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Original Research Article | OPEN ACCESS

Studies on in vitro binding of parecoxib to p38MAPK using spectroscopic methods

Xuejie Li1, Kun Huang1, Shan Zhong2

1Department of Anesthesiology, West China Hospital, Sichuan University and The Research Units of West China (2018RU012), Chinese Academy of Medical Sciences, Nanjing 210004, China; 2Department of Anesthesiology, Children’s Hospital of Nanjing Medical University, Nanjing 210004, China.

For correspondence:-  Shan Zhong   Email: tintin0211@163.com   Tel:+8613002199949

Accepted: 30 July 2023        Published: 31 August 2023

Citation: Li X, Huang K, Zhong S. Studies on in vitro binding of parecoxib to p38MAPK using spectroscopic methods. Trop J Pharm Res 2023; 22(8):1645-1650 doi: 10.4314/tjpr.v22i8.16

© 2023 The authors.
This is an Open Access article that uses a funding model which does not charge readers or their institutions for access and distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0) and the Budapest Open Access Initiative (http://www.budapestopenaccessinitiative.org/read), which permit unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited..

Abstract

Purpose: To investigate the interaction between parecoxib and p38MAPK under simulated physiological conditions.
Methods: The interaction between parecoxib and p38MAPK was studied under simulated physiological conditions using spectroscopy-based methods. The effect of parecoxib on the microenvironment and conformation of p38MAPK chromophore was studied by synchronous fluorescence spectroscopy, three-dimensional fluorescence, time-resolved fluorescence spectroscopy, circular dichroism spectroscopy, and ultraviolet-visible absorption spectroscopy.
Results: Synchronous fluorescence spectroscopy showed that addition of parecoxib changed the structure of p38MAPK and destroyed the original stable structure. Three-dimensional fluorescence spectroscopy showed that the hydrophilicity of the microenvironment in which the fluorescent chromophore is located was enhanced, and the polarity increased such that the serum protein macromolecules tend to be unfolded, and the alpha-helix content reduced. Time-resolved fluorescence spectroscopy showed that the presence of parecoxib hardly affected the fluorescence quenching of p38MAPK, and the combination of parecoxib and p38MAPK forms a stable complex (static quenching). Circular dichroism spectroscopy revealed the combined parecoxib change, the secondary structure of p38MAPK and reduced the alpha-helix content. Ultraviolet-visible absorption spectroscopy revealed changes in the microenvironment of the three amino acid residues as well as the tertiary structure of the protein.
Conclusion: The results shows that parecoxib has a significant effect on the structure of p38MAPK. In addition to explicitly inhibiting COX-2 and blocking arachidonic acid synthesis of prostaglandins, it inhibits the pathway involved in p38MAPK.

Keywords: Parecoxib, P38MAPK, Alpha-helix content, Fluorescence quenching, Spectroscopic study

Impact Factor
Thompson Reuters (ISI): 0.523 (2021)
H-5 index (Google Scholar): 39 (2021)

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