Hou Qidi, Zhang Kun, Chen Sitong, Chen Jie, Zhang Yan, Gong Ningqiang, Guo Weisheng, Fang Chao, Wang Luo, Jiang Jian, Dou Jianping, Liang Xingjie, Yu Jie, Liang Ping
Department of Medical Ultrasound, Fifth Medical Center, Chinese PLA General Hospital, No. 28 Fuxing Road, Beijing 100853, P. R. China.
Department of clinical laboratory, Institute of Laboratory Medicine, Guangdong Provincial Key Laboratory of Medical Molecular Diagnostics, School of Medical Technology, Guangdong Medical University, No. 1 New City Road, Dongguan 523808, P. R. China.
ACS Nano. 2022 Apr 26;16(4):5704-5718. doi: 10.1021/acsnano.1c10714. Epub 2022 Mar 30.
Ionic liquid (IL)-loaded or metal ions-enriched nanoparticles have been witnessed to assist microwave ablation (MWA) and heighten heat utilization for tumor treatment, which, however, inevitably brings about cell dys-homeostasis and severely endangers normal cells or tissues. In this report, a nonionic MWA sensitizer that encapsulates ethyl formate (EF) and doxorubicin (DOX) in liposomes (EF-DOX-Lips) was constructed to reinforce MWA and combined therapy against incomplete MWA-induced tumor recurrence. EF in EF-DOX-Lips as the nonionic liquid can perform like IL to accelerate energy transformation from electromagnetic energy to heat for strengthening MWA. More significantly, EF metabolite, that is, ethanol, also enables chemical ablation, which further enhances MWA. As well, the EF gasification-enhanced lipid rupture and cavitation can promote DOX delivery into a liver tumor for magnifying MWA & chemotherapy combined therapy. By virtue of these contributions, this nonionic MWA nanosensitizer exerts robust antitumor effects to inhibit tumor proliferation and angiogenesis for repressing tumor growth and recurrence or metastasis via downregulating the gene and unconventional PI3K/Akt & MAPK signal pathways that the incomplete MWA activated, which provides an avenue to elevate an MWA-based antitumor outcome.
已证实负载离子液体(IL)或富含金属离子的纳米颗粒可辅助微波消融(MWA)并提高肿瘤治疗中的热利用率,然而,这不可避免地会导致细胞内稳态失调,并严重危及正常细胞或组织。在本报告中,构建了一种非离子型MWA敏化剂,其在脂质体中封装了甲酸乙酯(EF)和阿霉素(DOX)(EF-DOX-Lips),以加强MWA以及针对不完全MWA诱导的肿瘤复发的联合治疗。EF-DOX-Lips中的EF作为非离子液体,其作用类似于离子液体,可加速电磁能向热能的能量转换以增强MWA。更重要的是,EF的代谢产物乙醇也能进行化学消融,进一步增强MWA。此外,EF气化增强的脂质破裂和空化作用可促进DOX递送至肝肿瘤中,以放大MWA与化疗的联合治疗效果。凭借这些作用,这种非离子型MWA纳米敏化剂发挥强大的抗肿瘤作用,通过下调不完全MWA激活的基因以及非常规PI3K/Akt和MAPK信号通路来抑制肿瘤增殖和血管生成,从而抑制肿瘤生长、复发或转移,这为提高基于MWA的抗肿瘤疗效提供了一条途径。