a Drug Delivery Research Laboratory, Faculty of Pharmacy , TIFAC Center of Relevance and Excellence in NDDS, The M. S. University of Baroda , Vadodara , India.
Drug Dev Ind Pharm. 2019 Aug;45(8):1242-1257. doi: 10.1080/03639045.2019.1593434. Epub 2019 Jun 6.
The aim of the present investigation was to investigate the efficacy of solid lipid nanoparticles (SLNs) to enhance the absorption and bioavailability of lurasidone hydrochloride (LH) following oral administration. The LH loaded SLNs (LH-SLNs) were prepared by high pressure homogenization (HPH) method, optimized using box Behnken design and evaluated for particle size (PS), entrapment efficiency (EE), morphology, FTIR, DSC, XRD, release, permeation, transport studies across Caco-2 cell line and pharmacokinetic and pharmacodynamic studies. The LH-SLNs had PS of 139.8 ± 5.5 nm, EE of 79.10 ± 2.50% and zeta potential of -30.8 ± 3.5 mV. TEM images showed that LH-SLNs had a uniform size distribution and spherical shape. The release from LH-SLNs followed the Higuchi model. The permeability study demonstrated enhanced drug permeation from LH-SLNs (>90%) through rat intestine as compared to LH-suspension. The SLNs were found to be taken up by energy dependent, endocytic mechanism which was mediated by clathrin/caveolae-mediated endocytosis across Caco-2 cell line. The pharmacokinetic results showed that oral bioavailability of LH was improved over 5.16-fold after incorporation into SLNs as compared to LH-suspension. The pharmacodynamic study proved the antipsychotic potential of LH-SLNs in the treatment of schizophrenia. It was concluded that oral administration of LH-SLNs in rats improved the bioavailability of LH via lymphatic uptake along with improved therapeutic effect in MK-801 induced schizophrenia model in rats.
本研究旨在考察固体脂质纳米粒(SLNs)对盐酸鲁拉西酮(LH)口服吸收和生物利用度的增强作用。采用高压均质法(HPH)制备 LH 负载的 SLNs(LH-SLNs),采用 Box-Behnken 设计进行优化,并对粒径(PS)、包封效率(EE)、形态、FTIR、DSC、XRD、释放、渗透、Caco-2 细胞系跨膜转运以及药代动力学和药效学进行评价。LH-SLNs 的 PS 为 139.8±5.5nm,EE 为 79.10±2.50%,zeta 电位为-30.8±3.5mV。TEM 图像显示 LH-SLNs 具有均匀的粒径分布和球形形状。LH-SLNs 的释放符合 Higuchi 模型。渗透研究表明,与 LH 混悬剂相比,LH-SLNs 可增强药物通过大鼠肠的渗透(>90%)。研究发现 SLNs 被能量依赖的内吞机制摄取,这种机制是通过网格蛋白/小窝蛋白介导的内吞作用介导的,跨越 Caco-2 细胞系。药代动力学结果表明,与 LH 混悬剂相比,LH 被包封在 SLNs 中后口服生物利用度提高了 5.16 倍。药效学研究证明了 LH-SLNs 在治疗精神分裂症方面的抗精神病潜力。综上所述,与 LH 混悬剂相比,LH-SLNs 口服给药可通过淋巴管摄取提高 LH 的生物利用度,并在 MK-801 诱导的大鼠精神分裂症模型中改善治疗效果。