Development of a Competitive Chemiluminescent Assay for Quantitative Determination of TP53 Fusion Protein Using Reagent Strips
Author:
Funder
Science and Technology Project of Hebei Education Department
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s12010-024-04860-3.pdf
Reference50 articles.
1. Wang, L. Y., Yao, M. W., Fang, X. Y., et al. (2018). Novel competitive chemiluminescence DNA assay based on Fe3O4@SiO2@Au-functionalized magnetic nanoparticles for sensitive detection of p53 tumor suppressor gene. Applied Biochemistry and Biotechnology, 187, 152–162.
2. Ladds, M. J. G. W., van Leeuwen, I. M. M., Drummond, C. J., Chu, S., Healy, A. R., Popova, G., et al. (2023). Publisher correction: A DHODH inhibitor increases p53 synthesis and enhances tumor cell killing by p53 degradation blockage. Nature Communications, 14(1), 5019. https://doi.org/10.1038/S41467-023-40764-2
3. Wang, Y., Liu, S., Zhang, D., Xiao, Q., & Huang, S. (2023). Ultrasensitive electrochemical platform for the p53 gene via molecular beacon-mediated circular strand displacement and terminal deoxynucleotidyl transferase-mediated signal amplification strategy. The Analyst, 148(5), 1005–1015. https://doi.org/10.1039/D2AN01676A
4. Asghariazar, V., Amini, M., Pirdel, Z., Fekri, R., Asadi, A., Nejati-Koshki, K., et al. (2023). The Schiff base hydrazine copper(II) complexes induce apoptosis by P53 overexpression and prevent cell migration through protease-independent pathways. Medical Oncology, 40(9), 271. https://doi.org/10.1007/S12032-023-02150-2
5. Duffy, M. J., Synnott, N. C., McGowan, P. M., Crown, J., O’Connor, D., & Gallagher, W. M. (2014). p53 as a target for the treatment of cancer. Cancer Treatment Reviews, 40(10), 1153–1160. https://doi.org/10.1016/j.ctrv.2014.10.004
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