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Multifunctional FeS2 theranostic nanoparticles for photothermal-enhanced chemodynamic/photodynamic cancer therapy and photoacoustic imaging

机译:用于光热增强化学动力学/光动力癌治疗和光声成像的多功能FES2治疗纳米粒子

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Chemodynamic therapy (CDT) and photodynamic therapy (PDT) mediated by reactive oxygen species (ROS) hold great potential for cancer therapy. However, they are still limited by rigorous reaction conditions of efficacious Fenton reaction, reliance on oxygen, and inherent defects of traditional common photosensitizers (PSs). Herein, we reported an L-Buthionine-sulfoximine (BSO) modified FeS2 nanoparticles (BSO-FeS2 NPs) with enhanced ROS generation under single wavelength (808 nm) laser irradiation. First, FeS2 NPs showed high photothermal conversion efficiency (49.5%) and enhanced center dot O-2(-) and center dot OH generation capability via direct electron transfer presenting photothermal-improved Fenton reaction and photocatalytic ability. With the BSO modification, BSO-FeS2 NPs could inhibit the synthesis of glutathione (GSH) and accelerate the accumulation of ROS, which further enhanced the PDT/CDT treatment efficacy and resulted in high in vivo tumor inhibition rate (95%). Second, BSO-FeS2 NPs could activate the repolarization of macrophages from M2 to M1 for potential tumor immunotherapy. Last, BSO-FeS2 NPs showed good performance on photoacoustic imaging (PAI). All these results establish the capability of BSO-FeS2 NPs as nano-theranostic agents in PAI guided PTT/CDT/PDT combination therapy for cancer treatment.
机译:由反应性氧物种(ROS)介导的化学热疗法(CDT)和光动力治疗(PDT)对癌症治疗具有巨大潜力。然而,它们仍然受到有效的芬顿反应的严格反应条件的限制,依赖氧气以及传统常见光敏性的固有缺陷(PSS)。在此,我们报道了一种L-苯胺 - 磺酰胺(BSO)改性的FES2纳米颗粒(BSO-FES2NP),在单波长(808nm)激光照射下具有增强的ROS产生。首先,FES2 NPS显示出高光热转换效率(49.5%)和增强的中心点O-2( - )和中心点OH产生能力,通过直接电子转移呈现光热改善的芬顿反应和光催化能力。通过BSO改性,BSO-FES2 NPS可以抑制谷胱甘肽(GSH)的合成,并加速ROS的积累,进一步增强了PDT / CDT治疗疗效,并导致高肿瘤抑制率(95%)。其次,BSO-FES2 NPS可以激活M2至M1的巨噬细胞的复极化以进行潜在的肿瘤免疫疗法。最后,BSO-FES2 NPS在光声成像(PAI)上表现出良好的性能。所有这些结果建立了BSO-FES2NPS作为癌症治疗的PAI引导PTT / CDT / PDT组合疗法中纳米治疗剂的能力。

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