Javascript must be enabled to continue!
Daidzein attenuates inflammation and pain via TRPV1/ERK/COX-2 pathway modulation: insights from computational and in vivo studies
View through CrossRef
The animal and computational studies were conducted to elucidate the anti-inflammatory and analgesic potential of the Daidzein (isoflavone in nature). The molecular docking of the Daidzein was commenced against the inflammatory and analgesic targets i.e., COX-2 (Cyclooxygenase-2), ERK (Extracelluar receptor kinase), and TRPV1 (Transient receptor Potential Vanilloid 1) protein. The molecular docking was followed by the molecular dynamic (MD) simulation assess the dynamic stability of the complexes over time. Following MD simulation, the binding free energy calculations were conducted to determine the thermodynamic binding affinity. After the computational studies, the results were validated using the acetic acid-induced writhing and formalin-induced models. The molecular docking of the Daidzein showed multiple hydrophilic and hydrophobic interactions. The MD simulation analysis showed that the Daidzein_COX-2, Diadizein_ERK, and Daidzein_TRPV1 complex showed that complexes remains stable using RMSD (Root mean square deviation), RMSF (Root mean square fluctuations), RoG (Radius of Gyration), SASA (Solvent accessible surface area) and hydrogen bond analysis. The binding free energy calculations using MM-PBSA (Molecular Mechanics Poisson-Boltzmann Surface Area) and MM-GBSA Molecular Mechanics Generalized-Born Surface Area) revealed favorable binding free energy and the total energy of the system remains negative. Furthermore, the Daidzein showed marked reduction in the writhing movement and increased the pain threshold. Similarly, the Daidzein also evidently reduced the Formalin-induced biphasic pain response in animals when the results were compared with the Disease control. In conclusion, the Daidzein portrayed promising anti-inflammatory and analgesic activities using computational and animal studies, however, additional studies will be required to employ it clinically.
Lyceum Publisher (Pvt) Ltd
Title: Daidzein attenuates inflammation and pain via TRPV1/ERK/COX-2 pathway modulation: insights from computational and in vivo studies
Description:
The animal and computational studies were conducted to elucidate the anti-inflammatory and analgesic potential of the Daidzein (isoflavone in nature).
The molecular docking of the Daidzein was commenced against the inflammatory and analgesic targets i.
e.
, COX-2 (Cyclooxygenase-2), ERK (Extracelluar receptor kinase), and TRPV1 (Transient receptor Potential Vanilloid 1) protein.
The molecular docking was followed by the molecular dynamic (MD) simulation assess the dynamic stability of the complexes over time.
Following MD simulation, the binding free energy calculations were conducted to determine the thermodynamic binding affinity.
After the computational studies, the results were validated using the acetic acid-induced writhing and formalin-induced models.
The molecular docking of the Daidzein showed multiple hydrophilic and hydrophobic interactions.
The MD simulation analysis showed that the Daidzein_COX-2, Diadizein_ERK, and Daidzein_TRPV1 complex showed that complexes remains stable using RMSD (Root mean square deviation), RMSF (Root mean square fluctuations), RoG (Radius of Gyration), SASA (Solvent accessible surface area) and hydrogen bond analysis.
The binding free energy calculations using MM-PBSA (Molecular Mechanics Poisson-Boltzmann Surface Area) and MM-GBSA Molecular Mechanics Generalized-Born Surface Area) revealed favorable binding free energy and the total energy of the system remains negative.
Furthermore, the Daidzein showed marked reduction in the writhing movement and increased the pain threshold.
Similarly, the Daidzein also evidently reduced the Formalin-induced biphasic pain response in animals when the results were compared with the Disease control.
In conclusion, the Daidzein portrayed promising anti-inflammatory and analgesic activities using computational and animal studies, however, additional studies will be required to employ it clinically.
Related Results
Differential Diagnosis of Neurogenic Thoracic Outlet Syndrome: A Review
Differential Diagnosis of Neurogenic Thoracic Outlet Syndrome: A Review
Abstract
Thoracic outlet syndrome (TOS) is a complex and often overlooked condition caused by the compression of neurovascular structures as they pass through the thoracic outlet. ...
Caractérisation et implication du canal cationique TRPV1 dans la physiopathologie du muscle strié squelettique
Caractérisation et implication du canal cationique TRPV1 dans la physiopathologie du muscle strié squelettique
Le canal cationique TRPV1 (Transient Receptor Potential Vanilloid 1) est activé par la capsaïcine, une acidose, de fortes températures ainsi que par les anesthésiques volatils (AV)...
Antidepressant Potential of Daidzein Through Modulation of Endocannabinoid System by Targeting Fatty Acid Amide Hydrolase
Antidepressant Potential of Daidzein Through Modulation of Endocannabinoid System by Targeting Fatty Acid Amide Hydrolase
In recent decades, the identification of natural compounds that modulate the endocannabinoid system by fatty acid amide hydrolase (FAAH) inhibition has provided an interesting area...
A Bibliometric and Visualized Analysis of Transient Receptor Potential Vanilloid 1 in Allergic Diseases: Mapping the Knowledge Landscape
A Bibliometric and Visualized Analysis of Transient Receptor Potential Vanilloid 1 in Allergic Diseases: Mapping the Knowledge Landscape
Abstract
Background
Among the members of the Transient Receptor Potential (TRP) family, TRPV1 is distinguished as the primary r...
Rôle du canal calcique TRPV1 dans l’ischémie-reperfusion du myocarde
Rôle du canal calcique TRPV1 dans l’ischémie-reperfusion du myocarde
Au cours de l’infarctus du myocarde, aussi bien l’ischémie que la reperfusion (I/R) entrainent des dégâts irréversibles au sein du myocarde. Parmi ces lésions cellulaires, la dérég...
Impact of 4-methylbenzylidene camphor, daidzein, and estrogen on intact and osteotomized bone in osteopenic rats
Impact of 4-methylbenzylidene camphor, daidzein, and estrogen on intact and osteotomized bone in osteopenic rats
The study investigated the influence of 4-methylbenzylidene camphor (4-MBC), daidzein, and estradiol-17β-benzoate (E2) on either intact or osteotomized cancellous bone in ovariecto...
TRPV1 Deletion in Male Mice Alters Cardiomyocyte Ultrastructure Without Affecting Baseline Cardiac Function
TRPV1 Deletion in Male Mice Alters Cardiomyocyte Ultrastructure Without Affecting Baseline Cardiac Function
Abstract
Background
The Transient Receptor Potential Vanilloid 1 (TRPV1) channel has been implicated in various cardiovascular ...
Profil Senyawa Daidzein Umbi Bengkuang Serta Potensinya pada Tikus Putih Betina
Profil Senyawa Daidzein Umbi Bengkuang Serta Potensinya pada Tikus Putih Betina
Penelitian ini bertujuan untuk menganalisis dinamika senyawa berbasis bahan aktif daidzein dalam umbi bengkuang serta potensinya pada uterus dan tulang.Penelitian menggunakan pende...

