J. Eur. Opt. Society-Rapid Publ. 22, 10( 2026) 109
68 Duan C, Zhang H, Zhang Y, Li Q, Li P, Mari GM, et al., A Robust homogeneous fluorescence polarization immunoassay for rapid determination of erythromycin in milk, Foods 12( 8), 1581( 2023). https:// doi. org / 10.3390 / foods12081581.
69 Huang J, Chen Y, Sun Z, Gu Y, Li J, One-step platform for Maduramicin and Salinomycin detection based on bispecific monoclonal antibody and interpretation of molecular recognition mechanism, J. Agric. Food Chem. 47, 18557 – 18565( 2023). https:// doi. org / 10.1021 / acs. jafc. 3c06731.
70 Mukhametova LI, Eremin SA, Fluorescence polarization assays for organic compounds in food safety, Front. Biosci.( Elite Ed) 16( 1), 4( 2024). https:// doi. org / 10.31083 / j. fbe1601004.
71 Förster T, Zwischenmolekulare energiewanderung und fluoreszenz, Ann. Phys. 437, 55 – 75( 1948). https:// doi. org / 10.1002 / andp. 19484370105.
72 Förster T, Transfer mechanisms of electronic excitation energy, Radiat. Res. Suppl. 2, 326 – 339( 1960). https:// doi. org / 10.2307 / 3583604.
73 Zhang B, Lyu G, Kelly EA, Evans RC, Förster resonance energy transfer in luminescent solar concentrators, Adv. Sci. 9( 23), 2201160( 2022). https:// doi. org / 10.1002 / advs. 20220 1160.
74 Stryer L, Haugland RP, Energy transfer: A spectroscopic ruler, Proc. Natl. Acad. Sci. 58( 2), 719 – 726( 1967). https:// doi. org / 10.1073 / pnas. 58.2.719.
75 Nichols JW, Pagano RE, Resonance energy transfer assay of protein-mediated lipid transfer between vesicles, J. Biol.
Chem. 258( 9), 5368 – 5371( 1983). https:// doi. org / 10.1016 / S0021-9258( 20) 81898-5.
76 Ma L, Yang F, Zheng J, Application of fluorescence resonance energy transfer in protein studies, J. Mol. Struct. 1077, 87 – 100( 2014). https:// doi. org / 10.1016 / j. molstruc. 2013.12.071.
77 Rudkouskaya A, Sinsuebphon N, Ochoa M, Chen SJ, Mazurkiewicz JE, Intes X, et al., Multiplexed non-invasive tumor imaging of glucose metabolism and receptor-ligand engagement using dark quencher FRET acceptor, Theranostics 10( 22), 10309( 2020). https:// doi. org / 10.7150 / thno. 45825.
78 Su B, Zhang Z, Sun Z, Tang Z, Xie X, Chen Q, et al., Hammock BD, Fluonanobody-based nanosensor via fluorescence resonance energy transfer for ultrasensitive detection of ochratoxin A, J. Hazard. Mater. 422, 126838( 2022). https:// doi. org / 10.1016 / j. jhazmat. 2021.126838.
79 Wang Y, Zhang G, Xiao X, Shu X, Fei D, Guang Y, et al., High-performance fluorescent microspheres based on fluorescence resonance energy transfer mode for lateral flow immunoassays, Anal. Chem. 95( 48), 17860 – 17867( 2023). https:// doi. org / 10.1021 / acs. analchem. 3c03986.
80 Qi S, Dong X, Hamed EM, Jiang H, Cao W, Li SFY, Wang Z, Ratiometric fluorescence aptasensor of allergen protein based on multivalent aptamer-encoded dna flowers as fluorescence resonance energy transfer platform, Anal. Chem. 96( 18), 11( 2024). https:// doi. org / 10.1021 / acs. analchem. 3c05894.