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Phototriggerable Liposomes: Current Research and Future Perspectives

机译:可光触发脂质体:当前研究和未来展望

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摘要

The field of cancer nanomedicine is considered a promising area for improved delivery of bioactive molecules including drugs, pharmaceutical agents and nucleic acids. Among these, drug delivery technology has made discernible progress in recent years and the areas that warrant further focus and consideration towards technological developments have also been recognized. Development of viable methods for on-demand spatial and temporal release of entrapped drugs from the nanocarriers is an arena that is likely to enhance the clinical suitability of drug-loaded nanocarriers. One such approach, which utilizes light as the external stimulus to disrupt and/or destabilize drug-loaded nanoparticles, will be the discussion platform of this article. Although several phototriggerable nanocarriers are currently under development, I will limit this review to the phototriggerable liposomes that have demonstrated promise in the cell culture systems at least (but not the last). The topics covered in this review include (i) a brief summary of various phototriggerable nanocarriers; (ii) an overview of the application of liposomes to deliver payload of photosensitizers and associated technologies; (iii) the design considerations of photoactivable lipid molecules and the chemical considerations and mechanisms of phototriggering of liposomal lipids; (iv) limitations and future directions for in vivo, clinically viable triggered drug delivery approaches and potential novel photoactivation strategies will be discussed.
机译:癌症纳米医学领域被认为是改善包括药物,药剂和核酸在内的生物活性分子递送的有前途的领域。其中,近年来,药物输送技术取得了明显的进步,人们也认识到需要进一步关注和考虑技术发展的领域。从纳米载体按需时空释放被困药物的可行方法的开发是一个有可能增强载药纳米载体临床适应性的领域。一种利用光作为外部刺激来破坏和/或破坏载有药物的纳米颗粒的方法将成为本文的讨论平台。尽管目前正在开发几种可光触发的纳米载体,但我将把这篇评论限于至少在细胞培养系统中已显示出希望的光可触发脂质体。本综述涵盖的主题包括:(i)各种可光触发纳米载体的简要概述; (ii)脂质体在递送光敏剂有效载荷和相关技术中的应用概述; (iii)光活化脂质分子的设计考虑以及脂质体脂质的化学触发和光触发机理; (iv)将讨论体内,临床上可行的触发药物递送方法和潜在的新型光活化策略的局限性和未来发展方向。

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