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载甲氨蝶呤靶向脑递药系统:制剂如何发挥作用?

Targeted brain delivery of methotrexate by glutathione PEGylated liposomes: How can the formulation make a difference?

机构信息

Translational PKPD Research Group, Department of Pharmaceutical Biosciences, Associate Member of SciLife Lab, Uppsala University, Uppsala, Sweden.

2-BBB Medicines B.V., J.H. Oortweg 19, 2333CH Leiden, the Netherlands.

出版信息

Eur J Pharm Biopharm. 2019 Jun;139:197-204. doi: 10.1016/j.ejpb.2019.04.004. Epub 2019 Apr 2.

Abstract

The purpose of this study was to quantitatively investigate how conjugation of GSH to different liposomal formulations influence the brain delivery of methotrexate (MTX) in rats. GSH-PEG liposomal MTX based on hydrogenated soy phosphatidylcholine (HSPC) or egg yolk phosphatidylcholine (EYPC) and their corresponding PEG control liposomes were prepared. The brain delivery of MTX after intravenously administering free MTX, four liposomal formulations or free MTX + empty GSH-PEG-HSPC liposomes was evaluated by performing microdialysis in brain interstitial fluid and blood. Compared to free MTX with a steady-state unbound brain-to-plasma concentration ratio (K) of 0.10, PEG-HSPC liposomes did not affect the brain uptake of MTX, while PEG-EYPC liposomes improved the uptake (K 1.5, p < 0.05). Compared to PEG control formulations, GSH-PEG-HSPC liposomes increased brain delivery of MTX by 4-fold (K 0.82, p < 0.05), while GSH-coating on PEG-EYPC liposomes did not result in a further enhancement in uptake. The co-administration of empty GSH-PEG-HSPC liposomes with free MTX did not influence the uptake of MTX into the brain. This work showed that the brain-targeting effect of GSH-PEG liposomal MTX is highly dependent on the liposomal formulation that is combined with GSH, providing insights on formulation optimization of this promising brain delivery platform.

摘要

本研究的目的是定量研究 GSH 与不同脂质体制剂缀合如何影响甲氨蝶呤(MTX)在大鼠体内向大脑的递送。基于氢化大豆磷脂酰胆碱(HSPC)或蛋黄磷脂酰胆碱(EYPC)的 GSH-PEG 脂质体 MTX 及其相应的 PEG 对照脂质体被制备。通过在脑间质液和血液中进行微透析,评估静脉给予游离 MTX、四种脂质体制剂或游离 MTX+空 GSH-PEG-HSPC 脂质体后 MTX 的脑内递送。与具有稳定状态未结合脑-血浆浓度比(K)为 0.10 的游离 MTX 相比,PEG-HSPC 脂质体不影响 MTX 的脑摄取,而 PEG-EYPC 脂质体提高了摄取(K 1.5,p<0.05)。与 PEG 对照制剂相比,GSH-PEG-HSPC 脂质体使 MTX 的脑内递送增加了 4 倍(K 0.82,p<0.05),而 GSH 涂层在 PEG-EYPC 脂质体上并没有导致摄取的进一步增强。与游离 MTX 一起给予空 GSH-PEG-HSPC 脂质体不会影响 MTX 进入大脑的摄取。这项工作表明,GSH-PEG 脂质体 MTX 的脑靶向效应高度依赖于与 GSH 结合的脂质体制剂,为这一有前途的脑递药平台的制剂优化提供了思路。

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