Prussian Blue/Calcium Peroxide Nanocomposites-Mediated Tumor Cell Iron Mineralization for Treatment of Experimental Lung Adenocarcinoma

IF 15.8 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY ACS Nano Pub Date : 2021-12-01 DOI:10.1021/acsnano.1c07308
Kaixin Zhang, Jicheng Wu, Xiaoxiong Zhao, Jiale Qin, Yi Xue, Weizeng Zheng, Lixiu Wang, Haoran Wang, Hong Shen, Tianye Niu, Yan Luo, Ruikang Tang, Ben Wang*
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引用次数: 19

Abstract

Current lung cancer diagnosis methods encounter delayed visual confirmation of tumor foci and low-resolution metrics in imaging findings, which delays the early treatment of tumors. Here, we developed a potent lung cancer imaging and treatment strategy centered around a nanotransformational concept of tumor iron mineralization in situ, which employs Prussian blue/calcium peroxide nanocomposites as a precursor. The resultant iron mineralization in tumor cells greatly facilitates the early and differential diagnosis of lung carcinoma from benign nodules via medical imaging, meanwhile introducing oxidative stress to activate the cellular apoptosis and ferroptosis pathways, resulting in inhibition of the malignant behavior of tumor cells. Tumor-microenvironment-triggered iron mineralization enables integration of the detection and prevention of tumor metastasis at its early stages with no assistance of toxic drugs, which offers a potential solution for the precise management of lung cancer with ideal outcomes.

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普鲁士蓝/过氧化钙纳米复合材料介导的肿瘤细胞铁矿化治疗实验性肺腺癌
目前的肺癌诊断方法存在肿瘤病灶的视觉确认延迟和影像学表现的低分辨率指标,从而延迟了肿瘤的早期治疗。在这里,我们开发了一种有效的肺癌成像和治疗策略,以肿瘤原位铁矿化的纳米转化概念为中心,采用普鲁士蓝/过氧化钙纳米复合材料作为前体。肿瘤细胞中由此产生的铁矿化极大地促进了医学影像学对肺癌与良性结节的早期鉴别诊断,同时引入氧化应激激活细胞凋亡和铁凋亡通路,从而抑制肿瘤细胞的恶性行为。肿瘤微环境触发的铁矿化可以在没有毒性药物的情况下,在肿瘤转移的早期阶段整合检测和预防,这为肺癌的精确治疗提供了一个潜在的解决方案,并具有理想的结果。
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来源期刊
ACS Nano
ACS Nano 工程技术-材料科学:综合
CiteScore
26.00
自引率
4.10%
发文量
1627
审稿时长
1.7 months
期刊介绍: ACS Nano, published monthly, serves as an international forum for comprehensive articles on nanoscience and nanotechnology research at the intersections of chemistry, biology, materials science, physics, and engineering. The journal fosters communication among scientists in these communities, facilitating collaboration, new research opportunities, and advancements through discoveries. ACS Nano covers synthesis, assembly, characterization, theory, and simulation of nanostructures, nanobiotechnology, nanofabrication, methods and tools for nanoscience and nanotechnology, and self- and directed-assembly. Alongside original research articles, it offers thorough reviews, perspectives on cutting-edge research, and discussions envisioning the future of nanoscience and nanotechnology.
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