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智能纳米疗法与肺癌

Smart Nanotherapeutics and Lung Cancer.

作者信息

Doroudian Mohammad, Azhdari Mohammad H, Goodarzi Nima, O'Sullivan David, Donnelly Seamas C

机构信息

School of Medicine, Trinity Biomedical Sciences Institute, Trinity College, Dublin 2, Ireland.

Department of Cell and Molecular Sciences, Faculty of Biological Sciences, Kharazmi University, Tehran 15719-14911, Iran.

出版信息

Pharmaceutics. 2021 Nov 20;13(11):1972. doi: 10.3390/pharmaceutics13111972.

Abstract

Lung cancer is a significant health problem worldwide. Unfortunately, current therapeutic strategies lack a sufficient level of specificity and can harm adjacent healthy cells. Consequently, to address the clinical need, novel approaches to improve treatment efficiency with minimal side effects are required. Nanotechnology can substantially contribute to the generation of differentiated products and improve patient outcomes. Evidence from previous research suggests that nanotechnology-based drug delivery systems could provide a promising platform for the targeted delivery of traditional chemotherapeutic drugs and novel small molecule therapeutic agents to treat lung cancer cells more effectively. This has also been found to improve the therapeutic index and reduce the required drug dose. Nanodrug delivery systems also provide precise control over drug release, resulting in reduced toxic side effects, controlled biodistribution, and accelerated effects or responses. This review highlights the most advanced and novel nanotechnology-based strategies, including targeted nanodrug delivery systems, stimuli-responsive nanoparticles, and bio-nanocarriers, which have recently been employed in preclinical and clinical investigations to overcome the current challenges in lung cancer treatments.

摘要

肺癌是全球一个重大的健康问题。不幸的是,当前的治疗策略缺乏足够的特异性,并且会损害邻近的健康细胞。因此,为满足临床需求,需要新的方法来提高治疗效率并将副作用降至最低。纳米技术可以极大地促进差异化产品的产生并改善患者预后。先前研究的证据表明,基于纳米技术的药物递送系统可以为将传统化疗药物和新型小分子治疗剂靶向递送至肺癌细胞从而更有效地治疗肺癌提供一个有前景的平台。人们还发现这可以提高治疗指数并减少所需的药物剂量。纳米药物递送系统还能精确控制药物释放,从而减少毒副作用、控制生物分布并加快疗效或反应。本综述重点介绍了最先进和新颖的基于纳米技术的策略,包括靶向纳米药物递送系统、刺激响应性纳米颗粒和生物纳米载体,这些策略最近已用于临床前和临床研究,以克服肺癌治疗中的当前挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9c9/8619749/50f246a833dd/pharmaceutics-13-01972-g001.jpg

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