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立方脂质纳米载体作为一种用于细胞内感染的药物传递载体。

Cubosome Lipid Nanocarriers As a Drug Delivery Vehicle for Intracellular Infections.

机构信息

School of Science, STEM College, RMIT University, Melbourne, Victoria 3001, Australia.

School of Engineering, STEM College, RMIT University, Melbourne, Victoria 3001, Australia.

出版信息

ACS Appl Mater Interfaces. 2023 May 10;15(18):21819-21829. doi: 10.1021/acsami.3c00101. Epub 2023 Apr 5.

Abstract

(MTB) causes the infectious disease tuberculosis (TB), responsible for more deaths than any other single infectious disease in history. Intracellular MTB are slow growing and difficult to target with traditional antitubercular drugs, leading to the emergence of multidrug resistance in TB infection, which is a major global public health issue. Recent advances in innovative lipid nanotechnologies for drug delivery have demonstrated promising outcomes for chronic infectious diseases but have not yet been tested as potential delivery systems for intracellular infections such as TB. The current study evaluates the potential of monoolein (MO)-based cationic cubosomes for the encapsulation and delivery of the first line antitubercular drug rifampicin (RIF) against an MTB-H37Ra culture model. In particular, we show that the use of cationic cubosomes as delivery vehicles reduced the minimum inhibitory concentration (MIC) of RIF by 2-fold against actively replicating MTB-H37Ra (compared to that of the free drug) and also shortened the lifecycle duration of axenic MTB-H37Ra from 5 to 3 days. The cubosome-mediated delivery was also found to be effective against intracellular MTB-H37Ra within THP-1 human macrophages, with a 2.8 log reduction in viability of the bacilli after 6 days incubation at the MIC. The killing time was also reduced from 8 to 6 days without distressing the host macrophages. Mechanistic studies on the uptake of RIF-loaded cationic cubosomes using total internal reflection fluorescence microscopy (TIRFM) demonstrated the capacity of these lipid particles to effectively target intracellular bacteria. Overall, these results demonstrate that cationic cubosomes are a potent delivery system for the antitubercular drug RIF for therapeutic management of TB.

摘要

(MTB)引起传染性疾病肺结核(TB),比历史上任何其他单一传染病导致的死亡都多。细胞内的 MTB 生长缓慢,难以用传统的抗结核药物靶向,导致 TB 感染中出现多药耐药性,这是一个主要的全球公共卫生问题。最近在创新脂质纳米技术药物递送方面的进展为慢性传染病带来了有希望的结果,但尚未作为潜在的递送系统用于细胞内感染,如 TB。本研究评估了基于单油酸甘油酯(MO)的阳离子立方脂质体作为一线抗结核药物利福平(RIF)的包封和递送系统,用于 MTB-H37Ra 培养模型。特别是,我们表明,与游离药物相比,阳离子立方脂质体作为递送载体可将利福平的最小抑菌浓度(MIC)降低 2 倍,对活跃复制的 MTB-H37Ra 有效,并且还将无共生 MTB-H37Ra 的生命周期从 5 天缩短到 3 天。还发现立方脂质体介导的递送对 THP-1 人巨噬细胞内的 MTB-H37Ra 有效,在 MIC 下孵育 6 天后,杆菌的活力降低了 2.8 对数。杀伤时间也从 8 天缩短到 6 天,而不会损害宿主巨噬细胞。使用全内反射荧光显微镜(TIRFM)对负载 RIF 的阳离子立方脂质体的摄取进行的机制研究表明,这些脂质颗粒能够有效地靶向细胞内细菌。总的来说,这些结果表明阳离子立方脂质体是治疗 TB 的抗结核药物 RIF 的有效递送系统。

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