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脂质壳包被的高分子纳米粒,具有完整的脂质壳,可改善黏液穿透性,并与囊性纤维化相关细菌生物膜相互作用。

Lipid Shell-Enveloped Polymeric Nanoparticles with High Integrity of Lipid Shells Improve Mucus Penetration and Interaction with Cystic Fibrosis-Related Bacterial Biofilms.

机构信息

Department of Pharmacy , University of Copenhagen , Universitetsparken 2 , DK-2100 Copenhagen , Denmark.

Department of Physical Chemistry , Lund University , SE-221 00 Lund , Sweden.

出版信息

ACS Appl Mater Interfaces. 2018 Apr 4;10(13):10678-10687. doi: 10.1021/acsami.7b19762. Epub 2018 Mar 26.

Abstract

Nanoparticle (NP) mediated drug delivery into viscous biomatrices, e.g., mucus and bacterial biofilms, is challenging. Lipid shell-enveloped polymeric NPs (Lipid@NPs), composed of a polymeric NP core coated with a lipid shell, represent a promising alternative to the current delivery systems. Here, we describe the facile methods to prepare Lipid@NPs with high integrity of lipid shells and demonstrate the potential of Lipid@NPs in an effective mucus penetration and interaction with cystic fibrosis-related bacterial biofilms. Lipid shell-enveloped polystyrene NPs with high integrity of lipid shells ( cLipid@PSNPs) were prepared by using an electrostatically mediated layer-by-layer approach, where the model polystyrene NPs (PSNPs) were first modified with positively charged poly-l-lysine (PLL) and 1,2-dioleoyl-3-trimethylammonium-propane (DOTAP), followed by subsequent fusion with zwitterionic, PEGylated small unilamellar vesicles (SUVs). The interaction of the PSNPs with SUVs was significantly enhanced by modifying the PSNPs with PLL and DOTAP, which eventually resulted in the formation of cLipid@PSNPs, i.e., Lipid@PLL-PSNPs and Lipid@DOTAP-PSNPs. Improved mucus-penetrating property of cLipid@PSNPs was demonstrated by quartz crystal microbalance with dissipation monitoring measurements. Furthermore, fluorescence resonance energy transfer measurements showed that the interaction of the cLipid@PSNPs with bacterial biofilms was significantly promoted. In conclusion, we prepared cLipid@PSNPs via an electrostatically mediated layer-by-layer approach. Our results suggest that the integrity of the lipid envelopes is crucial for enabling the diffusion of Lipid@PSNPs into the mucus layer and promoting the interaction of Lipid@PSNPs with a bacterial biofilm.

摘要

纳米颗粒(NP)向粘性生物基质(例如粘液和细菌生物膜)中递药具有挑战性。由聚合物 NP 核外包覆脂质壳组成的脂质壳包裹的聚合物 NP(Lipid@NPs)是目前递药系统的一种有前途的替代方法。在这里,我们描述了制备具有高完整性脂质壳的 Lipid@NPs 的简便方法,并展示了 Lipid@NPs 在有效穿透粘液和与囊性纤维化相关的细菌生物膜相互作用方面的潜力。采用静电介导的层层自组装方法制备了具有高完整性脂质壳的脂质壳包裹的聚苯乙烯 NPs(cLipid@PSNPs),其中首先用带正电荷的聚-L-赖氨酸(PLL)和 1,2-二油酰基-3-三甲铵丙烷(DOTAP)对模型聚苯乙烯 NPs(PSNPs)进行改性,然后与带负电荷的聚乙二醇化的小单层囊泡(SUVs)融合。通过用 PLL 和 DOTAP 对 PSNPs 进行改性,大大增强了 PSNPs 与 SUVs 的相互作用,最终形成了 cLipid@PSNPs,即 Lipid@PLL-PSNPs 和 Lipid@DOTAP-PSNPs。通过石英晶体微天平耗散监测测量证明了 cLipid@PSNPs 具有更好的穿透粘液的特性。此外,荧光共振能量转移测量表明,cLipid@PSNPs 与细菌生物膜的相互作用得到了显著促进。总之,我们通过静电介导的层层自组装方法制备了 cLipid@PSNPs。我们的结果表明,脂质包膜的完整性对于允许 Lipid@PSNPs 扩散到粘液层并促进 Lipid@PSNPs 与细菌生物膜的相互作用至关重要。

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