阿奇霉素脂质体替代巨噬细胞活化配方的优化与表征。

Frontiers in drug delivery Pub Date : 2022-01-01 Epub Date: 2022-07-05 DOI:10.3389/fddev.2022.908709
Abdullah A Masud, Fahd M Alsharif, Jarrod W Creameans, Jasmine Perdeh, David J Feola, Vincent J Venditto
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摘要

在心肌梗死的情况下,脂质体阿奇霉素(L-AZM)促进巨噬细胞向m2样表型极化,从而改善小鼠心血管预后。为了改进这一配方,我们试图确定优化的配方、稳定性和生物活性参数,以提高L-AZM的免疫调节活性和功效。虽然我们的母体配方含有长链饱和磷脂酰胆碱和磷脂酰甘油脂的混合物,但我们评估了一系列含有不同数量的不饱和脂和胆固醇的配方,目的是提高配方的负载能力和稳定性。我们还引入了促聚变性脂质来改善胞质递送,以增强药物的免疫调节特性。为了实现这些目标,我们首先使用薄膜水合制备了一个包含24种配方的库,并评估了所得脂质体的大小和多分散性。根据低多分散性(通过降低IL-12表达来测定)鉴定出五种先导配方。总的来说,我们的数据表明,配方成分驱动了包封效率和稳定性之间的平衡,并且与游离AZM相比,所有铅脂质体配方都改善了体外替代巨噬细胞激活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Optimization and Characterization of a Liposomal Azithromycin Formulation for Alternative Macrophage Activation.

Liposomal azithromycin (L-AZM) promotes macrophage polarization toward an M2-like phenotype in the context of myocardial infarction that results in improved cardiovascular outcomes in mice. To improve upon this formulation, we sought to identify optimized formulation, stability, and biological activity parameters necessary to enhance the immunomodulatory activity and efficacy of L-AZM. While our parent formulation contains a mixture of long-chain saturated phosphatidylcholine and phosphatidylglycerol lipids, we evaluated a series of formulations with different amounts of unsaturated lipids and cholesterol with the goal of improving the loading capacity and stability of the formulations. We also introduce fusogenic lipids to improve the cytosolic delivery to enhance the immune modulatory properties of the drug. To achieve these goals, we initially prepared a library of 24 formulations using thin film hydration and assessed the resultant liposomes for size and polydispersity. Five lead formulations were identified based on low polydispersity (<0.3) and stability over time. The lead formulations were then evaluated for stability in serum using dialysis and macrophage polarization activity in vitro as measured by decreased IL-12 expression. Collectively, our data indicate that the formulation components drive the balance between encapsulation efficiency and stability and that all the lead liposomal formulations improve in vitro alternative macrophage activation as compared to free AZM.

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