细胞内磁性高热使索拉非尼通过放大的铁突变作用对原位肝细胞癌敏感

IF 15.8 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY ACS Nano Pub Date : 2024-10-21 DOI:10.1021/acsnano.4c09500
Qianqian Tang, Yanyun Wang, Bin Yan, Jia Zhang, Tao Wang, Yi Fang, Zirui Ye, Nan Zhang, Nana Zhang, Zheng Wu, Haiming Fan, Yi Lyu, Xiaoli Liu, Rongqian Wu
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引用次数: 0

摘要

索拉非尼(SRF)是公认的治疗肝细胞癌(HCC)的主要药物,但许多 HCC 患者对 SRF 产生耐药性,导致了不利的结果。提高SRF在HCC中的疗效仍是一项重大挑战。SRF 通过抑制谷胱甘肽过氧化物酶 4 (GPX4),诱导癌细胞中的铁变态反应(一种细胞死亡形式)。这一过程的有效性受到细胞铁和活性氧(ROS)含量低的限制。利用磁性氧化铁纳米材料(MIONs)介导的细胞内磁性热疗(MH)是规避这一限制的一种很有前景的方法。当磁性氧化铁纳米材料受到交变磁场(AMF)的作用时,它们会升温,从而增强芬顿反应,进而显著增加细胞内 ROS 的产生。在本研究中,我们探讨了高性能铁磁性涡域氧化铁纳米粒子(FVIO)促进 MH 的能力,以提高 SRF 治疗 HCC 的效果。FVIO促进的铁吸收增加显著提高了HCC细胞对SRF诱导的铁变态反应的敏感性。此外,FVIO对AMF产生的纳米热进一步提高了ROS水平,刺激了脂质过氧化氢(LPO)的产生和GPX4的失活,从而加剧了铁猝死。体外和体内动物研究都证明,将 FVIO 介导的 MH 与 SRF 结合使用,可显著降低细胞活力并抑制肿瘤生长,主要是通过增强铁变态反应,而且副作用极小。这种联合疗法的效果受到铁氧化抑制剂铁前列素-1(Fer-1)和铁螯合剂去铁胺(DFO)的影响。FVIO介导的MH和SRF联合疗法通过促进加速铁蜕变为HCC治疗提供了一种策略,为开发基于铁蜕变的抗癌疗法提供了一个不同的视角。
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Intracellular Magnetic Hyperthermia Sensitizes Sorafenib to Orthotopic Hepatocellular Carcinoma Via Amplified Ferroptosis
Sorafenib (SRF) is recognized as the primary treatment for hepatocellular carcinoma (HCC), yet the emergence of SRF resistance in many HCC patients results in unfavorable outcomes. Enhancing the efficacy of SRF in HCC remains a significant challenge. SRF works in inducing ferroptosis, a form of cell death, in cancer cells through the inhibition of glutathione peroxidase 4 (GPX4). The effectiveness of this process is limited by the low levels of cellular iron and reactive oxygen species (ROS). A promising approach to circumvent this limitation is the use of intracellular magnetic hyperthermia (MH) mediated by magnetic iron oxide nanomaterials (MIONs). When MIONs are subjected to an alternating magnetic field (AMF), they heat up, enhancing the Fenton reaction, which in turn significantly increases the production of ROS within cells. In this study, we explore the capability of MH facilitated by high-performance ferrimagnetic vortex-domain iron oxide nanoring (FVIO) to enhance the effectiveness of SRF treatment in HCC. The increased iron uptake facilitated by FVIO significantly enhances the sensitivity of HCC cells to SRF-induced ferroptosis. Moreover, the nanoheat generated by FVIO in response to an AMF further elevates ROS levels and stimulates lipid hydroperoxide (LPO) production and GPX4 inactivation, thereby intensifying ferroptosis. Both in vitro and in vivo animal studies demonstrate that combining FVIO-mediated MH with SRF significantly reduces cell viability and inhibits tumor growth, primarily through enhanced ferroptosis, with minimal side effects. The effectiveness of this combination therapy is affected by the ferroptosis inhibitor ferrostatin-1 (Fer-1) and the iron chelator deferoxamine (DFO). The combination treatment of FVIO-mediated MH and SRF offers a strategy for HCC treatment by promoting accelerated ferroptosis, presenting a different perspective for the development of ferroptosis-based anticancer therapies.
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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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