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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Probing the interaction of lysozyme with ciprofloxacin in the presence of different-sized Ag nano-particles by multispectroscopic techniques and isothermal titration calorimetry
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Probing the interaction of lysozyme with ciprofloxacin in the presence of different-sized Ag nano-particles by multispectroscopic techniques and isothermal titration calorimetry

机译:用多光谱技术和等温滴定量热法探讨不同大小的银纳米粒子存在下溶菌酶与环丙沙星的相互作用

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The binding of ciprofloxacin to lysozyme in the presence of three Ag nano-particles of varying sizes was for the first time investigated by multispectroscopic and isothermal titration calorimetry techniques at pH 7.4. The results indicated that ciprofloxacin quenched the fluorescence intensity of lysozyme through a static mechanism but in the presence of size-II Ag nano-particles, there were two kinds of interaction behaviors. The interaction between ciprofloxacin and lysozyme occurred via a second type of binding site, whereas in the presence of the Ag nano-particles, some changes occurred. The secondary structure of lysozyme-ciprofloxacin in the presence of Ag nano-particles was determined by circular dichroism. The thermodynamic parameters of the interaction between ciprofloxacin and lysozyme in the presence of Ag nano-particles were measured according to the vant Hoff equation. The enthalpy (ΔH) and entropy (ΔS) changes were calculated to be -49.7 (kJ mol-1) and -20.1 (J mol-1 K-1), respectively, which indicated that the interaction of ciprofloxacin with lysozyme was driven mainly by van der Waals forces and hydrogen bonding. In the presence of the three different-sized Ag nano-particles, the enthalpic and the entropic changes were both negative which indicated that hydrogen bonding with van der Waals forces played major roles in the binding between ciprofloxacin and lysozyme. Recent developments in nano-materials offer new pathways for controlling the protein behavior through surface interactions. These data indicate that the recent research on nano-particle/protein interactions will emphasize the importance of such interactions in biological systems with applications including the diagnosis and treatment of human diseases.
机译:在pH 7.4的多光谱和等温滴定量热技术中,首次研究了环丙沙星在三种大小不同的银纳米颗粒存在下与溶菌酶的结合。结果表明,环丙沙星通过静态机制猝灭了溶菌酶的荧光强度,但是在具有II型Ag纳米粒子的情况下,存在两种相互作用行为。环丙沙星与溶菌酶之间的相互作用是通过第二种结合位点发生的,而在银纳米颗粒的存在下,会发生一些变化。通过圆二色性测定在银纳米颗粒存在下的溶菌酶-环丙沙星的二级结构。根据vant Hoff方程测量了在存在银纳米粒子的情况下环丙沙星与溶菌酶之间相互作用的热力学参数。焓变(ΔH)和熵变(ΔS)分别被计算为-49.7(kJ mol-1)和-20.1(J mol-1 K-1),这表明环丙沙星与溶菌酶的相互作用是主要驱动因素通过范德华力和氢键。在三种不同尺寸的银纳米粒子的存在下,焓变和熵变均为负,表明氢与范德华力的键合在环丙沙星与溶菌酶的结合中起主要作用。纳米材料的最新发展为通过表面相互作用控制蛋白质行为提供了新途径。这些数据表明,最近有关纳米粒子/蛋白质相互作用的研究将强调这种相互作用在生物系统及其应用中的重要性,包括人类疾病的诊断和治疗。

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