National Agri-Food Biotechnology Institute (NABI), S.A.S. Nagar, Punjab, 140306, India.
Centre for Nanoscience and Nanotechnology, Panjab University, Chandigarh, 160014, India.
J Fluoresc. 2021 Nov;31(6):1815-1821. doi: 10.1007/s10895-021-02813-1. Epub 2021 Sep 14.
Lysozyme is widely used for the synthesis of nanomaterials (e.g., gold nanoparticle) to fluorescently sense metal ions. However, the effect of metal ions on the fluorescence of lysozyme is not studied yet. Herein, we have explored the interactions of lysozyme with different metal ions to develop a direct sensing platform for Fe(III). It has been observed that the fluorescence of lysozyme was slightly decreased in the presence of Cu(II), Hg(II), As(V), Co(II), Cd(II), Cr(II), Fe(II), Mn(II), Pb(II), and Zn(II), while a significant decrease in the lysozyme fluorescence was observed for Fe(III). The effect of thermal stability on the fluorescence quenching was also studied from 25 to 60 °C. In the present study, the lysozyme sensing probe was able to selectively and accurately detect 0.5-50 ppm of Fe(III) with a LOD of 0.1 ppm (1.8 µM) at 25 °C.
溶菌酶广泛用于纳米材料(例如金纳米粒子)的合成,以荧光感应金属离子。然而,金属离子对溶菌酶荧光的影响尚未得到研究。在此,我们探索了溶菌酶与不同金属离子的相互作用,以开发用于检测 Fe(III) 的直接传感平台。结果表明,在 Cu(II)、Hg(II)、As(V)、Co(II)、Cd(II)、Cr(II)、Fe(II)、Mn(II)、Pb(II) 和 Zn(II)存在下,溶菌酶的荧光略有降低,而在 Fe(III)存在下,溶菌酶的荧光显著降低。还研究了从 25 到 60°C 时热稳定性对荧光猝灭的影响。在本研究中,溶菌酶传感探针能够在 25°C 下以 0.1ppm(1.8µM)的 LOD 选择性和准确地检测 0.5-50ppm 的 Fe(III)。