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Pompon-like RuNPs-Based Theranostic Nanocarrier System with Stable Photoacoustic Imaging Characteristic for Accurate Tumor Detection and Efficient Phototherapy Guidance

机译:基于POMPON的RUNPS的Theranostic纳米载体系统,具有稳定的光声成像特性,用于精确肿瘤检测和高效的光疗指导

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摘要

Even though numerous therapeutic methods exist for cancer treatment, many fail to achieve ideal outcomes or have severe side effects. Here, we describe a theranostic nanocarrier system with improved tumor vasculature detection and tumor margin quantification that increases the accuracy and guidance efficiency of phototherapy. Novel pompon-like RuNPs with superb photothermal properties and high encapsulation efficiency were first synthesized via the polyol reducing method. Based on these RuNPs, we then developed a multifunctional theranostic system, pRu-pNIPAM(@)RBT, composed of poly(N-isopropylacrylamide) as the thermal-response switch and of [Ru(bpy)(2)(tip)](2+) as the photosensitizer of PDT and the contrast agent of biomedical imaging. We demonstrate that the pRu-pNIPAM(@)RBT can generate intracellular hyperthermia arid reactive oxygen species (ROS) for simultaneous photothermal therapy (PTT) and photodynamic therapy (PDT) by laser activation. In contrast to other studies, our work highlights the integration of quantitative analysis of infrared thermal imaging and PA imaging data, which can distinguish between tumor and healthy tissues and guide the destructive but precise phototherapy and decrease nonspecific tissue injury. Considering the excellent in vivo antitumor phototherapeutic effects, this strategy may help preclinical. researchers gain insight into theoretical as well as practical aspects of precision cancer therapy.
机译:尽管癌症治疗存在许多治疗方法,但许多人未能达到理想的结果或具有严重的副作用。在这里,我们描述了一种具有改善的肿瘤脉管系统检测和肿瘤裕度定量的治疗纳米载体系统,其提高了光疗法的准确性和引导效率。首先通过多元醇还原方法合成具有精湛的光热性质和高封装效率的新型覆盆子脉冲。基于这些RUNP,我们开发了一种多功能的治疗系统,PRU-PNIPAM(@)RBT,由聚(N-异丙基丙烯酰胺)作为热响应开关和[RU(BPY)(2)(尖端)]( 2+)作为PDT的光敏剂和生物医学成像的造影剂。我们证明PRU-PNIPAM(@)RBT可以通过激光激活产生同时光热疗(PTT)和光动力治疗(PTT)和光动力治疗(PTT)的细胞内热热性干旱反应性氧物质(ROS)。与其他研究相比,我们的工作突出了红外热成像和PA成像数据的定量分析的整合,可以区分肿瘤和健康组织并引导破坏性但精确的光疗和减少非特异性组织损伤。考虑到体内抗肿瘤光照效果优异,该策略可能有助于临床前。研究人员深入了解理论和实际方面的精密癌症治疗。

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