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神经干细胞的起源会影响它们与靶向脂质纳米胶囊的相互作用:细胞膜脂质组成和流动性的潜在作用。

The origin of neural stem cells impacts their interactions with targeted-lipid nanocapsules: Potential role of plasma membrane lipid composition and fluidity.

机构信息

Université catholique de Louvain, UCLouvain, Louvain Drug Research Institute, Advanced Drug Delivery and Biomaterials, Avenue E. Mounier 73, 1200 Brussels, Belgium; Université d'Angers, Unité de Micro et Nanomédecines Translationelles (UMR INSERM 1066/CNRS 6021), Institut de Biologie en Santé PBH-IRIS, CHU Angers, 49033 Angers, France.

Université catholique de Louvain, UCLouvain, Louvain Drug Research Institute, Cellular and Molecular Pharmacology, Avenue E. Mounier 73, 1200 Brussels, Belgium.

出版信息

J Control Release. 2018 Dec 28;292:248-255. doi: 10.1016/j.jconrel.2018.11.005. Epub 2018 Nov 5.

Abstract

The adsorption of a peptide (NFL-TBS.40-63 peptide (NFL)) known to induce neural stem cells (NSC) differentiation in vitro, at the surface of lipid nanocapsules (LNC) provides a targeting drug delivery system (NFL-LNC) that penetrates subventricular zone-neural stem cells (SVZ-NSC) but not central canal-NSC (CC-NSC). We hypothesized preferential interactions could explaine, at least partially, the different properties of SVZ- and CC-NSC plasma membranes. The objective of this work was to compare SVZ- and CC-NSC plasma membrane lipid composition, fluidity and permeability. Plasma membranes of SVZ- and CC-NSC were isolated and analyzed by LC-MS for their lipid content. Membrane fluidity was evaluated by measuring the generalized polarization (GP) of Laurdan and membrane permeability by fluorescent dextran penetration. Liposomes with different lipid compositions and steady state fluidities were prepared. ΔGP was measured after incubation with NFL-LNC. A significantly higher proportion of cholesterol, ceramides, sphingomyelins, phosphatidylethanolamines and a lower proportion of phosphatidylcholines and sulfatides were observed in SVZ- compared to CC-NSC. Fluidity, probably more than lipid composition, drove NFL-LNC and NSC interactions, and SVZ-NSC were more sensitive to NFL permeabilization than CC-NSC. We demonstrated that NSC membrane lipid composition and fluidity depended of NSC origin and that these features could play a role in the specific interactions with NFL-LNC.

摘要

已知一种能够诱导神经干细胞(NSC)体外分化的肽(NFL-TBS.40-63 肽(NFL))可以吸附在脂质纳米胶囊(LNC)的表面,形成一种靶向药物传递系统(NFL-LNC),它可以穿透侧脑室下区-神经干细胞(SVZ-NSC),但不能穿透中央管-神经干细胞(CC-NSC)。我们假设,至少部分原因是 SVZ-和 CC-NSC 质膜的优先相互作用可以解释这两种质膜的不同特性。本工作的目的是比较 SVZ-和 CC-NSC 质膜的脂质组成、流动性和通透性。通过 LC-MS 分析 SVZ-和 CC-NSC 的质膜脂质含量,评估质膜的流动性。通过测量 Laurdan 的广义极化(GP)和荧光葡聚糖渗透来评估膜通透性。制备具有不同脂质组成和稳态流动性的脂质体。用 NFL-LNC 孵育后测量ΔGP。与 CC-NSC 相比,SVZ-NSC 中胆固醇、神经酰胺、鞘磷脂、磷脂酰乙醇胺的比例明显较高,而磷脂酰胆碱和硫酸脑苷脂的比例较低。可能是流动性而不是脂质组成,驱动了 NFL-LNC 和 NSC 的相互作用,并且 SVZ-NSC 比 CC-NSC 对 NFL 的通透性更敏感。我们证明了 NSC 质膜的脂质组成和流动性取决于 NSC 的来源,并且这些特征可能在与 NFL-LNC 的特定相互作用中发挥作用。

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