Dong Ni, Zhu Chune, Jiang Junhuang, Huang Di, Li Xing, Quan Guilan, Liu Yang, Tan Wen, Pan Xin, Wu Chuanbin
School of Pharmaceutical Sciences, Sun Yat-sen University, Guangzhou 510006, China.
Institute of Biomedical and Pharmaceutical Sciences, Guangdong University of Technology, Guangzhou 510006, China.
Asian J Pharm Sci. 2020 May;15(3):347-355. doi: 10.1016/j.ajps.2019.01.002. Epub 2019 Apr 11.
This study aimed to prepare poly (D, L-lactic-co-glycolic acid) microspheres (PLGA-Ms) by a modified solid-in-oil-in-water (S/O/W) multi-emulsion technique in order to achieve sustained release with reduced initial burst and maintain efficient drug concentration for a prolonged period of time. Composite PLGA microspheres containing exenatide-encapsulated lecithin nanoparticles (Ex-NPs-PLGA-Ms) were obtained by initial fabrication of exenatide-loaded lecithin nanoparticles (Ex-NPs) via the alcohol injection method, followed by encapsulation of Ex-NPs into PLGA microspheres. Compared to Ms prepared by the conventional water-in-oil-in-water (W/O/W) technique (Ex-PLGA-Ms), Ex-NPs-PLGA-Ms showed a more uniform particle size distribution, reduced initial burst release, and sustained release for over 60 d . Cytotoxicity studies showed that Ms prepared by both techniques had superior biocompatibility without causing any detectable cytotoxicity. In pharmacokinetic studies, the effective drug concentration was maintained for over 30 d following a single subcutaneous injection of two types of Ms formulation in rats, potentially prolonging the therapeutic action of Ex. In addition, administration of Ex-NPs-PLGA-Ms resulted in a more smooth plasma concentration-time profile with a higher area under the curve (AUC) compared to that of Ex-PLGA-Ms. Overall, Ex-NPs-PLGA-Ms prepared by the novel S/O/W method could be a promising sustained drug release system with reduced initial burst release and prolonged therapeutic efficacy.
本研究旨在通过改良的水包油包固(S/O/W)多重乳液技术制备聚(D,L-乳酸-乙醇酸共聚物)微球(PLGA-Ms),以实现药物的缓释,减少初始突释,并在较长时间内维持有效的药物浓度。通过醇注入法首先制备负载艾塞那肽的卵磷脂纳米粒(Ex-NPs),然后将Ex-NPs包封于PLGA微球中,从而获得含有包封艾塞那肽的卵磷脂纳米粒的复合PLGA微球(Ex-NPs-PLGA-Ms)。与通过传统的水包油包水(W/O/W)技术制备的微球(Ex-PLGA-Ms)相比,Ex-NPs-PLGA-Ms显示出更均匀的粒径分布、更低的初始突释以及超过60天的缓释效果。细胞毒性研究表明,两种技术制备的微球均具有优异的生物相容性,未引起任何可检测到的细胞毒性。在药代动力学研究中,大鼠单次皮下注射两种微球制剂后,有效药物浓度维持超过30天,这可能会延长艾塞那肽的治疗作用。此外,与Ex-PLGA-Ms相比,Ex-NPs-PLGA-Ms给药后血浆浓度-时间曲线更平滑,曲线下面积(AUC)更高。总体而言,通过新型S/O/W方法制备的Ex-NPs-PLGA-Ms可能是一种有前景的缓释药物系统,具有减少初始突释和延长治疗效果的特点。