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Direct investigation of intracellular presence of gold nanoparticles via photothermal heterodyne imaging

机译:通过光热外差成像直接研究金纳米颗粒的细胞内存在

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Nanotechnology as well as advanced microscopy can play a fundamental role in understanding biological mechanisms. Here we present a study that combines a new type of nanomaterial with a new type of microscopy and highlights the potential for gathering novel information about cell membrane penetration and cytosol local viscosity. On the material side, we used gold nanoparticles that have an ordered stripe-like arrangement of domains. These "striped" nanoparticles are able to penetrate cell membranes directly without porating them. On the microscopy side, we used photothermal heterodyne imaging which allows detection of individual nanometer-sized gold particles in complex media. We showed that we can probe cytosolic presence as well as dynamics of these nanoparticles even at very low concentrations. We used the fluctuations of the photothermal signal from particles diffusing in the detection volume to estimate local cytosol viscosity which is about 20 times larger than that of water. This work opens new perspectives for mapping local diffusion properties of nano-objects inside living cells.
机译:纳米技术以及先进的显微镜技术可以在理解生物学机制中发挥重要作用。在这里,我们提出了一项将新型纳米材料与新型显微镜相结合的研究,并强调了收集有关细胞膜渗透性和胞浆局部粘度的新信息的潜力。在材料方面,我们使用的金纳米粒子具有规则的条纹状畴排列。这些“条纹”纳米粒子能够直接穿透细胞膜而不会刺破它们。在显微镜方面,我们使用了光热外差成像技术,该技术可以检测复杂介质中单个纳米尺寸的金颗粒。我们表明,即使在非常低的浓度下,我们也可以探测这些纳米颗粒的胞质存在以及动力学。我们使用了来自检测体积中扩散的粒子的光热信号的波动来估计局部细胞溶胶粘度,该粘度大约是水的20倍。这项工作为映射活细胞内纳米物体的局部扩散特性开辟了新的前景。

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