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纳米载体理化性质的调整用于有效的抗癌应用。

Tailoring of physicochemical properties of nanocarriers for effective anti-cancer applications.

机构信息

Biological Engineering, Indian Institute of Technology-Gandhinagar, Ahmedabad, 382424, India.

Materials Science and Engineering, Indian Institute of Technology-Gandhinagar, Ahmedabad, 382424, India.

出版信息

J Biomed Mater Res A. 2017 Oct;105(10):2906-2928. doi: 10.1002/jbm.a.36141. Epub 2017 Jul 14.

Abstract

Nanotechnology has emerged strongly as a viable option to overcome the challenge of early diagnosis and effective drug delivery, for cancer treatment. Emerging research articles have expounded the advantages of using a specific type of nanomaterial-based system called as "nanocarriers," for anti-cancer therapy. The nanocarrier system is used as a transport unit for targeted drug delivery of the therapeutic drug moiety. In order for the nanocarriers to be effective for anticancer therapy, their physicochemical parameter needs to be tuned so that bio-functionalisation can be achieved to (1) allow drugs being attached to the substrate and for their controlled release, (2) ensure the stability of the nanocarrier up to the point of delivery, and (3) clearance of the nanocarrier after the delivery. It is therefore envisaged that tailoring of the physicochemical properties of nanocarriers can greatly influence their reactivity and interaction in the biological milieu, and this is becoming an important parameter for increasing the efficacy of cancer therapy. This review emphasizes the importance of physicochemical properties of nanocarriers, and how they influence its usage as chemotherapeutic drug carriers. The goal of this review is to present a correlation between the physicochemical properties of the nanocarriers and its intended action, and how their design based on these properties can enhance their cancer combating abilities while minimizing damage to the healthy tissues. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 2906-2928, 2017.

摘要

纳米技术已成为克服癌症治疗中早期诊断和有效药物输送挑战的可行选择。新兴的研究文章阐述了使用一种称为“纳米载体”的特定类型的纳米材料系统进行抗癌治疗的优势。纳米载体系统被用作治疗药物部分的靶向药物输送的运输单元。为了使纳米载体对癌症治疗有效,需要调整其物理化学参数,以便进行生物功能化,从而实现以下目标:(1)允许药物附着在基质上并进行控制释放,(2)确保纳米载体在输送点之前的稳定性,以及 (3)输送后清除纳米载体。因此,可以预见的是,纳米载体物理化学性质的定制可以极大地影响它们在生物环境中的反应性和相互作用,这正在成为提高癌症治疗效果的一个重要参数。本综述强调了纳米载体物理化学性质的重要性,以及它们如何影响其作为化疗药物载体的使用。本综述的目的是在纳米载体的物理化学性质与其预期作用之间建立相关性,并展示如何根据这些性质设计纳米载体可以增强其抗癌能力,同时最大程度地减少对健康组织的损害。© 2017 年 Wiley 期刊,生物医学材料研究部分 A:105A:2906-2928,2017 年。

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