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Controlled assembly of biodegradable plasmonic nanoclusters for near-infrared imaging and therapeutic applications

机译:用于近红外成像和治疗应用的可生物降解的等离子纳米团簇的受控组装

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摘要

Metal nanoparticles with surface plasmon resonance (SPR) in the near-infrared region (NIR) are of great interest for imaging and therapy. Presently, gold nanoparticles with NIR absorbance are typically larger than 50 nm, above the threshold size of ~5 nm required for efficient renal clearance. As these nanoparticles are not biodegradable, concerns about long-term toxicity have restricted their translation into the clinic. Here, we address this problem by developing a flexible platform for the kinetically controlled assembly of sub-5 nm ligand-coated gold particles to produce metal/polymer biodegradable nanoclusters smaller than 100 nm with strong NIR absorbance for multimodal application. A key novel feature of the proposed synthesis is the use of weakly adsorbing biodegradable polymers that allows tight control of nanocluster size and, in addition, results in nanoclusters with unprecedented metal loadings and thus optical functionality. Over time, the biodegradable polymer stabilizer degrades under physiological conditions that leads to disassembly of the nanoclusters into sub-5 nm primary gold particles which are favorable for efficient body clearance. This synthesis of polymer/inorganic nanoclusters combines the imaging contrast and therapeutic capabilities afforded by the NIR-active nanoparticle assembly with the biodegradability of a polymer stabilizer.
机译:在近红外区域(NIR)具有表面等离子体激元共振(SPR)的金属纳米颗粒对于成像和治疗非常感兴趣。目前,具有NIR吸收能力的金纳米颗粒通常大于50 nm,大于有效清除肾脏所需的阈值大小〜5 nm。由于这些纳米粒子不可生物降解,因此对长期毒性的担忧限制了它们在临床上的应用。在这里,我们通过开发一个灵活的平台来解决这个问题,该平台可动态控制组装亚5 nm配体的金颗粒,以生产小于100 nm的金属/聚合物可生物降解的纳米团簇,具有强大的近红外吸收率,可用于多峰应用。拟议的合成方法的一个关键新颖特征是使用了弱吸附的生物可降解聚合物,该聚合物可严格控制纳米团簇的大小,此外,还可以使纳米团簇具有前所未有的金属负载量和光学功能。随着时间的流逝,可生物降解的聚合物稳定剂在生理条件下降解,这导致纳米团簇分解成5 nm以下的初级金颗粒,这有利于有效清除体内。聚合物/无机纳米簇的这种合成将近红外活性纳米颗粒组件提供的成像对比度和治疗能力与聚合物稳定剂的生物降解能力结合在一起。

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