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Ultrasmall WO3-x@gamma-poly-L-glutamic Acid Nanoparticles as a Photoacoustic Imaging and Effective Photothermal-Enhanced Chemodynamic Therapy Agent for Cancer

机译:UltraMALL WO3-Xγ-poly-l-谷氨酸纳米粒子作为光声成像和有效的癌症的有效的光热增强的化学动力学治疗剂

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摘要

Synergistic treatment strategies for cancer have attracted increasing attention owing to their enhanced therapeutic effects compared with monotherapy. Chemodynamic therapy (CDT) is an emerging and thriving in situ treatment for cancer owing to its high regioselectivity and activation only by endogenous substances. However, the therapeutic effects of CDT are hindered by low reaction speeds. Here, ultrasmall WO3-x@gamma-poly-L-glutamic acid (WO3-x@gamma-PGA) nanoparticles (NPs) with good photo acoustic and photothermal properties were prepared, and their chemodynamic performance based on a Fenton-like reaction was explored due to its good catalytic effect. The synergistic treatment effect was also investigated by photothermal-enhanced CDT based on single WO3-x@gamma-PGA NPs using a penetrating near-infrared-II laser both in vitro and in vivo. This work provides an effective treatment for cancer and further develops the CDT.
机译:由于与单一疗法相比,癌症的协同治疗策略引起了它们提高的治疗效果。 化学动力学治疗(CDT)是由于其高级地区选择性和活化的癌症的出现和蓬勃发展,并且仅通过内源性物质的激活。 然而,CDT的治疗效果通过低反应速度阻碍。 这里,制备具有良好照片声学和光热性质的UltrasmAll WO3-Xγ-Poly-L-谷氨酸(WO3-X-γ-PGA)纳米颗粒(NPS),并基于芬顿的反应的化学动力学性能是 由于其良好的催化作用而探索。 通过在体外和体内的穿透近红外-II激光,通过基于单个WO3-X @γ-PGA NPS的光热增强的CDT来研究协同治疗效果。 这项工作为癌症提供了有效的治疗方法,并进一步发展了CDT。

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