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Oncocyte 膜伪装的多刺激响应纳米杂化体用于协同放大肿瘤氧化应激和光热增强癌症治疗。

Oncocyte Membrane-Camouflaged Multi-Stimuli-Responsive Nanohybrids for Synergistic Amplification of Tumor Oxidative Stresses and Photothermal Enhanced Cancer Therapy.

机构信息

Key Laboratory of Functional Nanomaterials and Technology in Universities of Shandong, College of Chemistry and Chemical Engineering, Linyi University, Linyi 276000, China.

Shandong Center for Disease Control and Prevention, Jinan 250000, China.

出版信息

ACS Appl Mater Interfaces. 2022 Sep 14;14(36):40633-40644. doi: 10.1021/acsami.2c11200. Epub 2022 Sep 2.

Abstract

The combination of various therapeutic modalities has received considerable attention for improving antitumor performance. Herein, an innovative nanohybrid, namely CaO@FePt-DOX@PDA@CM (CFDPM), was developed for synergistic chemotherapy/chemodynamic therapy/Ca overloading-mediated amplification of tumor oxidative stress and photothermal enhanced cancer therapy. Camouflage of the 4T1 cell membrane enabled CFDPM to escape the immune surveillance and accumulate in the tumor tissue. Ca, released from CaO, could lead to mitochondrial dysfunction and facilitate the production of reactive oxygen species to amplify intracellular oxidative stress. Meanwhile, the increase of HO concentration could enhance the efficiency of the chemodynamic therapy (CDT). Moreover, the hypoxic condition could be alleviated remarkably, which is attributed to the sufficient O supply by CaO, resulting in the suppression of drug resistance and promotion of the chemotherapeutic effect. The nanohybrids involving Ca overloading/CDT/chemotherapy could synergistically amplify the tumor oxidative stresses and remarkably aggravate the death of cancer cells. Significantly, the excellent photothermal conversion performance of CFDPM could further promote the tumoricidal effect. The and studies revealed that CFDPM could effectively advance the therapeutic efficiency via the cooperation of various therapeutic modalities to optimize their individual virtue, which would open a valuable avenue for effective cancer treatment.

摘要

多种治疗模式的联合已受到广泛关注,以提高抗肿瘤性能。在此,开发了一种创新的纳米杂化体 CaO@FePt-DOX@PDA@CM(CFDPM),用于协同化学疗法/化学动力学疗法/钙超载介导的肿瘤氧化应激放大和光热增强癌症治疗。4T1 细胞膜的伪装使 CFDPM 能够逃避免疫监视并在肿瘤组织中积累。CaO 释放的 Ca 可导致线粒体功能障碍,并促进活性氧的产生,以放大细胞内氧化应激。同时,HO 浓度的增加可以提高化学动力学疗法(CDT)的效率。此外,缺氧状态可以得到明显缓解,这归因于 CaO 提供的充足 O2 供应,从而抑制了耐药性并促进了化疗效果。涉及钙超载/CDT/化疗的纳米杂化体可以协同放大肿瘤氧化应激,并显著加剧癌细胞死亡。重要的是,CFDPM 的优异光热转换性能可以进一步促进杀肿瘤效果。体内和体外研究表明,CFDPM 通过多种治疗模式的协同作用可以有效地提高治疗效率,优化其各自的优势,为有效的癌症治疗开辟了有价值的途径。

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