光谱学与光谱分析, 2020, 40 (8): 2358, 网络出版: 2020-12-02  

远红外陶瓷粉对精油与BSA相互作用的影响

Effect of Far-Infrared Ceramic Powder on the Interaction Between Essential Oil and BSA
作者单位
1 西南科技大学生命科学与工程学院, 四川 绵阳 621010
2 核废物与环境安全省部共建协同创新中心, 四川 绵阳 621010
摘要
精油和远红外陶瓷粉(cFIR)经常用于理疗或相关的保健产品, 但其与生物分子间的相互作用及其机制较少被关注。 在模拟生理条件下, 采用光谱法与红外热成像技术, 研究了cFIR对玫瑰精油(REO)与牛血清蛋白(BSA)之间相互作用的影响及其机制。 荧光光谱表明, REO与cFIR均能猝灭BSA的内源性荧光; 无论cFIR是否存在, REO对BSA的猝灭方式均为静态猝灭; Stern-Volmer方程拟合计算结果表明加入cFIR, 使BSA与REO之间的结合位点数由0.55提高到0.96, 结合常数也显著提高, 说明cFIR的存在能提高REO对BSA的亲和力, 且二者与BSA之间存在强有效的作用力; 利用同步荧光光谱、 三维荧光光谱和红外光谱探究了cFIR与REO对BSA二级结构的影响, 结果表明两者会引起蛋白质周围疏水性的增加, 对BSA的构象有一定的影响; 另外两者主要通过与BSA形成缔合物的方式对蛋白质的内源性荧光产生影响并具有协同作用; 利用Frster非辐射能量转移理论计算临界能量转移距离R0和结合距离r, cFIR加入前后BSA与REO之间的结合距离r由1.445 nm变为1.453 nm, R0基本不变, 且R0
Abstract
Essential oil and far-infrared ceramic powder(cFIR) are often used in physiotherapy or related health-care products, but the interaction and mechanism between them and biomolecules are less concerned. In this research, the influence and mechanism of cFIR on the interaction between rose essential oil(REO) and bovine serum albumin (BSA) were studied through different spectroscopy methods and infrared thermography under simulated physiological conditions. The results of the fluorescence spectrum show that both the REO and the cFIR can quench the intrinsic fluorescence of BSA. Whether the cFIR exists or not, the quenching mode of the REO to BSA is static quenching. The fitting calculation of Stern-Volmer equation shows that the binding sites n between BSA and REO is increased from 0.55 to 0.96 by adding cFIR, and the binding constant is also significantly increased, which shows that the affinity of REO to BSA can be improved with the existence of cFIR. The effects of cFIR and REO on the secondary structure of BSA were studied through synchronous fluorescence spectrum, three-dimensional fluorescence spectrum and Fourier transform infrared spectrum. The results show that they can cause the increase of hydrophobicity around the protein and have little effect on the conformation of BSA; in addition, cFIR and REO show the synergistic effect on the quenching of BSA intrinsic fluorescence through the formation of association compounds with BSA. Critical distance (R0) and binding distance (r) were calculated based on Frster’s non-radiative energy transfer theory. The binding distance (r) between BSA and REO changes from 1.445 nm to 1.453 nm after the addition of cFIR, R0 is basically unchanged and R0 is less than r. These results suggest that whether the cFIR exists, the static quenching of BSA fluorescence by REO is accompanied by non-radiative energy transfer. The cFIR mainly improves the affinity of REO to BSA by changing the conformation of BSA due to different non-competitive binding sites between the cFIR and REO on BSA molecular surface. Infrared thermal imaging techniques was used to explore the interaction of REO and cFIR with macromolecules. Infrared thermal imaging results show that REO can reduce the temperature of biomolecules, while cFIR can increase the temperature of biomolecules. The addition of the cFIR can increase a response temperature of BSA-REO system, which indicates the thermal effect will increase (p<0.05). The above results show that the cFIR with nano-size effect and far-infrared radiation can affect the microenvironment of the system by forming association compounds when it interacts with REO, thus affect the fluorescence characteristics and energy transfer of biomolecules. The results of this study can provide a reference for further application of essential oil combined with cFIR in physiotherapy and mechanism research.

黄芳, 刘明学, 熊杰, 陈律奇, 高竹欣, 陈慧明, 王丹妮. 远红外陶瓷粉对精油与BSA相互作用的影响[J]. 光谱学与光谱分析, 2020, 40(8): 2358. HUANG Fang, LIU Ming-xue, XIONG Jie, CHEN Lü-qi, GAO Zhu-xin, CHEN Hui-ming, WANG Dan-ni. Effect of Far-Infrared Ceramic Powder on the Interaction Between Essential Oil and BSA[J]. Spectroscopy and Spectral Analysis, 2020, 40(8): 2358.

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