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Understanding the rod-to-tube transformation of self-assembled ascorbyl dipalmitate lipid nanoparticles stabilized with PEGylated lipids

机译:了解用聚乙二醇化脂质稳定的自组装抗坏血酸二棕榈酸脂质纳米颗粒的杆到管转化

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摘要

We previously established a nanoparticle-based drug delivery system (DDS) for high-dose ascorbic acid therapy by self-assembly of a lipid-modified ascorbic acid derivative, L-ascorbyl 2,6-dipalmitate (ASC-DP). The particles’ morphology should be modified for effective DDSs. Here, we modulated the morphology of self-assembled ASC-DP nanoparticles using two different PEGylated lipids, distearoylphosphatidylethano-lamine-polyethylene glycol (DSPE-PEG) and cholesterol-polyethylene glycol (Chol-PEG), with various PEG molecular weights. At the preparation molar ratio of 10 : 1 (ASC-DP/PEGylated lipid), rod-like nano-particles emerged in the ASC-DP/DSPE-PEG system, whereas the ASC-DP/Chol-PEG system yielded tubelike nanoparticles. The internal structures of both rod-like ASC-DP/DSPE-PEG and tube-like ASC-DP/Chol-PEG nanoparticles were similar to that of repeated ASC-DP bilayers. The particles’ surfaces featured PEGylated lipids, which stabilized the structure and dispersion of the nanoparticles. For both systems, the particle size increased slightly with increasing the PEGylated lipid’s PEG molecular weight. Increasing the PEG molecular weight decreased the inner tunnel size of tube-like ASC-DP/Chol-PEG nanoparticles. A mechanism has been proposed for the rod-to-tube transformation. Surface-layer free-energy changes owing to the mixing of multiple lipids and PEG chain repulsion are thought to underlie the inner tunnels’ formation. The rod-to-tube morphology of self-assembled ASC-DP nanoparticles can be modulated by controlling the PEGylated lipids’ structure, including the lipid species and the PEG chain length.
机译:我们之前建立了nanoparticle-based药物输送系统(DDS)大剂量抗坏血酸治疗油脂修改的自组装抗坏血酸衍生物,L-ascorbyl为有效dds形态应该修改。在这里,我们调制的形态纳米粒子自组装ASC-DP使用两个不同的聚乙二醇脂质,distearoylphosphatidylethano-lamine-polyethylene乙二醇(DSPE-PEG)和cholesterol-polyethylene乙二醇(Chol-PEG),各种分子挂钩权重。(ASC-DP /聚乙二醇脂质),棒状纳米粒子出现了ASC-DP / DSPE-PEG系统,而ASC-DP / Chol-PEG系统产生了管状纳米粒子。棒状ASC-DP / DSPE-PEG和管状ASC-DP / Chol-PEG纳米颗粒类似重复的ASC-DP影响。表面为聚乙二醇脂质,稳定的结构和分散纳米粒子。大小与增加略有增加聚乙二醇脂质挂钩的分子量。增加PEG分子量下降隧道内管状ASC-DP / Chol-PEG的大小纳米粒子。rod-to-tube转换。由于混合自由能变化多种脂质和挂钩链排斥认为是内部通道的形成的基础。自组装的rod-to-tube形态ASC-DP纳米颗粒可以调制控制聚乙二醇脂类的结构,包括脂质物种和链挂钩长度。

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