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C-C 趋化因子配体 2(CCL2)募集巨噬细胞膜伪装的空心铋硒化物纳米粒子以促进光热敏感性并抑制乳腺癌肺转移。

C-C Chemokine Ligand 2 (CCL2) Recruits Macrophage-Membrane-Camouflaged Hollow Bismuth Selenide Nanoparticles To Facilitate Photothermal Sensitivity and Inhibit Lung Metastasis of Breast Cancer.

机构信息

School of Pharmaceutical Sciences , Zhengzhou University , Zhengzhou 450001 , People's Republic of China.

Collaborative Innovation Center of New Drug Research and Safety Evaluation , Henan Province , Zhengzhou 450001 , People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2018 Sep 19;10(37):31124-31135. doi: 10.1021/acsami.8b11645. Epub 2018 Sep 7.

Abstract

Poor tumor accumulation, rapid clearance from blood circulation, and high risk of invasive and metastasis are the major barriers that encumber the conventional nanodrug-based tumor therapy. In this work, macrophage membrane (M)-camouflaged quercetin (QE)-loaded hollow bismuth selenide nanoparticles (abbreviated as M@BS-QE NPs) are fabricated for combination therapy of breast cancer. The resulting M@BS-QE NPs are comprehensively characterized, possessing prolonged circulation life, as well as accelerated and enhanced tumoritropic accumulation, compared with those of bare BS NPs because of the immune evading capacity, C-C chemokine ligand 2 (CCL2)-mediated recruitment properties, and active targeting ability. The subsequent QE release under near-infrared (NIR) laser irradiation can selectively sensitize cancer cells to photothermal therapy (PTT) by depleting heat shock protein 70 (HSP70, one malignancy-specific-overexpressed thermoresistance-related chaperone) to realize such a cascaded synergistic effect. At the same time, M@BS-QE NPs down-regulated p-Akt and matrix metalloproteinase-9 (MMP-9, which degrades the extracellular matrix to promote invasion and metastasis of tumors) signal axis to suppress breast cancer lung metastasis. Thus, our results provide a biomimetic strategy, using the characteristics of breast cancer and biological properties of macrophages, that hold great promise to enhance the therapeutic efficacy and improve the accuracy of treatment with minimal side effects on both primary and lung metastasis of breast cancer.

摘要

肿瘤蓄积不良、血液循环快速清除以及侵袭和转移风险高,是阻碍传统基于纳米药物的肿瘤治疗的主要障碍。在这项工作中,制备了巨噬细胞膜(M)伪装的槲皮素(QE)负载的中空铋硒纳米粒子(简称 M@BS-QE NPs),用于乳腺癌的联合治疗。与裸 BS NPs 相比,所得的 M@BS-QE NPs 具有更长的循环寿命以及更快和增强的肿瘤趋向性蓄积,这是由于其免疫逃避能力、CC 趋化因子配体 2(CCL2)介导的募集特性和主动靶向能力。在近红外(NIR)激光照射下 QE 的释放可以通过耗尽热休克蛋白 70(HSP70,一种恶性肿瘤特异性过表达的热抗性相关伴侣)选择性地使癌细胞对光热治疗(PTT)敏感,从而实现这种级联协同效应。同时,M@BS-QE NPs 下调了 p-Akt 和基质金属蛋白酶-9(MMP-9,它降解细胞外基质以促进肿瘤的侵袭和转移)信号轴,从而抑制乳腺癌肺转移。因此,我们的结果提供了一种仿生策略,利用乳腺癌的特征和巨噬细胞的生物学特性,有望增强治疗效果,并提高治疗的准确性,同时对乳腺癌的原发性和肺转移都具有最小的副作用。

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