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罗丹明/纳米金刚石作为药物载体的系统模型。

Rhodamine/Nanodiamond as a System Model for Drug Carrier.

作者信息

Reina G, Orlanducci S, Cairone C, Tamburri E, Lenti S, Cianchetta I, Rossi M, Terranova M L

出版信息

J Nanosci Nanotechnol. 2015 Feb;15(2):1022-9. doi: 10.1166/jnn.2015.9736.


DOI:10.1166/jnn.2015.9736
PMID:26353608
Abstract

In this paper we present some strategies that are being developed in our labs towards enabling nanodiamond-based applications for drug delivery. Rhodamine B (RhB) has been choosen as model molecule to study the loading of nanodiamonds with active moieties and the conditions for their controlled release. In order to test the chemical/physical interactions between functionalized detonation nanodiamond (DND) and complex molecules, we prepared and tested different RhB@DND systems, with RhB adsorbed or linked by ionic bonding to the DND surface. The chemical state of the DND surfaces before conjugation with the RhB molecules, and the chemical features of the DND-RhB interactions have been deeply analysed by coupling DND with Au nanoparticles and taking advantage of surface enhanced Raman spectroscopy SERS. The effects due to temperature and pH variations on the process of RhB release from the DND carrier have been also investigated. The amounts of released molecules are consistent with those required for effective drug action in conventional therapeutic applications, and this makes the DND promising nanostructured cargos for drug delivery applications.

摘要

在本文中,我们介绍了我们实验室正在开发的一些策略,旨在实现基于纳米金刚石的药物递送应用。罗丹明B(RhB)已被选为模型分子,用于研究纳米金刚石与活性部分的负载以及它们的控释条件。为了测试功能化爆轰纳米金刚石(DND)与复杂分子之间的化学/物理相互作用,我们制备并测试了不同的RhB@DND系统,其中RhB通过离子键吸附或连接到DND表面。通过将DND与金纳米颗粒耦合并利用表面增强拉曼光谱(SERS),深入分析了与RhB分子共轭之前DND表面的化学状态以及DND-RhB相互作用的化学特征。还研究了温度和pH变化对RhB从DND载体释放过程的影响。释放分子的量与传统治疗应用中有效药物作用所需的量一致,这使得DND成为药物递送应用中很有前景的纳米结构载体。

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引用本文的文献

[1]
Applications of Nanodiamonds in the Detection and Therapy of Infectious Diseases.

Materials (Basel). 2019-5-20

[2]
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[3]
Characterization of Nanodiamond-based anti-HIV drug Delivery to the Brain.

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[4]
Role of Nanodiamonds in Drug Delivery and Stem Cell Therapy.

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