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Biodegradable Near-Infrared Plasmonic Nanoclusters for Biomedical Applications

机译:用于生物医学应用的可生物降解的近红外等离子体纳米团簇

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Nanoparticles such as gold and silver with plasmonic resonances in the near-infrared (NIR) optical region, where soft tissue is the most transparent, are of great interest in biomedical applications. A major roadblock in translation of inorganic nanoparticles to clinical practice for systemic targeting of disease is their non-biodegradable nature. In addition, gold nanoparticles that absorb in the NIR are typically greater than 50 nm, which is above the threshold size of 5.5 nm required for effective excretion from the body. Here we describe a new class of biodegradable gold nanoparticles with plasmon resonances in the NIR region. The synthesis is based on controlled assembly of very small (less than 5 nm) primary gold particles into nanoclusters with sub-100 nm overall diameter and an intense NIR absorbance. The assembly is mediated by biodegradable polymers, polyethylene glycol (PEG) and polylactic acid (PLA) copolymer, and small capping ligands on the constituent nanoparticles. Nanoclusters deaggregate into sub-5nm primary gold particles upon biodegradation of the polymer binder in live cells over one week, as shown by dark-field reflectance and hyperspectral imaging.
机译:在软组织最透明的近红外(NIR)光学区域中具有等离子共振的金和银等纳米颗粒在生物医学应用中引起了极大兴趣。在将无机纳米颗粒转化为用于疾病的系统靶向的临床实践中的主要障碍是其不可生物降解的性质。此外,在NIR中吸收的金纳米颗粒通常大于50 nm,大于从体内有效排泄所需的5.5 nm阈值大小。在这里,我们描述了一种新型的可生物降解的金纳米粒子,其在近红外区域具有等离子体共振。合成是基于将很小的(小于5 nm)原始金颗粒控制组装成纳米团簇,其总直径小于100 nm,并且具有很强的NIR吸收能力。该组装由可生物降解的聚合物,聚乙二醇(PEG)和聚乳酸(PLA)共聚物以及组成的纳米颗粒上的小盖帽配体介导。如暗场反射率和高光谱成像所示,在活细胞中聚合物粘合剂经过一周的生物降解后,纳米团簇会分解为5nm以下的初级金颗粒。

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