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Laser irradiation affects the biological identity and cellular uptake of plasmonic nanoparticles

机译:激光辐照影响的生物身份和细胞电浆纳米颗粒的吸收

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The biological identity of nanoparticles (NPs) is defined by a protein layer formed on their surface, called protein corona (PC), once they meet the biological milieu. Any change in the PC composition may influence the biological fate of NPs. The PC composition is strongly dependent on several parameters including the physicochemical properties of NPs, and biological and environmental factors. As one of the main features of plasmonic NPs is their capacity to induce local heating by laser irradiation, we hypothesized that laser irradiation may change the biological identity of NPs and therefore alter their biological fate. To test this hypothesis, here we investigated the effects of either simultaneous or sequential laser irradiation on the conformations of a few proteins selected from two main categories of plasma proteins (i.e. human serum albumin and human fibrinogen) on the surfaces of gold nanorods (AuNRs). The outcomes revealed a significant role of laser irradiation on conformational changes of fibrinogen compared to albumin. Moreover, the effects of plasmonic heating - at various times - on the achieved corona composition from interactions of AuNRs and human plasma with various concentrations were monitored. Consequently, the cellular uptake of the corona coated AuNRs was measured in two cell types: malignant (MCF-7) and normal (MCF-10A) breast cell lines. The results demonstrated a substantial reduction in the cellular uptake of AuNRs in response to an increase in the laser irradiation time, especially in MCF-10A. Our results may pave the way for a mechanistic understanding of the biological identity of plasmonic NPs which in turn can help their safe and efficient clinical translations.
机译:纳米颗粒的生物身份(NPs)定义为一种层上形成的蛋白质表面,称为蛋白质电晕(PC),一旦他们满足生物环境。成分可能会影响生物的命运NPs。几个参数包括物理化学NPs的性质和生物和环境因素。电浆NPs的特点是他们的能力由激光辐照诱导局部加热,我们假设激光照射可能会改变NPs的生物身份,因此改变生物的命运。假设,我们调查的影响同时或连续激光辐照的构象蛋白质从两个主要类别的选择人类血清白蛋白和血浆蛋白(即人纤维蛋白原)表面的黄金纳米棒(AuNRs)。激光辐照的重要作用构象的变化相比,纤维蛋白原白蛋白。加热-在不同时期的实现电晕AuNRs和作用的成分与各种人血浆浓度监控。日冕涂布AuNRs测量在两个细胞类型:恶性(MCF-7)和正常(MCF-10A)乳腺癌细胞系。大量减少的细胞吸收AuNRs为了增加激光辐照时间,尤其是在MCF-10A。结果可能为一种机械的铺平道路了解生物的身份电浆NPs反过来可以帮助他们安全和有效的临床翻译。

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