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Using SiO2-Coated Gold Nanorods as Temperature Jump Photothermal Convertors Coupled with a Confocal Fluorescent Thermometer to Study Protein Unfolding Kinetics: A Case of Bovine Serum Albumin
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Using SiO2-Coated Gold Nanorods as Temperature Jump Photothermal Convertors Coupled with a Confocal Fluorescent Thermometer to Study Protein Unfolding Kinetics: A Case of Bovine Serum Albumin

Kuan-Jen Chen, Chia-Te Lin, Ke-Chia TsengLi-Kang Chu
Journal of Physical Chemistry C, 卷.121(27), 頁碼.14981-14989
07/2017

摘要

AuNR@SiO 2 Electronic Optical and Magnetic Materials Energy (all) Surfaces Coatings and Films Physical and Theoretical Chemistry

Photoexcitation of SiO 2 -coated gold nanorods (AuNR@SiO 2 ) with a 1064 nm pulse of ca. 100 μs duration leads to a temperature jump of 5 °C, as determined by the evolution of the fluorescence intensity of tryptophan. A confocal fluorescent thermometer was developed to detect the temperature evolution in a small excitation volume of ca. 10 -3 mm 3 and provide a spatial resolution of 100 μm. In addition, a continuous-wave laser at 1550 nm was employed to increase the initial temperature to 44 °C by heating H 2 O, providing alternative initial temperatures for temperature jump experiments to reveal the unfolding kinetics of bovine serum albumin (BSA). The evolution of fluorescence of BSA upon temperature jump when the stationary temperature was raised to 44 °C differed from that at room temperature, suggesting a dynamical unfolding kinetics, and a rate coefficient of 75 ± 15 s -1 was derived. In this work, we successfully demonstrated the applicability of AuNR@SiO 2 as the photothermal material for the temperature jump and employment of a confocal fluorescent thermometer to precisely monitor the minuscule heating volume. It would be advantageous to utilize this apparatus as an alternative tool for studying the kinetics of protein unfolding.

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