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一种并行和级联控制系统:用于乳腺癌治疗中协同调节肿瘤相关巨噬细胞极化和抑制肿瘤细胞的miR125b磁转染

A parallel and cascade control system: magnetofection of miR125b for synergistic tumor-association macrophage polarization regulation and tumor cell suppression in breast cancer treatment.

作者信息

Hu Ao, Chen Xiaobing, Bi Qunjie, Xiang Yang, Jin Rongrong, Ai Hua, Nie Yu

机构信息

National Engineering Research Center for Biomaterials, Sichuan University, Chengdu, 610064, P. R. China.

出版信息

Nanoscale. 2020 Nov 19;12(44):22615-22627. doi: 10.1039/d0nr06060g.

DOI:10.1039/d0nr06060g
PMID:33150908
Abstract

Polarization regulation of tumor-association macrophages (TAMs) is a promising treatment method for tumors, but aiming at TAMs alone shows unsatisfactory therapeutic efficiency. Therefore, we designed a parallel and cascade control system for both macrophage polarization and tumor cell inhibition. The system is composed of cationic lipopeptides with an arginine-rich periphery (RLS) and anionic magnetic nanoparticles (MNPs) for fleet transfection of miR-125b. Based on the highly efficient magnetofection, miR-125b successfully shows a parallel effect on both M1, promoting polarization by targeting interferon regulatory factor 4 (IRF4) in macrophages, and tumor cell inhibition, by targeting ETS proto-oncogene 1 and cyclin- J. The cascading effect on M1-associated genes is upregulated by up to two orders of magnitude, while M2-associated genes are downregulated. Meanwhile, MNPs also have an effect on the TAM polarization and 4T1 tumor cell inhibition via inflammatory related gene expression and Fenton reaction. Further mimicking the co-culture of RAW264.7 and 4T1 cells in vitro confirmed the synergistic therapy effect. In the treatment of orthotopic breast cancer in mice, considerable M1 macrophage polarization was observed in the RM125b treated group, showing distinct tumor-suppressive effects, with a tumor weight reduction of 60% and tumor metastasis suppression of 50%.

摘要

肿瘤相关巨噬细胞(TAM)的极化调控是一种很有前景的肿瘤治疗方法,但仅针对TAM的治疗效果并不理想。因此,我们设计了一个用于巨噬细胞极化和肿瘤细胞抑制的并行和级联控制系统。该系统由外周富含精氨酸的阳离子脂肽(RLS)和用于miR-125b快速转染的阴离子磁性纳米颗粒(MNP)组成。基于高效的磁转染,miR-125b成功地对M1巨噬细胞极化和肿瘤细胞抑制均产生并行效应,在巨噬细胞中通过靶向干扰素调节因子4(IRF4)促进极化,在肿瘤细胞中通过靶向ETS原癌基因1和细胞周期蛋白J抑制肿瘤细胞。对M1相关基因的级联效应上调高达两个数量级,而M2相关基因则下调。同时,MNP还通过炎症相关基因表达和芬顿反应对TAM极化和4T1肿瘤细胞抑制产生影响。进一步在体外模拟RAW264.7和4T1细胞的共培养证实了协同治疗效果。在小鼠原位乳腺癌治疗中,RM125b治疗组观察到大量M1巨噬细胞极化,显示出明显的肿瘤抑制作用,肿瘤重量减轻60%,肿瘤转移抑制50%。

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