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通过纳米颗粒设计提高纳米药物肿瘤穿透性的策略。

Strategies to improve tumor penetration of nanomedicines through nanoparticle design.

机构信息

School of Medicine, Institutes for Life Sciences, South China University of Technology, Guangzhou, Guangdong, China.

Department of Radiology, The First Affiliated Hospital of Sun Yat-Sen University, Guangzhou, Guangdong, China.

出版信息

Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2019 Jan;11(1):e1519. doi: 10.1002/wnan.1519. Epub 2018 Apr 16.

Abstract

Nanoparticles (NPs) have emerged as an effective means to deliver therapeutic drugs for cancer treatment, as they can preferentially accumulate at tumor site through the enhanced permeability and retention effect. Various forms of NPs including liposomes, polymeric micelles, and inorganic particles have been used for therapeutic applications. However, the therapeutic benefits of nanomedicines are suboptimal. Although many possible reasons may account for the compromised therapeutic efficacy, the inefficient tumor penetration can be a vital obstacle. Tumor develops characteristic pathological environment, such as abnormal vasculature, elevated interstitial fluid pressure, and dense extracellular matrix, which intrinsically hinder the transport of nanomedicines in the tumor parenchyma. The physicochemical properties of the NPs such as size, shape, and surface charge have profound effect on tumor penetration. In this review, we will highlight the factors that affect the transport of NPs in solid tumor, and then elaborate on designing strategies to improve NPs' penetration and uniform distribution inside the tumor interstitium. This article is categorized under: Therapeutic Approaches and Drug Discovery > Nanomedicine for Oncologic Disease.

摘要

纳米粒子(NPs)已成为癌症治疗中传递治疗药物的有效手段,因为它们可以通过增强的通透性和保留效应优先在肿瘤部位积累。各种形式的 NPs,包括脂质体、聚合物胶束和无机颗粒,已被用于治疗应用。然而,纳米药物的治疗效果并不理想。尽管有许多可能的原因导致治疗效果受损,但低效的肿瘤穿透可能是一个至关重要的障碍。肿瘤发展出特征性的病理环境,如异常的血管、升高的间质液压力和致密的细胞外基质,这些环境内在地阻碍了纳米药物在肿瘤实质中的运输。NPs 的物理化学性质,如大小、形状和表面电荷,对肿瘤穿透有深远的影响。在这篇综述中,我们将重点介绍影响固体肿瘤中 NPs 传输的因素,然后详细阐述设计策略以提高 NPs 在肿瘤间质中的穿透和均匀分布。本文属于以下类别:治疗方法和药物发现 > 纳米医学治疗肿瘤疾病。

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