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首页> 外文期刊>ACS nano >Metal Ion/Tannic Acid Assembly as a Versatile Photothermal Platform in Engineering Multimodal Nanotheranostics for Advanced Applications
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Metal Ion/Tannic Acid Assembly as a Versatile Photothermal Platform in Engineering Multimodal Nanotheranostics for Advanced Applications

机译:金属离子/单宁酸组装作为工程多模式纳米液体的通用光热平台,用于先进应用

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摘要

This study reports a family of photothermal materials, metal ion/tannic acid assemblies (MITAs). MITAs from Fe-III,V-III, and Ru-III afford excellent photothermal efficiency (eta approximate to 40%). Sharply differing from the currently existing photothermal agents, MITAs are highlighted by merits including green synthesis, facile incorporation of diagnostic metal ions, and particularly topology-independent adhesion. Owing to the adhesion nature of MITAs, various kinds of MITA-based nanoengineerings are readily available via the self-adhesion of MITAs onto diverse templates, enabling MITAs well suited as a photothermal platform for versatile combination with other therapy approaches and imaging techniques. As a proof of concept, polymeric/inorganic nanoparticle/nanovesicle-supported Fe-III-tannic acid (Fe(III)TA) is fabricated. The photothermal effect is shown to be unaffected by the template origin and type and Fe(III)TA thickness on the templates. We validate the potency of nanovesicle-supported Fe(III)TA (PNV@Fe(III)TA) for tumor-specific photoactivated utilizations, including NIR photothermal therapy with complete tumor elimination, photothermal imaging (PTI), and photoacoustic imaging (PAI) in addition to T-1-MRI imaging. PNV@Fe(III)TA can be simultaneously equipped with functionalities, including T-2-MRI imaging by additionally doping Mn-II and NIR fluorescence imaging by encapsulating a hydrophilic NIR fluoroprobe. MITA demonstrates unparalleled superiority as a photothermal platform in engineering multimodal theranostics for advanced applications.
机译:本研究报告了一种光热材料,金属离子/单宁酸组件(MITAS)。来自FE-III,V-III和RU-III的MITAS提供优异的光热效率(ETA近似为40%)。与目前现有的光热代理人急剧不同,MITAS通过包括绿色合成的优点突出显示,容易掺入诊断金属离子,特别是拓扑无关的粘合力。由于乳突中的粘附性,各种基于MITA的纳米内部通过MITAS的自粘在多种模板上,使得能量良好地具有与其他治疗方法和成像技术的通用组合的光热平台。作为概念的证据,制备聚合物/无机纳米颗粒/纳米粒子烯类药物支持的Fe-III-鞣酸(Fe(III)TA)。光热效果显示在模板上的模板来源和型和Fe(III)TA厚度不受影响。我们验证了纳米粒子支持的Fe(III)TA的效力(PNV @ Fe(III)TA)用于肿瘤特异性的光活化利用,包括具有完全肿瘤消除,光热成像(PTI)和光声成像(PAI)的NIR光热疗法除了T-1-MRI成像。 PNV @ Fe(III)TA可以同时配备有功能性,包括通过封装亲水性NIR荧光瓣通过另外掺杂MN-II和NIR荧光成像来进行T-2-MRI成像。 Mita展示了作为高级应用的工程多模式Theranostics的光热平台无与伦比的优越性。

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