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盐酸鲁拉西酮自微乳给药系统通过淋巴靶向提高口服生物利用度:体外、Caco-2 细胞系和体内评价。

Self microemulsifying drug delivery system of lurasidone hydrochloride for enhanced oral bioavailability by lymphatic targeting: In vitro, Caco-2 cell line and in vivo evaluation.

机构信息

Drug Delivery Research Laboratory, Shri G. H. Patel Pharmacy Building, Faculty of Pharmacy, The M. S. University of Baroda, Fatehgunj, Vadodara 390002, Gujarat, India.

Drug Delivery Research Laboratory, Shri G. H. Patel Pharmacy Building, Faculty of Pharmacy, The M. S. University of Baroda, Fatehgunj, Vadodara 390002, Gujarat, India.

出版信息

Eur J Pharm Sci. 2019 Oct 1;138:105027. doi: 10.1016/j.ejps.2019.105027. Epub 2019 Aug 1.

Abstract

The global aim of this research was to develop and evaluate self-microemulsifying drug delivery system (SMEDDS) to improve oral bioavailability of Lurasidone Hydrochloride (LH). A chylomicron flow blocking approach was used to evaluate lymphatic drug transport. The developed LH-SMEDDS was composed of Capmul MCM C8 (oil), Cremophor EL (surfactant) and Transcutol HP (co-surfactant). Highest microemulsifying area was obtained at 3:1 ratio (surfactant:cosurfactant) and mean globule size was found to be 49.22 ± 1.60 nm. More than 98% drug release was obtained with LH-SMEDDS in phosphate buffer pH 6.8. Confocal microscopy and flow cytometry studies revealed higher fluorescence indicating deeper penetration across Caco-2 cells with Coumarin-6 SMEDDS as compared to Coumarin-6 solution. Mean Fluorescence Intensity (MFI) with Coumarin-6 loaded SMEDDS was increased 25.57 times with respect to Coumarin-6 solution. The permeability across Caco-2 cells was enhanced 3 times with LH-SMEDDS as compared to LH-suspension. Furthermore, Area Under Curve with LH-SMEDDS was found to be 2.92 times higher than that of LH suspension indicating improved bioavailability after formulating SMEDDS. Lymphatic transport in oral absorption of LH-SMEDDS was proved via lymphatic uptake study. All the findings suggest the effectiveness of lipid-based formulation i.e. SMEDDS of LH to augment the oral bioavailability via intestinal lymphatic pathway.

摘要

本研究的总体目标是开发和评价自微乳药物传递系统(SMEDDS),以提高盐酸鲁拉西酮(LH)的口服生物利用度。采用乳糜微粒流动阻断法评价淋巴药物转运。所开发的 LH-SMEDDS 由 Capmul MCM C8(油)、Cremophor EL(表面活性剂)和 Transcutol HP(助表面活性剂)组成。在 3:1 的比例(表面活性剂:助表面活性剂)下获得最大的微乳区域,平均液滴大小为 49.22 ± 1.60nm。LH-SMEDDS 在 pH6.8 的磷酸盐缓冲液中释放超过 98%的药物。共聚焦显微镜和流式细胞术研究表明,与 Coumarin-6 溶液相比,Coumarin-6 SMEDDS 具有更高的荧光强度,表明更深地穿透 Caco-2 细胞。与 Coumarin-6 溶液相比,载有 Coumarin-6 的 SMEDDS 的平均荧光强度(MFI)增加了 25.57 倍。与 LH 混悬剂相比,LH-SMEDDS 穿过 Caco-2 细胞的通透性增加了 3 倍。此外,LH-SMEDDS 的曲线下面积(AUC)比 LH 混悬剂高 2.92 倍,表明形成 SMEDDS 后生物利用度得到提高。通过淋巴摄取研究证实了 LH-SMEDDS 在口服吸收中的淋巴转运。所有这些发现都表明,基于脂质的制剂即 LH 的 SMEDDS 通过肠道淋巴途径提高口服生物利用度是有效的。

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