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金(III)-阿霉素配合物-聚乙二醇化纳米载体的可调设计。用于肿瘤学应用的金阿霉素。

Tunable Design of Gold(III)-Doxorubicin Complex-PEGylated Nanocarrier. The Golden Doxorubicin for Oncological Applications.

机构信息

CNRS, UMR 7244, CSPBAT, Laboratoire de Chimie, Structures et Propriétés de Biomateriaux et d'Agents Therapeutiques Université Paris 13 , Sorbonne Paris Cité, 93000 Bobigny, France.

Department of Clinical Medicine, School of Medicine, Trinity College Dublin , Dublin 2, Ireland.

出版信息

ACS Appl Mater Interfaces. 2016 Aug 10;8(31):19946-57. doi: 10.1021/acsami.6b07250. Epub 2016 Jul 26.

Abstract

To date, the translation of Au (III) complexes into chemotherapeutic agents has been hindered by their low stability under physiological conditions, a crucial parameter in drug development. In this study, we report an innovative four-step synthesis of a stable Au (III)-doxorubicin (DOX) complex, acting as a key constitutive component of doxorubicin-loaded PEG-coated nanoparticles (DOX IN-PEG-AuNPs). For therapeutic purposes, such AuNPs were then functionalized with the anti-Kv11.1 polyclonal antibody (pAb), which specifically recognizes the hERG1 channel that is overexpressed on the membrane of human pancreatic cancer cells. The nature of the interactions between DOX and Au (III) ions was probed by various analytical techniques (Raman spectroscopy, UV-vis, and (1)H NMR), which enabled studying the Au (III)-DOX interactions during AuNPs formation. The theoretical characterization of the vibrational bands and the electronic transitions of the Au (III)-DOX complex calculated through computational studies showed significant qualitative agreement with the experimental observations on AuNPs samples. Stability in physiological conditions and efficient drug loading (up to to 85 w/w %) were achieved, while drug release was strongly dependent on the structure of DOX IN-PEG-AuNPs and on the pH. Furthermore, the interactions among DOX, PEG, and Au (III) ions in DOX IN-PEG-AuNPs differed significantly from those found in polymer-modified AuNPs loaded with DOX by covalent linkage, referred to as DOX ON-PEG-AuNPs. In vitro experiments indeed demonstrated that such differences strongly influenced the therapeutic potential of AuNPs in pancreatic cancer treatment, with a significant increase of the DOX therapeutic index when complexed to Au (III) ions. Collectively, our study demonstrated that Au (III)-DOX complexes as building blocks of PEGylated AuNPs constitutes a promising approach to transform promising Au (III) complexes into real chemotherapeutic drugs for the treatment of pancreatic cancer.

摘要

迄今为止,由于 Au (III) 配合物在生理条件下稳定性低,作为药物开发的关键参数,其将其转化为化疗药物一直受到阻碍。在这项研究中,我们报告了一种创新的四步合成稳定的 Au (III)-阿霉素 (DOX) 配合物的方法,该配合物作为载有 DOX 的聚乙二醇包覆纳米颗粒 (DOX IN-PEG-AuNPs) 的关键组成部分。出于治疗目的,然后用抗 Kv11.1 多克隆抗体 (pAb) 对这些 AuNPs 进行功能化,该抗体特异性识别过度表达于人胰腺癌细胞膜上的 hERG1 通道。通过各种分析技术(拉曼光谱、紫外-可见光谱和 (1)H NMR)探测 DOX 与 Au (III) 离子之间的相互作用性质,这使我们能够在 AuNPs 形成过程中研究 Au (III)-DOX 相互作用。通过计算研究计算出的 Au (III)-DOX 配合物的振动带和电子跃迁的理论特征与 AuNPs 样品的实验观察结果具有显著的定性一致性。在生理条件下实现了稳定性和高效的药物负载(高达 85 w/w %),而药物释放强烈依赖于 DOX IN-PEG-AuNPs 的结构和 pH 值。此外,在 DOX IN-PEG-AuNPs 中,DOX、PEG 和 Au (III) 离子之间的相互作用与通过共价键连接负载 DOX 的聚合物修饰 AuNPs(称为 DOX ON-PEG-AuNPs)中的相互作用有很大不同。体外实验确实表明,这些差异强烈影响了 AuNPs 在胰腺癌治疗中的治疗潜力,当与 Au (III) 离子络合时,DOX 的治疗指数显著增加。总的来说,我们的研究表明,作为 PEG 化 AuNPs 构建块的 Au (III)-DOX 配合物为将有前途的 Au (III) 配合物转化为治疗胰腺癌的真正化疗药物提供了一种有前途的方法。

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