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Spectroscopic investigations on the interaction between cadmium telluride semiconductor nanoparticle and bovine alkaline phosphatase

机译:碲化镉半导体纳米粒子和牛碱性磷酸酶相互作用的光谱研究

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The interaction of enzymes with nanoparticles is important in the field of biotechnology and medicine. Due to the various uses of cadmium telluride nanoparticle in protein science, biotechnology and biophysical chemistry, drug delivery, and cellular imaging, study of this nanoparticle interaction with protein seems to be necessary. Therefore, the interaction between cadmium telluride semiconductor nanoparticle and bovine alkaline phosphatase, a clinical marker enzyme, were investigated by assaying kinetic parameters and fluorescence absorption, UV-vis absorption spectra, and circular dichroism spectroscopic techniques. Obtained results showed that cadmium telluride nanoparticle could quench the fluorescence signal of bovine alkaline phosphatase effectively with a static quenching mechanism. Moreover, the binding of cadmium telluride nanoparticle to the enzyme was spontaneous and van der Waals and hydrogen bonding forces played a key role in the complex stabilization. Circular dichroism spectra measurements indicated that cadmium telluride nanoparticle decreased -helical content and increased the -sheet structure of bovine alkaline phosphatase. These findings suggest that cadmium telluride nanoparticle changes the structure and activity of bovine alkaline phosphatase.
机译:酶与纳米颗粒的相互作用在生物技术和药物领域中是重要的。由于碲化镉纳米粒子在蛋白质科学,生物技术和生物物理化学,药物递送和细胞成像中的各种用途,对该纳米颗粒与蛋白质相互作用的研究似乎是必要的。因此,通过测定动力学参数和荧光吸收,UV-Vis吸收光谱和圆形二色性光谱技术来研究碲化镉半导体纳米粒子和牛碱性磷酸酶的相互作用,临床标志物酶。得到的结果表明,碲化镉纳米粒子可以通过静态猝灭机构有效地终止牛碱性磷酸酶的荧光信号。此外,碲化镉纳米粒子与酶的结合是自发的,并且van der WaaLs和氢键力在复杂稳定中发挥了关键作用。圆形二中间谱谱测量表明,碲化镉纳米粒子降低了 - 牛碱性磷酸酶的形状含量和增加的牛碱性磷酸酶。这些发现表明碲化镉纳米粒子改变了牛碱性磷酸酶的结构和活性。

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