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用于癌症诊断和治疗的金属有机框架材料的应用进展:综述。

Advances in the use of MOFs for Cancer Diagnosis and Treatment: An Overview.

机构信息

Sao Paulo State University (UNESP), School of Pharmaceutical Sciences, Department of Drugs and Medicines, Highway Araraquara-Jau, Araraquara, SP, Brazil.

Department of Biological and Health Sciences, Universidade de Araraquara, UNIARA, Araraquara, SP, Brazil.

出版信息

Curr Pharm Des. 2020;26(33):4174-4184. doi: 10.2174/1381612826666200406153949.

Abstract

Nanoparticles as drug delivery systems and diagnostic agents have gained much attention in recent years, especially for cancer treatment. Nanocarriers improve the therapeutic efficiency and bioavailability of antitumor drugs, besides providing preferential accumulation at the target site. Among different types of nanocarriers for drug delivery assays, metal-organic frameworks (MOFs) have attracted increasing interest in the academic community. MOFs are an emerging class of coordination polymers constructed of metal nodes or clusters and organic linkers that show the capacity to combine a porous structure with high drug loading through distinct kinds of interactions, overcoming the limitations of traditional drug carriers explored up to date. Despite the rational design and synthesis of MOFs, structural aspects and some applications of these materials like gas adsorption have already been comprehensively described in recent years; it is time to demonstrate their potential applications in biomedicine. In this context, MOFs can be used as drug delivery systems and theranostic platforms due to their ability to release drugs and accommodate imaging agents. This review describes the intrinsic characteristics of nanocarriers used in cancer therapy and highlights the latest advances in MOFs as anticancer drug delivery systems and diagnostic agents.

摘要

近年来,纳米颗粒作为药物传递系统和诊断试剂引起了广泛关注,特别是在癌症治疗方面。纳米载体提高了抗肿瘤药物的治疗效率和生物利用度,同时还提供了在靶部位的优先积累。在用于药物传递试验的不同类型的纳米载体中,金属-有机骨架(MOFs)在学术界引起了越来越多的兴趣。MOFs 是一类新兴的配位聚合物,由金属节点或簇和有机连接体构成,具有通过不同类型的相互作用将多孔结构与高药物负载结合的能力,克服了迄今为止探索的传统药物载体的局限性。尽管对 MOFs 进行了合理的设计和合成,但这些材料的结构方面和一些应用,如气体吸附,近年来已经得到了全面的描述;现在是展示它们在生物医学中的潜在应用的时候了。在这种情况下,MOFs 可以用作药物传递系统和治疗诊断平台,因为它们能够释放药物并容纳成像剂。本文综述了用于癌症治疗的纳米载体的固有特性,并重点介绍了 MOFs 作为抗癌药物传递系统和诊断试剂的最新进展。

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