Ghayur_2022_Biomed.Res.Int_2022_4849464

Reference

Title : Trigonella foenum-graecum Methanolic Extract on Isolated Smooth Muscles and Acetylcholinesterase Enzyme: An In Vitro and Mechanistic In Silico Investigation - Ghayur_2022_Biomed.Res.Int_2022_4849464
Author(s) : Ghayur MN , Abdalla M , Khalid A , Ahmad S , Gilani AH
Ref : Biomed Res Int , 2022 :4849464 , 2022
Abstract :

RESULTS: When tested on the baseline of isolated tissues, Tfg.Cr was devoid of any activity (stimulant or relaxant) till 10 mg/ml. This is an interesting finding, keeping in mind that the fenugreek seeds are used to alleviate constipation and diarrhoea. When Tfg.Cr was tried for any potential AChE inhibitory activity, it did show an inhibitory effect in increasing concentrations (47-380 microg/ml). This inhibitory effect was comparable to the effect produced by a standard AChE inhibitor physostigmine. One of the known fenugreek constituents, diosgenin, was also tested, and it also showed an AChE inhibitory effect in a concentration-dependent manner (11-190 microg/ml). Interaction between diosgenin and AChE was further investigated by molecular docking and molecular dynamics simulations for 100 ns, which showed that diosgenin interacted with the active-site gorge of AChE through hydrophobic, pi-pi stacking, and hydrogen bonds with various amino acids of the AChE enzyme. CONCLUSION: The results show that the fenugreek extract does not possess any GI stimulant or relaxant activity even though it is used traditionally in GI motility disorders. The extract and diosgenin could inhibit the AChE enzyme pointing towards their benefit to enhance the memory.

PubMedSearch : Ghayur_2022_Biomed.Res.Int_2022_4849464
PubMedID: 35425837

Related information

Citations formats

Ghayur MN, Abdalla M, Khalid A, Ahmad S, Gilani AH (2022)
Trigonella foenum-graecum Methanolic Extract on Isolated Smooth Muscles and Acetylcholinesterase Enzyme: An In Vitro and Mechanistic In Silico Investigation
Biomed Res Int 2022 :4849464

Ghayur MN, Abdalla M, Khalid A, Ahmad S, Gilani AH (2022)
Biomed Res Int 2022 :4849464