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Quantitative estimation of gold nanoshell concentrations in whole blood using dynamic light scattering

机译:使用动态光散射定量估算全血中金纳米壳的浓度

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We demonstrate a new nondestructive optical assay to estimate submicron solid particle concentrations' in whole blood.We use dynamic light scattering (DLS),commonly used to estimate nanoparticle characteristics such as size,surface charge,and degree of aggregation,to quantitatively estimate concentration and thereby estimate the actual delivered dose of intravenously injected nanoparticles and the longitudinal clearance rate.Triton X-100 is added to blood samples containing gold (Au) nanoshells to act as a quantitative scattering standard and blood lysing agent.The concentration of nanoshells was determined to be linearly proportional (R~2 = 0.998) to the relative light scattering attributed to nanoshells via DLS as compared with the Triton X-100 micelles in calibration samples.This relationship was found to remain valid (R~2 = 0.9) when estimating the concentration of circulating nanoshells in 15-mu L blood samples taken from a murine tumor model as confirmed by neutron activation analysis.Au nanoshells are similar in size and shape to other types of nanoparticles delivered intravascularly in biomedical applications,and given the pervasiveness of DLS in nanoscale particle manufacturing,this simple techmque should have wide applicability toward estimating the circulation time of other solid nanoparticles.
机译:我们展示了一种新的非破坏性光学分析方法来估算全血中亚微米固体颗粒的浓度。我们使用动态光散射(DLS),通常用于估算纳米颗粒的特征,例如大小,表面电荷和聚集度,以定量估算浓度和从而估算静脉内注射纳米颗粒的实际递送剂量和纵向清除率。将Triton X-100添加到含有金(Au)纳米壳的血液样品中,以用作定量散射标准品和血液溶解剂。与校准样品中的Triton X-100胶束相比,通过DLS归因于纳米壳的相对光散射呈线性比例(R〜2 = 0.998)。发现这种关系在估计样品的线性关系时仍然有效(R〜2 = 0.9)。中子活化分析证实,从鼠类肿瘤模型中提取的15μL血液样本中循环纳米壳的浓度Au纳米壳的大小和形状与生物医学应用中通过血管内输送的其他类型的纳米颗粒相似,并且鉴于DLS在纳米级颗粒制造中的普遍性,这种简单的技术应在估计其他固体纳米颗粒的循环时间方面具有广泛的适用性。

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