Natural Products Screening for the Identification of Selective Monoamine Oxidase-B Inhibitors
Najla O. Zarmouh, Samia S. Messeha, Faisel M. Elshami, Karam F. A. Soliman
European Journal of Medicinal Plants · pp. 1–16 · Published 27 May 2016
10.9734/EJMP/2016/26453Abstract
Aims: Monoamine oxidase-B inhibitors (MAO-BIs) are used for the initial therapy of Parkinson’s disease. Also, MAO-BIs have shown to be effective neuroprotective agents in several neurodegenerative diseases. However, some concerns exist regarding the long-term use of these compounds. Meanwhile, natural compounds showed potential MAO-B selective inhibitions. To date, few selective natural MAO-BIs have been identified. Therefore, the current study is designed to identify plants with potent and specific MAO-B inhibition. Study Design: In this work, we utilized high throughput screening to evaluate the different plants ethanolic extract for their effectiveness to inhibit recombinant human (h)MAO-A and hMAO-B and to determine the relative selectivity of the top MAO-BI. Methodology: Recombinant human isozymes were verified by Western blotting, and the 155 plants were screened. A continuous fluorometric screening assay was performed followed by two separate hMAO-A and hMAO-B microtiter screenings and IC50 determinations for the top extracts. Results: In the screened plants, 9% of the extracts showed more than 1.5-fold relative inhibition of hMAO-B (RIB) and another 9% showed more than 1.5-fold relative inhibition of hMAO-A. The top extracts with the most potent RIBs were Psoralea corylifolia seeds, Phellodendron amurense bark, Glycyrrhiza uralensis roots, and Ferula assafoetida roots, with the highest RIB of 5.9-fold. Furthermore, extensive maceration of the promising extracts led to increase inhibitory effects with a preserved RIB as confirmed with luminescence assay. The top four extracts hMAO-BIs were equally potent (IC50= 1.3 to 3.8 μg/mL) with highly significant relative selectivities to inhibit hMAO-B (4.1- to 13.4-fold). Conclusion: The obtained results indicate that Psoralea corylifolia seeds, Ferula assafoetida, Glycyrrhiza uralensis roots, and Phellodendron amurense ethanolic extracts have selective inhibitions for human MAO-B. Investigating these plant extracts as natural resources for novel selective MAO-BIs may lead to the development of molecules that can be used in the therapeutic management of neurodegenerative diseases including Parkinson’s disease.
Cited by 10
Stambolov I, Shkondrov A, Vusheva L · Int J Mol Sci · 2026
Tripathi PN, Lodhi A, Rai SN · Degener Neurol Neuromuscul Dis · 2024
Das G, Das S, Talukdar AD · Comb Chem High Throughput Screen · 2023
Rendić SP, Crouch RD, Guengerich FP. · Arch Toxicol · 2022
Wang W, Voss KM, Liu J · Chem Res Toxicol · 2021
Singla RK, Agarwal T, He X · Curr Drug Targets · 2021
Mortazavi Moghaddam SG, Kianmehr M, Khazdair MR. · Evid Based Complement Alternat Med · 2020
Rea J, García-Giménez MD, Santiago M · Int J Food Sci Nutr · 2021
Khazdair MR, Anaeigoudari A, Hashemzehi M · J Tradit Complement Med · 2019
Zarmouh NO, Eyunni SK, Soliman KF. · BMC Complement Altern Med · 2017
Related research
- Proposal and Point of View on Targeting α-synuclein for the Treatment of Parkinson's Disease — shares topic coverage
- Non-linear Analysis of Heart Rate Variability Improves Differential Diagnosis between Parkinson Disease and Multiple System Atrophy — shares topic coverage
- Evaluation of Antiparkinson Activity of Vitamin C, Tizanidine and Pregabalin against Haloperidol Induced Parkinsonism in Rats — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
10
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.