Chen Junliang, Ma Shuhua, Chen Xin, Dai Xin, Zhang Li, Yuan Yunxia, Li Linlin, Zhang Hui, Liu Gangtian, Ren Guangyue, Duan Xu, Xie Qinggang, Cao Weiwei
College of Food and Bioengineering, Henan University of Science and Technology, Luoyang, Henan 471023, China.
Heilongjiang Feihe Dairy Co., Ltd., Beijing 100015, China.
ACS Omega. 2023 Oct 25;8(44):41844-41854. doi: 10.1021/acsomega.3c06560. eCollection 2023 Nov 7.
Lactoferrin (LF) from bovine milk possesses antioxidant activity, immune regulatory and other biological activities. However, the effects of epicatechin (EC) and epigallocatechin (EGC) interacting with LF on the antioxidant activity of LF have not been investigated. Therefore, this study aimed to explore their interaction mechanism and the antioxidant activity of LF. UV spectra revealed that EGC (100 μM) induced a higher blue shift of LF at the maximum absorption wavelength than that of EC (100 μM). Fluorescence spectra results suggested that LF fluorescence was quenched by EC and EGC in the static type, which changed the polarity of the microenvironment around LF. The quenching constants (5.91 × 10-9.20 × 10) of EC-LF complexes at different temperatures were all higher than that (1.35 × 10-1.75 × 10) of the EGC-LF complex. EC could bind to LF via hydrophobic interactions while hydrogen bonding and van der Waals forces drove the binding of EGC to LF. Both the EC-LF complex and EGC-LF complex could bind to LF with one site. EGC formed more hydrogen bonds with LF than that of EC. The antioxidant activity of LF was increased by the high addition level of EC and EGC. These findings would provide more references for developing LF-catechin complexes as functional antioxidants.
牛乳中的乳铁蛋白(LF)具有抗氧化活性、免疫调节及其他生物活性。然而,表儿茶素(EC)和表没食子儿茶素(EGC)与LF相互作用对LF抗氧化活性的影响尚未见研究报道。因此,本研究旨在探究它们的相互作用机制以及LF的抗氧化活性。紫外光谱显示,在最大吸收波长处,EGC(100 μM)比EC(100 μM)诱导LF产生更高的蓝移。荧光光谱结果表明,EC和EGC对LF荧光的猝灭属于静态猝灭类型,这改变了LF周围微环境的极性。不同温度下EC-LF复合物的猝灭常数(5.91×10 - 9.20×10)均高于EGC-LF复合物的猝灭常数(1.35×10 - 1.75×10)。EC可通过疏水相互作用与LF结合,而氢键和范德华力促使EGC与LF结合。EC-LF复合物和EGC-LF复合物均以一个结合位点与LF结合。EGC与LF形成的氢键比EC更多。高添加量的EC和EGC可提高LF的抗氧化活性。这些研究结果将为开发LF - 儿茶素复合物作为功能性抗氧化剂提供更多参考。