Chem. J. Chinese Universities ›› 2024, Vol. 45 ›› Issue (9): 20240251.doi: 10.7503/cjcu20240251
• Analytical Chemistry • Previous Articles
XU Xiaohua, WANG Li, LIN Pengcheng, MA Tianfeng, SHI Lin, WANG Huan(), LU Yongchang(
)
Received:
2024-05-23
Online:
2024-09-10
Published:
2024-07-22
Contact:
WANG Huan, LU Yongchang
E-mail:qhmuwh1028@126.com;qhlych@126.com
Supported by:
CLC Number:
TrendMD:
XU Xiaohua, WANG Li, LIN Pengcheng, MA Tianfeng, SHI Lin, WANG Huan, LU Yongchang. Preparation of NPCl-CDs/Fe 3+ Fluorescent Probe and the Detection for L -Cys[J]. Chem. J. Chinese Universities, 2024, 45(9): 20240251.
Fluorescent probe | Line range/(μmol·L ‒1) | LOD/(μmol·L ‒1) | Ref. |
---|---|---|---|
AuNCs@ZIF⁃8 | 1—10 | 0.15 | [ |
AuNCs/AuNPs | 1.5—35 | 1.4 | [ |
AuNCs | 0.2—60 | 80 | [ |
CDs | 2—20 | 0.29 | [ |
CeO2/CoO | 5—10 | 3.71 | [ |
NPCl⁃CDs/Fe 3+ | 5.8—60 | 0.052 | This work |
Table 1 Comparison of different fluorescent probes for the detection of biothiols
Fluorescent probe | Line range/(μmol·L ‒1) | LOD/(μmol·L ‒1) | Ref. |
---|---|---|---|
AuNCs@ZIF⁃8 | 1—10 | 0.15 | [ |
AuNCs/AuNPs | 1.5—35 | 1.4 | [ |
AuNCs | 0.2—60 | 80 | [ |
CDs | 2—20 | 0.29 | [ |
CeO2/CoO | 5—10 | 3.71 | [ |
NPCl⁃CDs/Fe 3+ | 5.8—60 | 0.052 | This work |
Sample | Added/(μmol·L ‒1) | Found */(μmol·L ‒1) | Recovery(%) | RSD *( n=3) |
---|---|---|---|---|
Duck blood | 0 | 6.12 | — | — |
10 | 15.94 | 98.20 | 0.64 | |
20 | 25.97 | 99.25 | 1.27 | |
30 | 36.19 | 100.23 | 0.66 | |
Serum | 0 | 6.27 | — | — |
10 | 16.04 | 97.70 | 1.04 | |
20 | 25.96 | 98.45 | 1.35 | |
30 | 36.23 | 99.87 | 0.68 |
Table 2 Detection of L-Cys in actual samples
Sample | Added/(μmol·L ‒1) | Found */(μmol·L ‒1) | Recovery(%) | RSD *( n=3) |
---|---|---|---|---|
Duck blood | 0 | 6.12 | — | — |
10 | 15.94 | 98.20 | 0.64 | |
20 | 25.97 | 99.25 | 1.27 | |
30 | 36.19 | 100.23 | 0.66 | |
Serum | 0 | 6.27 | — | — |
10 | 16.04 | 97.70 | 1.04 | |
20 | 25.96 | 98.45 | 1.35 | |
30 | 36.23 | 99.87 | 0.68 |
34 | Yan F., Shi D., Zheng T., Yun K., Zhou X., Chen L., Sensos Actuat. B: Chem., 2016, 224, 926—935 |
35 | Lian J., Liu P., Jin C., Liu Q. Y., Zhang X., Zhang X., ACS Sustainable Chem. Eng., 2020, 8(47), 17540—17550 |
36 | Liu M. L., Chen B. B., Li C. M., Huang C. Z., Green Chem., 2019, 21(3), 449—471 |
37 | Zhang J., Chen H., Xu K., Deng D., Zhang Q., Luo L., Biosensors, 2023, 13(2), 233 |
38 | Huang X., Zhou Y., Liu C., Zhang R., Zhang L., Du S., Liu B., Han M. Y., Zhang Z., Biosens. Bioelectron., 2016, 86, 530—535 |
1 | Zhao J., Yang J., Ma Y., Zhao D., Luo H., Luo X., Hou C., Huo D., J. Photoch Photoblo A, 2023, 439, 114595 |
2 | Shellaiah M., Sun K. W., Biosensors, 2023, 13(3), 335 |
3 | Xu Y. L., Bai R. B., Qi C. Y., Ren Z., Jia X. Z., Kan Z. G., Li C. L., Wang F., J. Fluoresc., 2019, 29, 819—825 |
4 | Li S. Q., Construction of Glutathione and Cysteine Responsive Fluorescent Probes and Their Sensing Detection Studies, Jiangnan University, Wuxi, 2023 |
李姝琦. 谷胱甘肽和半胱氨酸荧光响应探针的构建及其传感检测研究, 无锡: 江南大学, 2023 | |
5 | Zhang H. F., Geltink R. I. K., Parker S. J., Sorensen P. H., Trends Cell Biol., 2022, 32(9), 800—814 |
6 | Paul B. D., Sbodio J. I., Snyder S. H., Trends Pharmacol. Sci., 2018, 39(5), 513—524 |
7 | Pham T. K., Buczek W. A., Mead R. J., Shaw P. J., Collins M. O., Front. Mol. Neurosci., 2021, 14, 678837 |
8 | Chen M., Zhu J., Mu W., Guo L., Genes & Dis., 2023, 10, 877—890 |
9 | Cho I. J., Kim D., Kim E. O., Jegal K. H., Kim J. K., Park S. M., Zhao R., Ki S. H., Kim S. C., Ku S. K., Antioxidants⁃Basel, 2021, 10(10), 1543 |
10 | Tsogas G. Z., Kappi F. A., Vlessidis A. G., Giokas D. L., Anal. Lett., 2018, 51(4), 443—468 |
11 | Shen Y., Yue J., Shi W., Xu W., Xu S., Biosens. Bioelectron, 2020, 151, 111957 |
12 | Isokawa M., Funatsu T., Tsunoda M., Analyst, 2013, 138(13), 3802—3808 |
13 | Denoroy L., Parrot S., Sep. Pur. Rev., 2017, 46(2), 108—151 |
14 | Mostafa I. M., Liu H., Hanif S., Gilani M. R. H. S., Guan Y., Xu G., Anal. Chem., 2022, 94(18), 6853—6859 |
15 | Cao Z. Y., Sun L. H., Mou R. X., Zhou R., Zhu Z. W., Chen M. X., J. Chromatogr. B, 2015, 976, 19—26 |
16 | Kuligowski J., El ⁃Zahry M. R., Sánchez ⁃Illana Á., Quintás G., Vento M., Lendl B., Analyst, 2016, 141(7), 2165—2174 |
17 | Krishnan U., Iyer S. K., J. Photoch. Photobio. A, 2022, 425, 113663 |
18 | Tang X., Yu H., Bui B., Wang L., Xing C., Wang S., Chen M., Hu Z., Chen W., Bioact. Mater., 2021, 6(6), 1541—1554 |
19 | Wang Q., Liu Z. F., Li L. H., Huang P., Sun Y. L., Ge J., Zhang S. R., Analy. Lab., 2022, 41(8), 869—873 |
王芹, 刘智峰, 李利华, 黄佩, 孙艳丽, 葛举, 张晟瑞. 分析试验室, 2022, 41(8), 869—873 | |
20 | Wang Z., Zhang L., Hao Y., Dong W., Liu Y., Song S., Shuang S., Dong C., Gong X., Anal. Chim. Acta, 2021, 1144, 1—13 |
21 | Yang Z., Li H., Xu T., She M., Chen J., Jia X., Liu P., Liu X., Li J., J. Mater. Chem. A, 2023, 11(6), 2679—2689 |
22 | Yang M., Liu M., Wu Z., He Y., Ge Y., Song G., Zhou J., Microchim. Acta, 2019, 186, 1—8 |
23 | Zhong Y., Chen Q., Li J., Pan X., Han Z., Dong W., Nano, 2017, 12(11), 1750135 |
24 | Wang W., Peng J., Li F., Su B., Chen X., Chen X., Microchim. Acta, 2019, 186, 1—9 |
25 | Wang Z., Zhang L., Hao Y., Dong W., Liu Y., Song S., Shuang S., Dong C., Gong X., Anal. Chim. Acta, 2021, 1144, 1—13 |
26 | Li J., Jiao Y., Feng L., Zhong Y., Zuo G., Xie A., Dong W., Microchim Acta, 2017, 184, 2933—2940 |
27 | Yang J. S., Design of Carbon Quantum Dots⁃ based Fluorescence Sensor Systems and Its Application in the Detection of Biothiols, Chongqing University, Chongqing, 2018 |
杨俊盛. 碳量子点基荧光传感体系的构建及其对生物硫醇检测研究, 重庆大学, 重庆, 2018 | |
28 | Yang M., Liu M., Wu Z., He Y., Ge Y., Song G., Zhou J., Microchim. Acta, 2019, 186, 1—8 |
29 | Chen K., Qing W., Hu W., Lu M., Wang Y., Liu X., Spectrochim. Acta A, 2019, 213, 228—234 |
30 | El Demeiry. M., Ali A., Abouleila Y., Shimizu Y., Masujima T., Salam R. A., Hadad G., Emara S., Microchem. J., 2020, 153, 104534 |
31 | Yu W., Zhan S., Shen Z., Zhou Q., Yang D., Chem. Eng. J., 2017, 313, 836—846 |
32 | Li X., Qiao J., Li Z., Qi L., Analyst, 2020, 145(6), 2233—2237 |
33 | Wang Y. W., Tang S., Yang H. H., Song H., Talanta, 2016, 146, 71—74 |
[1] | LU Cong, LI Zhenhua, LIU Jinlu, HUA Jia, LI Guanghua, SHI Zhan, FENG Shouhua. Synthesis, Structure and Fluorescence Detection Properties of a New Lanthanide Metal-Organic Framework Material [J]. Chem. J. Chinese Universities, 2022, 43(6): 20220037. |
[2] | MA Jianxin, LIU Xiaodong, XU Na, LIU Guocheng, WANG Xiuli. A Multi-functional Zn(II) Coordination Polymer with Luminescence Sensing, Amperometric Sensing, and Dye Adsorption Performance [J]. Chem. J. Chinese Universities, 2022, 43(1): 20210585. |
[3] | WU Ji, ZHANG Hao, LUO Yuhui, GENG Wuyue, LAN Yaqian. A Microporous Cationic Ga(III)-MOF with Fluorescence Properties for Selective sensing Fe3+ Ion and Nitroaromatic Compounds [J]. Chem. J. Chinese Universities, 2022, 43(1): 20210617. |
[4] | LI Ran, ZHANG Xudong, MU Lidan, SUN Tong, AI Ganggang, SHA Yelong, ZHANG Yuqi, WANG Jijiang. Preparation and Application of Triplethiophene Derivative Functionalized SiO2 Inverse Opal Photonic Crystal Fluorescent Films [J]. Chem. J. Chinese Universities, 2021, 42(9): 2989. |
[5] | WANG Bodong, PAN Meichen, ZHUO Ying. Construction of Electrochemiluminescence Sensing Interface Based on Silver Nanoclusters-Silica Nanoparticles and Biomolecular Recognition [J]. Chem. J. Chinese Universities, 2021, 42(11): 3519. |
[6] | FU Kefei, LIAN Huiting, WEI Xiaofeng, SUN Xiangying, LIU Bin. Construction of Cyclodextrin-based Impedance Sensor for Recognition of L-Cysteine † [J]. Chem. J. Chinese Universities, 2020, 41(4): 706. |
[7] | PENG Yuyu,WANG Yu,YU Xinyao,ZENG Julan,XIAO Zhongliang,CAO Zhong. Rapid and Sensitive Detection of L-Cysteine Based on Mono(6-mercapto-6-deoxy)-β-cyclodextrin Modified Gold Electrode † [J]. Chem. J. Chinese Universities, 2020, 41(2): 268. |
[8] |
YU Zhaochuan, MA Wenhui, WU Tao, WEN Jing, ZHANG Yong, WANG Liyan, CHU Hongtao.
Preparation of B, N, S co-Doped Graphene Quantum Dots for Fluorescence Detection of Fe 3+ and H2P |
[9] | ZHOU Xinhui, WANG Haishui. Co-effect of L-Cysteine Self-assembled Monolayers and Mixed Solvents on Chiral Separation of DL-glutamic Acid† [J]. Chem. J. Chinese Universities, 2017, 38(6): 1076. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||