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基于线粒体靶向脂质体的药物递送——治疗潜力与挑战

Mitochondrial-targeted liposome-based drug delivery - therapeutic potential and challenges.

作者信息

Sanchez-Aranguren Lissette, Al Tahan Mohamad Anas, Uppal Muhammad, Juvale Parag, Marwah Mandeep Kaur

机构信息

College of Health and Life Sciences, Aston Medical School, Aston University, Birmingham, UK.

Translational Medicine Research Group, Aston Medical School, Aston University, Birmingham, UK.

出版信息

J Drug Target. 2025 Jun;33(5):575-586. doi: 10.1080/1061186X.2024.2437440. Epub 2024 Dec 8.

Abstract

Liposomes, as nanocarriers for therapeutics, are a prominent focus in translational medicine. Given their biocompatibility, liposomes are suitable drug delivery systems rendering highly efficient therapeutic outcomes with minimal off-site toxicity. In different scenarios of human disease, it is essential not only to maintain therapeutic drug levels but also to target them to the appropriate intracellular compartment. Mitochondria regulate cellular signalling, calcium balance, and energy production, playing a crucial role in various human diseases. The notion of focusing on mitochondria for targeted drug delivery was proposed several decades ago, yet the practical application of this idea and its translation to clinical use is still in development. Mitochondrial-targeted liposomes offer an alternative to standard drug delivery systems, potentially reducing off-target interactions, side effects, and drug dosage or frequency. To advance this field, it is imperative to integrate various disciplines such as efficient chemical design, pharmacology, pharmaceutics, and cell biology. This review summarises scientific advances in the design, development and characterisation of novel liposome-based drug delivery systems targeting the mitochondria while revisiting their translational potential.

摘要

脂质体作为治疗药物的纳米载体,是转化医学的一个突出重点。鉴于其生物相容性,脂质体是合适的药物递送系统,能够以最小的脱靶毒性实现高效的治疗效果。在人类疾病的不同情况下,不仅要维持治疗药物水平,还要将其靶向到适当的细胞内区室。线粒体调节细胞信号传导、钙平衡和能量产生,在各种人类疾病中发挥着关键作用。几十年前就提出了将线粒体作为靶向药物递送靶点的概念,但这一想法的实际应用及其向临床应用的转化仍在发展中。线粒体靶向脂质体为标准药物递送系统提供了一种替代方案,有可能减少脱靶相互作用、副作用以及药物剂量或给药频率。为了推动这一领域的发展,必须整合高效化学设计、药理学、药剂学和细胞生物学等多学科。本综述总结了新型线粒体靶向脂质体药物递送系统在设计、开发和表征方面的科学进展,同时回顾了它们的转化潜力。

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