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纳米一氧化氮传递系统的分子设计与医学应用

Molecular Design and Medicinal Applications of Nano-Nitric Oxide Delivery Systems.

机构信息

School of Materials Science and Engineering, Nanyang Technological University, Singapore 639798, Singapore.

School of Biological Sciences, Nanyang Technological University, Singapore 637551, Singapore.

出版信息

Curr Med Chem. 2018;25(12):1420-1432. doi: 10.2174/0929867324666170407141222.

Abstract

BACKGROUND

Nitric oxide (NO) plays important regulatory roles in a plethora of biological functions and thus holds tremendous potential to be exploited for clinical uses. However, the chemistries in the molecular design of nano-nitric oxide delivery systems is currently lacking.

OBJECTIVE

The overarching aim of this review is to provide the readers with the fundamentals that relate to the design of NO release molecules (NORMs), loading and releasing mechanism, as well as delivery of NORMs for nanotherapeutics.

METHODS

We conducted a thorough literature search on the design and synthesis of NORMs, as well as the current state-of-the-art NO compatible delivery platforms to address various clinical needs.

RESULTS

N-diazeniumdiolate and S-nitrosothiol based NO molecules are among the most widely used NORMs for anti-cancer and anti-microbial applications. The innovative integration of these NORMs with cytocompatible organic and inorganic nanocarriers enabled controlled spatiotemporal delivery and release of NO at the targeted diseased sites.

CONCLUSION

We have provided a comprehensive summary of the fundamental chemistries underpinning the molecular design of the NORMs and critically assessed the recent advancements of nano-NO delivery systems for advanced biomedical applications.

摘要

背景

一氧化氮(NO)在众多生物学功能中发挥着重要的调节作用,因此具有巨大的临床应用潜力。然而,目前在纳米一氧化氮传递系统的分子设计中,化学知识还存在欠缺。

目的

本综述旨在为读者提供与一氧化氮释放分子(NORM)设计、加载和释放机制以及 NORM 纳米治疗学的传递相关的基础知识。

方法

我们对 NORM 的设计和合成以及当前最先进的与 NO 兼容的传递平台进行了全面的文献检索,以满足各种临床需求。

结果

基于 N-二烯丙基脒二硝酸盐和 S-亚硝基硫醇的 NO 分子是最广泛用于抗癌和抗菌应用的 NORM 之一。这些 NORM 与细胞相容性的有机和无机纳米载体的创新性整合,使得能够在靶向病变部位进行时空控制的 NO 传递和释放。

结论

我们全面总结了 NORM 分子设计的基础化学知识,并对用于高级生物医学应用的纳米 NO 传递系统的最新进展进行了批判性评估。

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