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首页> 外文期刊>Nature Communications >Transformable hybrid semiconducting polymer nanozyme for second near-infrared photothermal ferrotherapy
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Transformable hybrid semiconducting polymer nanozyme for second near-infrared photothermal ferrotherapy

机译:用于第二近红外光热疗法的可转化的杂化半导体聚合物纳佐

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摘要

Despite its growing promise in cancer treatment, ferrotherapy has low therapeutic efficacy due to compromised Fenton catalytic efficiency in tumor milieu. We herein report a hybrid semiconducting nanozyme (HSN) with high photothermal conversion efficiency for photoacoustic (PA) imaging-guided second near-infrared photothermal ferrotherapy. HSN comprises an amphiphilic semiconducting polymer as photothermal converter, PA emitter and iron-chelating Fenton catalyst. Upon photoirradiation, HSN generates heat not only to induce cytotoxicity but also to enhance Fenton reaction. The increased ·OH generation promotes both ferroptosis and apoptosis, oxidizes HSN (42?nm) and transforms it into tiny segments (1.7?nm) with elevated intratumoral permeability. The non-invasive seamless synergism leads to amplified therapeutic effects including a deep ablation depth (9?mm), reduced expression of metastasis-related proteins and inhibition of metastasis from primary tumor to distant organs. Thereby, our study provides a generalized nanozyme strategy to compensate both ferrotherapy and phototherapeutics for complete tumor regression.
机译:尽管在癌症治疗中不断增长,但威尔托疗法由于肿瘤Milieu损害Fenton催化效率而具有低治疗效果。我们在此本文报告了具有高光热转换效率的杂化半导体纳米酶(HSN),用于光声(PA)显影引导的第二近红外光热疗法。 HSN包括两亲半导体聚合物,如光热转换器,PA发射器和铁螯合的Fenton催化剂。在光放射线上,HSN不仅产生热量,不仅会诱导细胞毒性,而且产生芬顿反应。增加·欧姆的产生促进了糖凋亡和细胞凋亡,氧化HSN(42μm)并将其转化为微小的段(1.7·纳米),具有升高的肿瘤渗透性。非侵入式无缝协同作用导致扩增的治疗效果,包括深度消融深度(9Ωmm),降低转移相关蛋白质的表达和从原发性肿瘤到远处器官的转移抑制转移。由此,我们的研究提供了广义纳米甲基型策略,以补偿含有完全肿瘤回归的铁疗和光照学。

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