MnMOF-based microwave-glutathione dual-responsive nano-missile for enhanced microwave Thermo-dynamic chemotherapy of drug-resistant tumors

体内 药品 药物输送 材料科学 谷胱甘肽 化疗 肿瘤微环境 顺铂 微波食品加热 癌症研究 抗药性 化学 纳米技术 药理学 医学 肿瘤细胞 生物 计算机科学 外科 生物化学 生物技术 微生物学 电信
作者
Qiong Wu,Qijun Du,Xuxu Sun,Meng Niu,Longfei Tan,Changhui Fu,Xiangling Ren,Yanjun Zheng,Tian Liang,Jingyi Zhao,Xiufang Lv,Ping Liang,Daoke Yang,Xianwei Meng,Jie Yu
出处
期刊:Chemical Engineering Journal [Elsevier]
卷期号:439: 135582-135582 被引量:25
标识
DOI:10.1016/j.cej.2022.135582
摘要

Metal-organic frameworks (MOFs) have been developed for tumor therapy in recent years, but so far there have been very few reports about the use of single metallic manganese (Mn) MOF in tumor therapy due to limited types of organic ligands. Expending on advantages of Mn-based nanoplatform, a novel magnetic resonance imaging (MRI)-monitored, microwave (MW) thermo-dynamic sensitized, and glutathione (GSH)-responsive Mn-based MOF is nano-engineered by combining imidazole containing sulfhydryl bond with Mn2+ for cisplatin (CDDP) loading, the phase-changing material (PCM) and tumor cell membrane (TCM) with homologous targeting are modified to finally generate [email protected] nano-missile (TMCP Nm). Through active and passive targeting, MW-GSH dual-response, and site-directed release, the nano-missile can effectively reverse CDDP resistance, amplify the efficacy of MW thermo-dynamic chemotherapy, and finally achieve excellent therapeutic effect on drug-resistant tumor models both in vivo and in vitro. This strategy differs from traditional chemotherapy and MW thermotherapy (MWT), which triggers a series of changes in the tumor microenvironment that make subsequent chemotherapy more effective. In this study, a novel Mn-based MOF is designed and synthesized, which opens a new way to solve the problem of drug-resistance caused by chemotherapeutic drugs represented by CDDP in tumor therapy, and will greatly expand the application of MOFs and chemotherapeutic drugs.
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