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Rotational and Translational Diffusion of Peptide-coated CdSe/CdS/ZnS Nanorods Studied by Fluorescence Correlation Spectroscopy

机译:荧光光谱法研究多肽包覆的CdSe / CdS / ZnS纳米棒的旋转和平移扩散

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摘要

CdSe/CdS/ZnS nanorods (NRs) of three aspect ratios were coated with phytochelatin-related peptides and studied using fluorescence correlation spectroscopy (FCS). Theoretical predictions of the NRs’ rotational diffusion contribution to the correlation curves were experimentally confirmed. We monitored rotational and translational diffusion of NRs and extracted hydrodynamic radii from the extracted diffusion constants. Translational and rotational diffusion constants (Dtrans and Drot) for NRs were in good agreement with Tirado and Garcia de la Torre’s as well as with Broersma’s theories, when accounting for the ligand dimensions. NRs fall in the size range where rotational diffusion can be monitored with higher sensitivity than translational diffusion due to a steeper length dependence Drot ~ L−3 versus Dtrans ~ L−1. By titrating peptide-coated NRs with Bovine Serum Albumin (BSA) we monitored (nonspecific) binding through rotational diffusion and showed that Drot is an advantageous observable for monitoring binding. Monitoring rotational diffusion of bioconjugated NRs using FCS might prove to be a useful tool for observing binding and conformational dynamics in biological systems.
机译:三种纵横比的CdSe / CdS / ZnS纳米棒(NRs)用植物螯合素相关肽包被,并使用荧光相关光谱法(FCS)研究。实验证实了NRs旋转扩散对相关曲线的贡献的理论预测。我们监测了NRs的旋转和平移扩散,并从提取的扩散常数中提取了流体动力学半径。在考虑配体尺寸时,NR的平移和旋转扩散常数(Dtrans和Drot)与Tirado和Garcia de la Torre以及Broersma的理论非常吻合。 NR的尺寸范围比旋转扩散的长度依赖性Drot〜L -3 相对于Dtrans〜L -1 更为陡峭,因此可以用比平移扩散更高的灵敏度监测旋转扩散。通过用牛血清白蛋白(BSA)滴定肽包被的NRs,我们通过旋转扩散监测了(非特异性)结合,并表明Drot是监测结合的有利观察剂。使用FCS监测生物共轭NR的旋转扩散可能被证明是观察生物系统中结合和构象动力学的有用工具。

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