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Evaluation of tetraether lipid-based liposomal carriers for encapsulation and retention of nucleoside-based drugs

机译:核苷类药物封装和保留四氧化四醚脂质基脂质体载体的评价

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Graphical abstract Display Omitted Abstract Although liposomal nanoparticles are one of the most versatile class of drug delivery systems, stable liposomal formulation of small neutral drug molecules still constitutes a challenge due to the low drug retention of current lipid membrane technologies. In this study, we evaluate the encapsulation and retention of seven nucleoside analog-based drugs in liposomes made of archaea-inspired tetraether lipids, which are known to enhance packing and membrane robustness compared to conventional bilayer-forming lipids. Liposomes comprised of the pure tetraether lipid generally showed improved retention of drugs (up to 4-fold) compared with liposomes made from a commercially available diacyl lipid. Interestingly, we did not find a significant correlation between the liposomal leakage rates of the molecules with typical parameters used to assess lipophilicity of drugs (such logD or topological polar surface area), suggesting that specific structural elements of the drug molecules can have a dominant effect on leakage from liposomes over general lipophilic character.
机译:虽然脂质体纳米颗粒是药物递送系统中最通用的类​​别,但由于目前的脂膜技术的低药物保留,脂质体纳米粒子是最通用的药物递送系统之一,稳定的小中性药物分子仍然是挑战。在这项研究中,我们评估了由古代风格的四氧化醚脂质的脂质体中的七种核苷类模拟的药物的封装和保留,这是与常规双层形成脂质相比增强包装和膜鲁棒性。与由市售二酰脂质制成的脂质体相比,由纯四氧化钛脂质组成的脂质体通常表现出改善的药物(最多4倍)的保留。有趣的是,我们没有发现分子的脂质体泄漏速率与用于评估药物亲脂性的典型参数(这种LOGD或拓扑极性表面区域)之间的显着相关性,表明药物分子的特异性结构元素可具有显性效果脂质体渗漏在一般的亲脂性特征上。

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