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基于药脂复合物技术的丹酚酸 B 微丸的生物利用度和泡沫细胞通透性增强。

Bioavailability and foam cells permeability enhancement of Salvianolic acid B pellets based on drug-phospholipids complex technique.

机构信息

Department of Pharmacy, Xuzhou Medical College, Xuzhou, PR China.

出版信息

Eur J Pharm Biopharm. 2013 Jan;83(1):76-86. doi: 10.1016/j.ejpb.2012.09.021. Epub 2012 Oct 22.

Abstract

This study investigated phospholipids complex (PC) loaded pellets of poorly permeable Salvianolic acid B (SalB), in which PC was to improve the liposolubility and permeability of SalB. Transmission electron microscopy observation, differential scanning calorimetry measurement, infrared spectroscopy analysis, n-octanol/water partition coefficient study, and foam cell permeability research were employed to prove the complex formation. Pellets containing SalB phospholipids complex (SalB-PC) were prepared via extrusion/spheronization technique. The optimal pellets obtained with 30% SalB-PC, 15% Kollidon®CL-SF, 15% Flowlac®100, and 40% MCC exhibited a very homogeneous size distribution, the shortest disintegration time, highest crushing force, appreciable spherical shape, and a fast drug release behavior. Following hydration, the droplet size distribution of SalB-PC pellets was nearly same to its PC (85.4±16 and 73.5±12nm). In vivo performance showed SalB-PC pellets presented significantly larger AUC(0-)(t), which was 0.58 times more than that of physical mixtures (PMs) and 1.57 times more than that of SalB pellets. C(max) of SalB-PC pellets were also increased by 0.26-fold and 0.80-fold as that of PMs and SalB pellets, respectively. In conclusion, extrusion/spheronization could be a suitable technique to prepare PC loaded pellets, which could effectively preserve the properties of PC to improve the permeability and bioavailability of highly water-soluble drug.

摘要

本研究考察了难溶性丹参酸 B(SalB)磷脂复合物(PC)载药微丸,其中 PC 旨在提高 SalB 的脂溶性和渗透性。通过透射电子显微镜观察、差示扫描量热法测量、红外光谱分析、正辛醇/水分配系数研究和泡沫细胞渗透性研究来证明复合物的形成。采用挤出/滚圆技术制备载有 SalB 磷脂复合物(SalB-PC)的微丸。用 30% SalB-PC、15% Kollidon®CL-SF、15% Flowlac®100 和 40% MCC 制得的最佳微丸具有非常均匀的粒径分布、最短的崩解时间、最高的破碎力、可观的球形和快速的药物释放行为。水化后,SalB-PC 微丸的液滴粒径分布与 PC 几乎相同(分别为 85.4±16nm 和 73.5±12nm)。体内性能表明,SalB-PC 微丸的 AUC(0-)(t)显著增大,是物理混合物(PMs)的 0.58 倍,是 SalB 微丸的 1.57 倍。SalB-PC 微丸的 C(max)也分别增加了 0.26 倍和 0.80 倍,是 PMs 和 SalB 微丸的 0.26 倍和 0.80 倍。总之,挤出/滚圆技术可作为制备载 PC 微丸的合适技术,可有效保存 PC 的性质,提高高度水溶性药物的渗透性和生物利用度。

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