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载脂蛋白 E 模拟肽-脂质缀合物的研制及其用于脂质体高效脑内递药。

Development of an apolipoprotein E mimetic peptide-lipid conjugate for efficient brain delivery of liposomes.

机构信息

Graduate School of Biomedical Sciences, Nagasaki University, Nagasaki, Japan.

School of Pharmacy, Daiichi University of Pharmacy, Fukuoka, Japan.

出版信息

Drug Deliv. 2023 Dec;30(1):2173333. doi: 10.1080/10717544.2023.2173333.

Abstract

Liposomes are versatile carriers that can encapsulate various drugs; however, for delivery to the brain, they must be modified with a targeting ligand or other modifications to provide blood-brain barrier (BBB) permeability, while avoiding rapid clearance by reticuloendothelial systems through polyethylene glycol (PEG) modification. BBB-penetrating peptides act as brain-targeting ligands. In this study, to achieve efficient brain delivery of liposomes, we screened the functionality of eight BBB-penetrating peptides reported previously, based on high-throughput quantitative evaluation methods with BBB permeability evaluation system using Transwell, brain perfusion system, and others. For apolipoprotein E mimetic tandem dimer peptide (ApoEdp), which showed the best brain-targeting and BBB permeability in the comparative evaluation of eight peptides, its lipid conjugate with serine-glycine (SG) spacer (ApoEdp-SG-lipid) was newly synthesized and ApoEdp-modified PEGylated liposomes were prepared. ApoEdp-modified PEGylated liposomes were effectively associated with human brain capillary endothelial cells via the ApoEdp sequence and permeated the membrane in an BBB model. Moreover, ApoEdp-modified PEGylated liposomes accumulated in the brain 3.9-fold higher than PEGylated liposomes in mice. In addition, the ability of ApoEdp-modified PEGylated liposomes to localize beyond the BBB into the brain parenchyma in mice was demonstrated via three-dimensional imaging with tissue clearing. These results suggest that ApoEdp-SG-lipid modification is an effective approach for endowing PEGylated liposomes with the brain-targeting ability and BBB permeability.

摘要

脂质体是一种多功能载体,可以包裹各种药物;然而,对于递送到大脑,它们必须用靶向配体或其他修饰物进行修饰,以提供血脑屏障 (BBB) 通透性,同时避免通过聚乙二醇 (PEG) 修饰而被网状内皮系统迅速清除。BBB 穿透肽作为脑靶向配体。在这项研究中,为了实现脂质体向大脑的有效递药,我们根据高内涵高通量定量评价方法,使用 Transwell 进行 BBB 通透性评价系统、脑灌注系统等,对之前报道的 8 种 BBB 穿透肽的功能进行了筛选。在 8 种肽的比较评价中,载脂蛋白 E 模拟串联二聚体肽 (ApoEdp) 显示出最佳的脑靶向性和 BBB 通透性,我们新合成了 ApoEdp 与丝氨酸-甘氨酸 (SG) 间隔物的脂质缀合物 (ApoEdp-SG-脂质),并制备了 ApoEdp 修饰的 PEG 化脂质体。ApoEdp 修饰的 PEG 化脂质体通过 ApoEdp 序列与人脑血管内皮细胞有效结合,并在 BBB 模型中穿透细胞膜。此外,与 PEG 化脂质体相比,ApoEdp 修饰的 PEG 化脂质体在小鼠脑中的积累量增加了 3.9 倍。此外,通过组织清除的三维成像,证明了 ApoEdp 修饰的 PEG 化脂质体具有将药物递送到 BBB 以外的脑实质的能力。这些结果表明,ApoEdp-SG-脂质修饰是赋予 PEG 化脂质体脑靶向性和 BBB 通透性的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b67d/9891163/227ebb18cbb0/IDRD_A_2173333_F0001_C.jpg

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