中国光学, 2020, 13 (3): 492, 网络出版: 2020-08-17  

同步荧光光谱探究头孢西丁钠与溶菌酶的结合机制

Study on the binding mechanism of cefoxitin sodium to lysozyme by synchronous fluorescence spectroscopy
张红彩 1,2,3刘保生 1,2,3,*程旭 1,2,3
作者单位
1 河北大学 化学与环境科学学院,河北 保定 071002
2 河北省分析科学技术重点实验室,河北 保定 071002
3 国家级化学实验教学示范中心,河北 保定 071002
引用该论文

张红彩, 刘保生, 程旭. 同步荧光光谱探究头孢西丁钠与溶菌酶的结合机制[J]. 中国光学, 2020, 13(3): 492.

Hong-cai ZHANG, Bao-sheng LIU, Xu CHENG. Study on the binding mechanism of cefoxitin sodium to lysozyme by synchronous fluorescence spectroscopy[J]. Chinese Optics, 2020, 13(3): 492.

参考文献

[1] 张勇, ZHANG Y, 刘劲风, LIU J F, YI R H, 易润豪. Synthesis and application of a flavone-based fluorescent probe for detection of hydrazine[J]. Chinese Journal of Analytical Chemistry, 2018, 46(4): 511-516.

[2] 曹津津, CAO J J, LI Q R, 李启瑞, 李文红, LI W H. Fluorescence properties of magnoflorine and its application in analysis of traditional Chinese medicine[J]. Chinese Journal of Analytical Chemistry, 2019, 47(6): 950-956.

[3] 曹团武, CAO T W, 周坤, ZHOU K, 黄文兵, HUANG W B. Spectroscopic study of interaction of harpagoside and human serum albumin[J]. Chinese Journal of Analytical Chemistry, 2017, 45(5): 700-706.

[4] 王雪荣, WANG X R, ZHU X J, 朱晓静, 刘永明, LIU Y M. Study of the interaction between tetramethrin and bovine serum album by synchronous fluorescence spectroscopy[J]. Chemical Research and Application, 2010, 22(6): 763-766.

[5] 张源, ZHANG Y, LIN ZH X, 林哲绚, 韩溟, HAN M. Study on the change of the content of aromatic amino acid residues in the process of malignant transformation by synchronous fluorescence spectrometry[J]. Spectroscopy and Spectral Analysis, 2017, 37(9): 2822-2825.

[6] LI G X, LIU B SH, ZHANG Q J. Investigation on the effect of fluorescence quenching of bovine serum albumin by cefoxitin sodium using fluorescence spectroscopy and synchronous fluorescence spectroscopy[J]. Luminescence, 2016, 31(5): 1054-1062.

[7] 王哲, WANG ZH, XUE M, 薛敏, 孟子晖, MENG Z H. Affinity of hydrogel nanoparticles to lysozyme[J]. Chinese Journal of Analytical Chemistry, 2018, 46(3): 317-323.

[8] 唐君, TANG J, FU Q, 付强, 崔勐, CUI M. Interaction studies of lyszoyme and flavonoids using intensity fading-matrix-assisted laser desorption/ionization-mass spectrometry[J]. Chinese Journal of Analytical Chemistry, 2016, 44(7): 1071-1076.

[9] FANG Q, GUO CH H, WANG Y R. The study on interactions between levofloxacin and model proteins by using multi-spectroscopic and molecular docking methods[J]. Journal of Biomolecular Structure and Dynamics, 2018, 36(8): 2032-2044.

[10] FANG Q, WANG Y R, GUO CH H. Interaction between fleroxacin and lysozyme by using multi-spectral techniques and molecular docking[J]. Spectroscopy and Spectral Analysis, 2018, 38(2): 654-659.

[11] SOURAV D, GHOSH P, KOLEY S. Binding of naringin and naringenin with hen egg white lysozyme: a spectroscopic investigation and molecular docking study[J]. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2018, 192: 211-221.

[12] 陈晨, CHEN CH, 张洪峰, ZHANG H F, 王乐, WANG L. Studies on the interaction between oxaliplatin and lysozyme by fluorescence spectrometry[J]. Drug Evaluation, 2015, 12(4): 30-33.

[13] GÖKOĞLU E, YILMAZ E. Fluorescence interaction and determination of sulfathiazole with trypsin[J]. Journal of Fluorescence, 2014, 24(5): 1439-1445.

[14] WANG Q, ZHANG SH R, JI X H. Investigation of interaction of antibacterial drug sulfamethoxazole with human serum albumin by molecular modeling and multi-spectroscopic method[J]. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2014, 124(8): 84-90.

[15] RAZA M, JIANG Y, WEI Y. Insights from spectroscopic and in-silico techniques for the exploitation of biomolecular interactions between human serum albumin and paromomycin[J]. Colloids and Surfaces B: Biointerfaces, 2017, 157: 242-253.

[16] 申炳俊, SHEN B J, 金丽虹, JIN L H, LIU Y X, 刘昱鑫. Study of intermolecular interactions between pterostilbene and human serum albumin by fluorescence spectrometry-surface enhanced raman spectroscopy[J]. Chinese Journal of Analytical Chemistry, 2017, 45(11): 1613-1620.

[17] 许凤杰, XU F J, 彪林海, BIAO L H, 祖元刚, ZU Y G. Study on interactions between paeonol and cadherin[J]. Chinese Journal of Analytical Chemistry, 2017, 45(7): 1025-1030.

[18] MAKARSKA-BIALOKOZ M. Interactions of hemin with bovine serum albumin and human hemoglobin: a fluorescence quenching study[J]. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2018, 193: 23-32.

[19] 张彦青, ZHANG Y Q, 刘保生, LIU B SH. The comparison between commercial spectral method and synchronous fluorescence spectrometry on interaction of cefoperazone sodium with bovine transferrin[J]. Chinese Journal of Analysis Laboratory, 2018, 37(5): 503-508.

[20] NAIK K M, NANDIBEWOOR S T. Spectroscopic studies on the interaction between chalcone and bovine serum albumin[J]. Journal of Luminescence, 2013, 143: 484-491.

[21] SALAM A M, ROKONUJJAMAN M, RAHMAN A. Study of in vitro interaction of sildenafil citrate with bovine serum albumin by fluorescence spectroscopy[J]. Pharmacology & Pharmacy, 2015, 6(2): 94-101.

[22] ROSS P D, SUBRAMANIAN S. Thermodynamics of protein association reactions: forces contributing to stability[J]. Biochemistry, 1981, 20(11): 3096-3102.

[23] JAHANBAN-ESFAHLAN A, PANAHI-AZAR V, SAJEDI S. Spectroscopic and molecular docking studies on the interaction between N-acetyl cysteine and bovine serum albumin[J]. Biopolymers, 2015, 103(11): 638-645.

[24] ZHOU H F, BI SH Y, WANG Y. Characterization of the binding of paylean and DNA by fluorescence, UV spectroscopy and molecular docking techniques[J]. Luminescence, 2016, 31(4): 1013-1019.

[25] MA L H, LIU B SH, WANG CH D. The interaction mechanism of nifedipine and pepsin[J]. Monatshefte für Chemie-Chemical Monthly, 2018, 149(11): 2123-2130.

[26] REN D R, YU ZH T, ZOU Y M. Enhancing the sensitivity of aptameric detection of lysozyme with a “feed-forward” network of DNA-related reaction cycles[J]. Chemistry-A European Journal, 2012, 18(44): 14201-14209.

[27] 赵海雁, ZHAO H Y, 高川, GAO CH, 郑曙光, ZHENG SH G. Cefoxitin medicinal research[J]. World Health Digest Medical Periodieal, 2012, 9(8): 85-86.

[28] 史巧巧, SHI Q Q, XI J, 席俊, 陆启玉, LU Q Y. Research progress in benzopyrene in foods[J]. Science and Technology of Food Industry, 2014, 35(5): 379-381, 386.

[29] BOJKO B, SUŁKOWSKA A, MACIAŻEK-JURCZYK M. The influence of dietary habits and pathological conditions on the binding of theophylline to serum albumin[J]. Journal of Pharmaceutical and Biomedical Analysis, 2010, 52(3): 384-390.

[30] LIU B SH, WANG J, XUE CH L. Spectroscopic studies on the interaction of synthetic food colorants with bovine serum albumin[J]. Zeitschrift für Physikalische Chemie, 2011, 225(4): 455-468.

[31] JING M Y, SONG W, LIU R T. Binding of copper to lysozyme: spectroscopic, isothermal titration calorimetry and molecular docking studies[J]. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2016, 164: 103-109.

[32] JANA S, DALAPATI S, GHOSH S. Study of microheterogeneous environment of protein human serum albumin by an extrinsic fluorescent reporter: a spectroscopic study in combination with Molecular Docking and Molecular Dynamics Simulation[J]. Journal of Photochemistry and Photobiology B: Biology, 2012, 112: 48-58.

张红彩, 刘保生, 程旭. 同步荧光光谱探究头孢西丁钠与溶菌酶的结合机制[J]. 中国光学, 2020, 13(3): 492. Hong-cai ZHANG, Bao-sheng LIU, Xu CHENG. Study on the binding mechanism of cefoxitin sodium to lysozyme by synchronous fluorescence spectroscopy[J]. Chinese Optics, 2020, 13(3): 492.

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