL/MC) was fabricated as a potential nano-drug delivery system. In this drug delivery system, a mesoporous carbon nanomatrix (MC) acts as the support for loading drug molecules, a positively charged phospholipid (PL) layer works as the inner shell for prolonged drug release and a negatively charged carboxymethyl chitosan (CCS) layer serves as the outer shell for pH-responsive drug release. Docetaxel (DTX) was selected as a model drug. The drug-loaded CCS/PL/MC was synthesized via a combination approach of double emulsion/solvent evaporation followed by lyophilization. The drug-loaded nanoparticles were characterized for their particle size, structure, morphology, zeta (ζ)-potential, specific surface area, porosity, drug loading and solid state. In vitro drug release tests showed that the drug-loaded CCS/PL/MC nanoparticles possess a good pH-sensitivity and prolonged releasing ability with negligible release in gastric media and controlled release in intestinal media. Compared with MC and PL-capped MC, CCS/PL/MC had a greater mucoadhesiveness. Moreover, cellular uptake study indicated that CCS/PL/MC might improve intracellular drug delivery. These results suggest that this hybrid nanocarrier, combining the beneficial features of CCS, PL and MC, is a promising drug delivery system able to improve the oral absorption of antitumor drugs.
本文构建了一种新型的羧甲基壳聚糖/磷脂双层包覆介孔碳纳米基质(CCS/PL/MC),作为一种潜在的纳米药物传递系统。在该药物传递系统中,介孔碳纳米基质(MC)作为负载药物分子的载体,带正电荷的磷脂(PL)层作为内层以延长药物释放,带负电荷的羧甲基壳聚糖(CCS)层作为外壳以实现 pH 响应性药物释放。选择多西紫杉醇(DTX)作为模型药物。通过双重乳液/溶剂蒸发结合冷冻干燥的方法合成载药的 CCS/PL/MC。对载药的纳米粒子进行粒径、结构、形态、Zeta(ζ)电位、比表面积、孔隙率、载药量和固态等特性的表征。体外药物释放实验表明,载药的 CCS/PL/MC 纳米粒子具有良好的 pH 敏感性和延长的释放能力,在胃介质中几乎没有释放,而在肠介质中则可以控制释放。与 MC 和 PL 包覆的 MC 相比,CCS/PL/MC 具有更强的黏膜黏附性。此外,细胞摄取研究表明,CCS/PL/MC 可能提高细胞内药物递送。这些结果表明,这种结合了 CCS、PL 和 MC 各自优势的杂化纳米载体是一种有前途的药物传递系统,能够提高抗肿瘤药物的口服吸收。