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用于靶向血脑屏障葡萄糖转运蛋白的N-乙酰半乳糖胺聚乙二醇化多层脂质体。

NAG-PEGylated multilamellar liposomes for BBB-GLUT transporter targeting.

作者信息

Kamal Nahid S, Habib Muhammad J, Zidan Ahmed S, Karla Pradeep K

机构信息

Department of Pharmaceutical Sciences, Howard University, 2300 4 Street NW, Washington, DC 20059, USA.

Arnold & Marie Schwartz College of Pharmacy & Health Science, Long Island University, Brooklyn, NY, USA.

出版信息

Cogent Med. 2019;6(1). doi: 10.1080/2331205x.2019.1701343. Epub 2020 Jan 8.

Abstract

The primary objective of the research study is to investigate Glucose (GLUT) transporter targeting of the drug (Citalopram-Hbr) for increased permeability across the Blood-Brain Barrier (BBB). The current study reports the development, physicochemical characterization, cytotoxicity analysis and in-vitro BBB permeability assessment of the Citalopram-Hbr liposomal formulations. Rat Primary Brain Microvascular Endothelial Cells (RPBECs) were used for cytotoxicity analysis and drug permeability testing. Five N-Acetyl Glucosamine (NAG) coated PEGylated multilamellar liposomal formulations were prepared and tested. Permeability of the liposomal formulations was evaluated in RPBECs monolayer. The particle size of the formulations ranged from 13 to 4259 nm. Entrapment efficiency was 50-75%. Cytotoxicity analysis indicated viability (>90%) for all five formulations (0.3-1.25 mg/ml). Apparent drug permeability (Papp) of the formulations ranged from 5.01 × 10 to 15 × 10 cm/min. The study demonstrated successful preparation of NAG-coated PEGylated multilamellar liposomal formulations with high drug entrapment efficiency. Cytotoxicity data indicated that the formulations were well tolerated by the cells up to a concentration of 1.25 mg/ml. Transport study data demonstrated that RPBMECs monolayers can be employed as a robust screening tool for future drug transport studies targeting GLUT transporter on the BBB. The drug permeability values provide a promising preliminarily proof that NAG-coated liposomal formulations can be an effective tool for BBB-GLUT transporter targeting.

摘要

该研究的主要目的是研究药物(西酞普兰氢溴酸盐)对葡萄糖(GLUT)转运体的靶向作用,以提高其穿过血脑屏障(BBB)的通透性。本研究报告了西酞普兰氢溴酸盐脂质体制剂的研发、理化特性、细胞毒性分析及体外血脑屏障通透性评估。大鼠原代脑微血管内皮细胞(RPBECs)用于细胞毒性分析和药物通透性测试。制备并测试了五种N-乙酰葡糖胺(NAG)包被的聚乙二醇化多层脂质体制剂。在RPBECs单层中评估脂质体制剂的通透性。制剂的粒径范围为13至4259 nm。包封率为50-75%。细胞毒性分析表明,所有五种制剂(0.3-1.25 mg/ml)的细胞活力均大于90%。制剂的表观药物通透性(Papp)范围为5.01×10至15×10 cm/min。该研究证明成功制备了具有高药物包封率的NAG包被的聚乙二醇化多层脂质体制剂。细胞毒性数据表明,在浓度高达1.2mg/ml时,细胞对这些制剂耐受性良好。转运研究数据表明,RPBMECs单层可作为未来针对血脑屏障上GLUT转运体的药物转运研究的强大筛选工具。药物通透性值提供了一个有前景的初步证据,表明NAG包被的脂质体制剂可以成为靶向血脑屏障-GLUT转运体的有效工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f3b/9075700/52120aeb466f/nihms-1639138-f0001.jpg

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