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首页> 外文期刊>Nanoscale >Polypyrrole-based nanotheranostic agent for MRI guided photothermal-chemodynamic synergistic cancer therapy
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Polypyrrole-based nanotheranostic agent for MRI guided photothermal-chemodynamic synergistic cancer therapy

机译:Polypyrrole-based nanotheranostic代理进行核磁共振成像引导photothermal-chemodynamic协同癌症治疗

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摘要

Polypyrrole (PPy) nanoparticles have been widely studied in tumor photothermal therapy (PTT) for their significant photostability, good biocompatibility, and excellent photothermal performance. Herein, we report bovine serum albumin (BSA) stabilized PPy that were mineralized by MnO2 nanozyme on the surface (PPy@BSA-MnO2) to achieve synergistic photothermal and chemodynamic therapy (CDT) for breast cancer. In this multifunctional nanoplatform, the surface-loaded MnO2 undergoes a redox reaction with glutathione (GSH) to generate glutathione disulfide (GSSG) and Mn2+. Then, Mn2+ can convert H2O2 into a highly cytotoxic OH to achieve chemodynamic therapy (CDT) and possess good magnetic resonance (MR) T-1-weighted imaging capabilities to realize contrast imaging of the 4T1 tumor-bearing mouse models. In addition, PPy nanoparticles can efficiently convert near-infrared light energy into heat and achieve PTT. Most importantly, PPy@BSA-MnO2 nanoprobes have excellent in vitro 4T1 cell-killing effect and in vivo tumor-suppressive properties. The acute toxicity assessment results indicate that PPy@BSA-MnO2 nanoprobes have good biological safety. Therefore, the as-prepared multifunctional PPy@BSA-MnO2 nanoprobes possess excellent performance to promote MRI-guided PTT/CDT synergistic therapy for breast cancer treatment and have extensive clinical transformation and application prospects.
机译:聚吡咯纳米粒子广泛(PPy)研究肿瘤光照疗法(PTT)他们重要的耐光性,很好生物相容性,良好的光热光谱分析的性能。白蛋白(BSA)稳定的PPy通过汇总nanozyme表面矿化(PPy@BSA-MnO2)来实现协同光照和chemodynamic疗法(CDT)乳腺癌。nanoplatform, surface-loaded汇总经历氧化还原反应与谷胱甘肽(GSH)来生成二硫化谷胱甘肽(GSSG)和Mn2 +。可以将过氧化氢转化为高细胞毒性哦实现chemodynamic疗法(CDT)和拥有良好的磁共振(MR) T-1-weighted成像功能实现的对比成像4 t1肿瘤小鼠模型。纳米颗粒可以有效地转换近红外光能量热量和实现PTT。有良好的体外4 t1为辅,效果吗和体内肿瘤抑制特性。结果表明,急性毒性评估PPy@BSA-MnO2 nanoprobes有良好的生物安全。多功能PPy@BSA-MnO2 nanoprobes拥有性能优良,促进mri引导下PTT / CDT协同治疗乳腺癌和广泛的临床治疗转换和应用前景。

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