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首页> 外文期刊>Advanced Science >A Tailored Multifunctional Anticancer Nanodelivery System for Ruthenium‐Based Photosensitizers: Tumor Microenvironment Adaption and Remodeling
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A Tailored Multifunctional Anticancer Nanodelivery System for Ruthenium‐Based Photosensitizers: Tumor Microenvironment Adaption and Remodeling

机译:基于钌的光敏剂定制的多功能抗癌纳米交货系统:肿瘤微环境适应和重塑

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Ruthenium complexes are promising photosensitizers (PSs), but their clinical applications have many limitations. Here, a multifunctional nano‐platform PDA‐Pt‐CD@RuFc formed by platinum‐decorated and cyclodextrin (CD)‐modified polydopamine (PDA) nanoparticles (NPs) loaded with a ferrocene‐appended ruthenium complex (RuFc) is reported. The NPs can successfully deliver RuFc to the tumor sites. The release of RuFc from the NPs can be triggered by low pH, photothermal heating, and H2O2. The combined photodynamic and photothermal therapy (PDT‐PTT) mediated by PDA‐Pt‐CD@RuFc NPs can overcome the hypoxic environment of tumors from several aspects. First, the platinum NPs can catalyze H2O2 to produce O2. Second, vasodilation caused by photothermal heating can sustain the oxygen supplement. Third, PDT exerted by RuFc can also occur through the non‐oxygen‐dependent Fenton reaction. Due to the presence of PDA, platinum NPs, and RuFc, the nanosystem can be used in multimodal imaging including photothermal, photoacoustic, and computed tomography imaging. The NPs can be excited by the near‐infrared two‐photon light source. Moreover, the combined treatment can improve the tumor microenvironments to obtain an optimized combined therapeutic effect. In summary, this study presents a tumor‐microenvironment‐adaptive strategy to optimize the potential of ruthenium complexes as PSs from multiple aspects.
机译:钌配合物是有前途的光敏剂(PSS),但它们的临床应用具有许多限制。这里,通过铂装饰和环糊精(CD)制态(CD)纳米胺(PDA)纳米胺(NPS)形成的多官能纳米平台PDA-PT-CD @ RuFc被报道装载与配合茂茂钌络合物(RUFC)的载体的钌络合物(RUFC)形成。 NPS可以成功向肿瘤部位递送RUFC。可以通过低pH,光热加热和H 2 O 2触发来自NPS的RuFc的释放。由PDA-PT-CD / RuFC NPS介导的组合光动力和光热疗(PDT-PTT)可以从几个方面克服肿瘤的缺氧环境。首先,铂NP可以催化H 2 O 2以产生O 2。其次,由光热加热引起的血管舒张可以维持氧气补充剂。第三,Rufc施加的PDT也可以通过非氧依赖性的芬顿反应发生。由于PDA,铂NPS和RuFC的存在,纳米系统可用于多模式成像,包括光热,光声和计算机断层摄影成像。 NPS可以由近红外二光子光源激发。此外,组合治疗可以改善肿瘤微环境,以获得优化的组合治疗效果。总之,本研究提出了一种肿瘤微环境 - 适应性策略,以优化钌配合物的潜在来自多个方面的PSS。

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