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基于肿瘤微环境和乳铁蛋白特性开发镓(III)制剂:实现癌症的双药共递送和多靶点联合治疗

Developing a Gallium(III) Agent Based on the Properties of the Tumor Microenvironment and Lactoferrin: Achieving Two-Agent Co-delivery and Multi-targeted Combination Therapy of Cancer.

作者信息

Yang Tongfu, Zhang Zhenlei, Zhang Juzheng, Li Yanping, Li Wenjuan, Liang Hong, Yang Feng

机构信息

State Key Laboratory for Chemistry and Molecular Engineering of Medicinal Resources/Key Laboratory for Chemistry and Molecular Engineering of Medicinal Resources (Ministry of Education of China), School of Chemistry and Pharmaceutical Sciences, Collaborative Innovation Center for Guangxi Ethnic Medicine, Guangxi Normal University, Guilin, Guangxi 541004, China.

出版信息

J Med Chem. 2023 Jan 12;66(1):793-803. doi: 10.1021/acs.jmedchem.2c01684. Epub 2022 Dec 21.

Abstract

To develop a next-generation anticancer metal-based drug, realize the multi-targeted combination therapy of protein drug and metal-based drug for cancer, solve their co-delivery challenges, and improve their in vivo targeting ability, we proposed to develop a multi-targeted anticancer metal-based agent exploiting the properties of the tumor microenvironment (TME) and of lactoferrin (LF). To this end, we optimized a series of gallium (Ga, III) isopropyl-2-pyridyl-ketone thiosemicarbazone compounds to obtain a Ga compound (C4) with remarkable cytotoxicity and then constructed a new LF-C4 nanoparticle (LF-C4 NP) delivery system. In vivo studies showed that LF-C4 NPs not only had a greater capacity for inhibiting tumor growth than LF or C4 alone but also solved the co-delivery problems of LF and C4 and improved their targeting ability. Furthermore, free C4 and LF-C4 NPs inhibited tumor growth through multiple synergistic actions on the TME: killing cancer cell, inhibiting tumor angiogenesis, and activating immune system.

摘要

为开发下一代基于金属的抗癌药物,实现蛋白质药物与基于金属的药物联合用于癌症的多靶点治疗,解决它们的共递送难题,并提高其体内靶向能力,我们提议利用肿瘤微环境(TME)和乳铁蛋白(LF)的特性开发一种多靶点抗癌金属基药物。为此,我们优化了一系列镓(Ga,III)异丙基-2-吡啶基-酮缩氨基硫脲化合物,以获得一种具有显著细胞毒性的Ga化合物(C4),然后构建了一种新的LF-C4纳米颗粒(LF-C4 NP)递送系统。体内研究表明,LF-C4 NPs不仅比单独的LF或C4具有更强的抑制肿瘤生长的能力,还解决了LF和C4的共递送问题,并提高了它们的靶向能力。此外,游离的C4和LF-C4 NPs通过对TME的多种协同作用抑制肿瘤生长:杀死癌细胞、抑制肿瘤血管生成和激活免疫系统。

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