Size-Adjustable Nano-Drug Delivery Systems for Enhanced Tumor Retention and Penetration

Miao Deng, Jingdong Rao, Rong Guo, Man Li, Qin He
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Abstract

Over the past decades, nano-drug delivery systems have shown great potential in improving tumor treatment. And the controllability and design flexibility of nanoparticles endow them a broad development space. The particle size is one of the most important factors affecting the potency of nano-drug delivery systems. Large-size (100–200 nm) nanoparticles are more conducive to long circulation and tumor retention, but have poor tumor penetration; small-size (<50 nm) nanoparticles can deeply penetrate tumor but are easily cleared. Most of the current fixed-size nanoparticles are difficult to balance the retention and penetration, while the proposal of size-adjustable nano-drug delivery systems offers a solution to this paradox. Many endogenous and exogenous stimuli, such as acidic pH, upregulated enzymes, temperature, light, catalysts, redox conditions, and reactive oxygen species, can trigger the in situ transformation of nanoparticles based on protonation, hydrolysis, click reaction, phase transition, photoisomerization, redox reaction, etc. In this review, we summarize the principles and applications of stimuli-responsive size-adjustable strategies, including size-enlargement strategies and size-shrinkage strategies. We also propose the challenges faced by size-adjustable nano-drug delivery systems, hoping to promote the development of this strategy.
用于增强肿瘤保留和渗透的可调节纳米药物递送系统
在过去的几十年里,纳米药物输送系统在改善肿瘤治疗方面显示出巨大的潜力。纳米粒子的可控性和设计灵活性赋予了它们广阔的发展空间。颗粒大小是影响纳米给药系统效能的重要因素之一。大粒径(100-200 nm)纳米颗粒更有利于长循环和肿瘤滞留,但肿瘤穿透性差;小尺寸(<50 nm)的纳米颗粒可以深入穿透肿瘤,但很容易被清除。目前大多数固定尺寸的纳米颗粒难以平衡其滞留性和穿透性,而尺寸可调纳米给药系统的提出解决了这一矛盾。许多内源性和外源性刺激,如酸性pH、酶的上调、温度、光、催化剂、氧化还原条件和活性氧等,都可以触发纳米颗粒的质子化、水解、点击反应、相变、光异构化、氧化还原反应等原位转化。本文综述了刺激反应大小调节策略的原理和应用,包括大小增大策略和大小缩小策略。我们还提出了可调节纳米给药系统面临的挑战,希望能促进这一策略的发展。
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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