Two-dimensional Co-based metal-organic framework nanosheets as an efficient electrochemical sensing platform for simultaneous determination of daunorubicin and idarubicin

被引:0
|
作者
Tajik, Somayeh [1 ]
Beiromi, Erfan [2 ]
Beitollahi, Hadi [3 ]
Nejad, Fariba Garkani [3 ]
Dourandish, Zahra [3 ]
机构
[1] Kerman Univ Med Sci, Res Ctr Trop & Infect Dis, Kerman, Iran
[2] Kerman Univ Med Sci, Fac Pharm, Kerman, Iran
[3] Grad Univ Adv Technol, Inst Sci & High Technol & Environm Sci, Environm Dept, Kerman, Iran
来源
ADMET AND DMPK | 2025年
关键词
Chemotherapy; 2D Co-MOF nanosheets; electrochemical sensing platform; PLASMA; NANOPARTICLES; DOXORUBICIN; SENSOR;
D O I
10.5599/admet.2686
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Background and purpose: Chemotherapy is the most effective and commonly utilized cancer treatment method. Therefore, studies on the sensitive determination of chemotherapy drugs used in cancer treatment can be very effective in improving treatment and reducing their side effects. Experimental approach: The twodimensional Co-based metal-organic framework nanosheets (2D Co-MOF NSs) were synthesized and then utilized to modify the screen-printed carbon electrode (2D Co-MOF NSs/SPCE). The 2D Co-MOF NSs/SPCE was successfully used for the determination of daunorubicin (DNR). Furthermore, we utilized differential pulse voltammetry, cyclic voltammetry, and chronoamperometry to evaluate the electrochemical properties of the created electrode. Key results: The obtained results from CV studies demonstrate that this sensor exhibits outstanding electrocatalytic activity for the redox process of DNR. Under optimal experimental conditions, quantitative measurements resulted in a linear concentration range from 0.004 to 450.0 mu M for DNR with a limit of detection (LOD) of 0.001 mu M. Furthermore, the fabricated electrode was used for the simultaneous voltammetric detection of DNR and idarubicin (IDR). According to the results, the 2D Co-MOF NSs/SPCE sensor showed two well-defined peaks for the voltammetric oxidation of DNR and IDR. Eventually, the practical sample detection of DNR and IDR was successfully validated with acceptable results. Conclusion: The developed sensing platform will be beneficial for enabling effective medical strategies to improve the clinical efficacy of chemotherapy drugs. (c) 2025 by the authors. This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
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页数:11
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