volume 124 issue 21 publication number e27509

DFT Computation, Spectroscopic, Hirshfeld Surface, Docking and Topological Analysis on 2,2,5‐Trimethyl‐1,3‐Dioxane‐5‐Carboxylic Acid as Potent Anti‐Cancer Agent

J. Senthil Kumar 1
N. Karthik 2
S. Sumathi 2
N. Siva Jyothi 3
S. Saranya 4
S. Jeyavijayan 2
1
 
PG & Research Department of Physics Thanthai Periyar Government Arts and Science College Tiruchirappalli India
4
 
Department of Physics Velammal College of Engineering and Technology Madurai India
Publication typeJournal Article
Publication date2024-10-29
scimago Q3
wos Q2
SJR0.384
CiteScore4.8
Impact factor2.0
ISSN00207608, 1097461X
Abstract
ABSTRACT

The 2,2,5‐trimethyl‐1,3‐dioxane‐5‐carboxylic acid (TDCA) using both theoretical and experimental methods have been studied. The sample has been subjected to XRD, FTIR, FT‐Raman, (C13 and H1) NMR, and UV–vis spectrum analysis. Then, theoretical calculations have been performed at the DFT/B3LYP/6‐311++G(d,p) higher based scale. The theoretical and experimental geometrical parameters and frequencies have been compared well. Theoretical and experimental NMR chemical shifts have been determined. Absorption wavelengths of UV–Vis spectrum were experimentally measured and compared with TD‐DFT predictions. Detailed explanations have been given for frontier molecular orbitals, low density gradient, distribution of Mulliken charges, molecular electrostatic potential (MEP), RDG, localized orbital location, and electron localized activities. Based on the studied 2D image of the Hirschfield surfaces, H···H (65.6%) and O···H/H···O (33.6%) are found as the controlling interactions. A high binding affinity of −6.5 Kcal/mol has been calculated against 4OAR protein. These theoretical findings of the molecule may be used as an anticancer drug candidate, which helps to explain the structural stability, reactivity and anticancer potential of TDCA. High drug affinity for the TDCA has been detected by in silico ADMET prediction.

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Kumar J. S. et al. DFT Computation, Spectroscopic, Hirshfeld Surface, Docking and Topological Analysis on 2,2,5‐Trimethyl‐1,3‐Dioxane‐5‐Carboxylic Acid as Potent Anti‐Cancer Agent // International Journal of Quantum Chemistry. 2024. Vol. 124. No. 21. e27509
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Kumar J. S., Karthik N., Sumathi S., Jyothi N. S., Saranya S., Jeyavijayan S. DFT Computation, Spectroscopic, Hirshfeld Surface, Docking and Topological Analysis on 2,2,5‐Trimethyl‐1,3‐Dioxane‐5‐Carboxylic Acid as Potent Anti‐Cancer Agent // International Journal of Quantum Chemistry. 2024. Vol. 124. No. 21. e27509
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RIS Copy
TY - JOUR
DO - 10.1002/qua.27509
UR - https://onlinelibrary.wiley.com/doi/10.1002/qua.27509
TI - DFT Computation, Spectroscopic, Hirshfeld Surface, Docking and Topological Analysis on 2,2,5‐Trimethyl‐1,3‐Dioxane‐5‐Carboxylic Acid as Potent Anti‐Cancer Agent
T2 - International Journal of Quantum Chemistry
AU - Kumar, J. Senthil
AU - Karthik, N.
AU - Sumathi, S.
AU - Jyothi, N. Siva
AU - Saranya, S.
AU - Jeyavijayan, S.
PY - 2024
DA - 2024/10/29
PB - Wiley
IS - 21
VL - 124
SN - 0020-7608
SN - 1097-461X
ER -
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@article{2024_Kumar,
author = {J. Senthil Kumar and N. Karthik and S. Sumathi and N. Siva Jyothi and S. Saranya and S. Jeyavijayan},
title = {DFT Computation, Spectroscopic, Hirshfeld Surface, Docking and Topological Analysis on 2,2,5‐Trimethyl‐1,3‐Dioxane‐5‐Carboxylic Acid as Potent Anti‐Cancer Agent},
journal = {International Journal of Quantum Chemistry},
year = {2024},
volume = {124},
publisher = {Wiley},
month = {oct},
url = {https://onlinelibrary.wiley.com/doi/10.1002/qua.27509},
number = {21},
pages = {e27509},
doi = {10.1002/qua.27509}
}