Wang, P., Wang, Q. F., Guo, Z. Q., Xue, S. R., Chen, B., Liu, Y., Ren, W., Yang, X. P., & Wen, S. H. (2022). A bifunctional peptide-based fluorescent probe for ratiometric and “turn-on” detection of Zn(II) ions and its application in living cells. Spectrochimica Acta, Part A: Molecular and Biomolecular Spectroscopy, 268, Article 120653.
Article CAS PubMed Google Scholar
Li, Y. M., Shi, J., Wu, X., Luo, Z. F., Wang, F. L., & Guo, Q. X. (2009). Tracing of intracellular zinc(II) fluorescence flux to monitor cell apoptosis by using FluoZin‐3AM. Cell Biochemistry and Function, 27, 417–423.
Li, M., Xing, Y., Zou, Y., Chen, G., You, J., & Yu, F. (2020). Imaging of the mutual regulation between zinc cation and nitrosyl via two-photon fluorescent probes in cells and in vivo. Sensors and Actuators. B, Chemical, 309, Article 127772.
Rout, K., Manna, A. K., Sahu, M., & Patra, G. K. (2019). A guanidine based bis Schiff base chemosensor for colorimetric detection of Hg(II) and fluorescent detection of Zn(II) ions. Inorganica Chimica Acta. https://doi.org/10.1016/j.ica.2018.11.021
Wu, S., Yan, Q., Wang, Y., Bian, Y., Shi, D., & Xu, H. (2024). Quinoline-based hydrophilic flavonol fluorescent probe for specific and sensitive detection of Zn2+. Microchemical Journal, 201, Article 110597.
Boldyrev, A. (2001). Carnosine as a modulator of endogenous Zn2+ effects. Trends in Pharmacological Sciences, 22(3), 112–113.
Article CAS PubMed Google Scholar
Lee, H. J., Korshavn, K. J., Kochi, A., Derrick, J. S., & Lim, M. H. (2014). Cholesterol and metal ions in Alzheimers disease. Chemical Society Reviews, 43, 6672–6682.
Article CAS PubMed Google Scholar
Olesińska-Mönch, M., & Deo, C. (2023). Small-molecule photoswitches for fluorescence bioimaging: engineering and applications. Chemical Communications, 59, 660–669.
Hamida, S., Ouabdesslam, L., Ladjel, A. F., Escudero, M., & Anzano, J. (2018). Determination of cadmium, copper, lead, and zinc in pilchard sardines from the bay of boumerdés by atomic absorption spectrometry. Analytical Letters, 51(16), 2501–2508.
Zavalishin, M. N., Gamov, G. A., Pimenov, O. A., Pogonin, A. E., Aleksandriiskii, V. V., Usoltsev, S. D., & Marfin, Y. S. (2022). Pyridoxal 5′-phosphate 2-methyl-3-furoylhydrazone as a selective sensor for Zn2+ ions in water and drug samples. Journal of Photochemistry and Photobiology, A: Chemistry, 432, Article 114112.
Paderni, D., Giorgi, L., Voccia, M., Formica, M., Caporaso, L., Macedi, E., & Fusi, V. (2022). A new benzoxazole-based fluorescent macrocyclic chemosensor for optical detection of Zn2+ and Cd2+. Chemosensors, 10(5), 188.
Sakunkaewkasem, S., Petdum, A., Panchan, W., Sirirak, J., Charoenpanich, A., Sooksimuang, T., & Wanichacheva, N. (2018). Dual-analyte fluorescent sensor based on [5] helicene derivative with super large stokes shift for the selective determinations of Cu2+ or Zn2+ in buffer solutions and its application in a living cell. ACS Sensors, 3, 1016–1023.
Article CAS PubMed Google Scholar
Zavalishin, M. N., Pogonin, A. E., & Gamov, G. A. (2025). Hg2+-induced hydrolysis of fluorescein hydrazone: A new fluorescence probe for selective recognition Hg2+ in an aqueous solution. Journal of Molecular Structure, 1334, Article 141930.
Zavalishin, M. N., Maltseva, M. A., Osokin, V. S., Aleksandriiskii, V. V., Petrova, U. A., Knyazeva, A. A., & Gamov, G. A. (2025). Synthesis and characterization of a vitamin B6-tetrazole hydrazone as a fluorescence probe for selective detection of Cd2+ and Ga3+ ions. Optical Materials, 158, Article 116493.
Zavalishin, M. N., Kiselev, A. N., Isagulieva, A. K., Shibaeva, A. V., Kuzmin, V. A., Morozov, V. N., & Gamov, G. A. (2024). Shedding light on heavy metal contamination: fluorescein-based chemosensor for selective detection of Hg2+ in water. International Journal of Molecular Sciences, 25(6), 3186.
Article CAS PubMed PubMed Central Google Scholar
Ding, Y., Xie, Y., Li, X., Hill, J. P., Zhang, W., & Zhu, W. (2011). Selective and sensitive “turn-on” fluorescent Zn2+ sensors based on di-and tripyrrins with readily modulated emission wavelengths. Chemical Communications, 47, 5431–5433.
Article CAS PubMed Google Scholar
Dutta, K., Deka, R. C., & Das, D. K. (2013). A new on-fluorescent probe for manganese (II) ion. Journal of Fluorescence, 23, 1173–1178.
Article CAS PubMed Google Scholar
Chen, S. H., Jiang, K., Xiao, Y., Cao, X. Y., Arulkumar, M., & Wang, Z. Y. (2020). Recent endeavors on design, synthesis, fluorescence mechanisms and applications of benzazole-based molecular probes toward miscellaneous species. Dyes and Pigments, 175, Article 108157.
De Acha, N., Elosúa, C., Corres, J. M., & Arregui, F. J. (2019). J. Photochem. Photobiol. A, Chem., 437(Mar. 2023): 114460.
Yu, Q., Ding, F., Shen, J., & He, X. (2021). A newly nitrobenzoxadiazole (NBD)-fused reversible fluorescence probe for pH monitoring and application in bioimaging. Talanta, 228, Article 122218.
Article CAS PubMed Google Scholar
Kucukbasmaci, H., & Aydin, D. (2023). Optical and quantitative sensing capability of phenolphthalein derived Schiff base chromo-fluorogenic sensor for Cu 2+. Journal of Photochemistry and Photobiology A: Chemistry, 437, Article 114460.
Dathees, T. J., Narmatha, G., Prabakaran, G., Seenithurai, S., Chai, J. D., Kumar, R. S., & Nandhakumar, R. (2024). Salicylaldehyde built fluorescent probe for dual sensing of Al3+, Zn2+ ions: applications in latent fingerprint, bio-imaging & real sample analysis. Food Chemistry, 441, Article 138362.
Walkup, G. K., Burdette, S. C., Lippard, S. J., & Tsien, R. Y. (2000). A new cell-permeable fluorescent probe for Zn2+. Journal of the American Chemical Society, 122, 5644–5645.
Han, H., Liu, Y. R., Dong, C., & Han, X. E. (2017). Novel ratio fluorescence probes for selectively detecting zinc ion based on Y-type quinoxaline framework. Journal of Luminescence, 183, 513–518.
Meng, Z., Zhao, F., Wang, Z., Yang, Y., & Wang, S. (2023). An efficient tetrahydroquinazolin-2-amine derivative-grafted cellulose fluorescent probe for detection of Cu2+ and Zn2+. Carbohydrate Polymers, 303, Article 120445.
Article CAS PubMed Google Scholar
Liu, R., Kowada, T., Du, Y., Amagai, Y., Matsui, T., Inaba, K., & Mizukami, S. (2022). Organelle-level labile Zn2+ mapping based on targetable fluorescent sensors. ACS Sensors, 7(3), 748–757.
Article CAS PubMed PubMed Central Google Scholar
Bai, C., Zhang, J., Qin, Y., Huang, H., Xia, Z., Zheng, Q., & Qiao, R. (2022). Precise probe design based ESIPT coupled AIE mechanism toward endogenous cyanide in food detection and bioimaging. Chemical Engineering Journal, 443, Article 136445.
Chen, X., Shi, L., Ran, X. Y., Zhang, L. N., Xie, K. P., Zhao, Y., & Li, K. (2024). Rational design of an intramolecular hydrogen bond enhanced fluorescent probe for diagnosis of drug-induced liver injury. ACS Materials Letters, 6, 1059–1068.
Li, S. Y., Yan, X., Lei, J., Ji, W. J., Fan, S. C., Zhang, P., & Zhai, Q. G. (2022). High-performance turn-on fluorescent metal–organic framework for detecting trace water in organic solvents based on the excited-state intramolecular proton transfer mechanism. ACS Applied Materials & Interfaces, 14(50), 55997–56006.
Deng, B., Ren, M., Kong, X., Zhou, K., & Lin, W. (2016). An ESIPT based fluorescent probe for imaging hydrogen sulfide with a large turn-on fluorescence signal. RSC Advances, 6(67), 62406–62410.
Zhang, Y., Wang, B., Rong, X., Qiu, X., Sun, L., & Cheng, Y. (2023). Development of a novel near-infrared fluorescent probe for selective detection of zinc ions in environmental and food samples. Tetrahedron Letters, 129, Article 154713.
Yan, L., Lu, D., Yang, H., & Wu, X. (2023). A dicyanisophorone-based probe for dual sensing Zn2+ and Cd2+ by near-infrared fluorescence. Spectrochimica Acta, Part A: Molecular and Biomolecular Spectroscopy, 290, Article 122243.
Article CAS PubMed Google Scholar
Liang, R., Luo, X., Luo, Y., Liu, F., Hu, Z., Xiong, Z., & Fan, C. (2023). A highly selective and sensitive fluorescent probe for Zn2+ based on diarylethene with a thienyl hydrazide unit. Chemistry, 445, Article 115107.
Sun, L., Wang, Z., Chen, L., Sun, X., Yang, Z., & Gu, W. (2023). A novel dehydroabietic acid-based multifunctional fluorescent probe for the detection and bioimaging of Cu2+/Zn2+/ClO−. The Analyst, 148(8), 1867–1876.
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