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The inhibitory effects of isolated constituents from Plantago major subsp. major L. on collagenase, elastase and hyaluronidase enzymes: Potential wound healer

Authors :
Yasin Genc
Fatma Tugce Guragac Dereli
Iclal Saracoglu
Esra Kupeli Akkol
Source :
Saudi Pharmaceutical Journal, Vol 28, Iss 1, Pp 101-106 (2020)
Publication Year :
2020
Publisher :
Elsevier, 2020.

Abstract

Plantago major L. which is a medicinal plant with important biological activities, commonly used as traditional medicine. Potential inhibitory activities of the aqueous extract and three isolated constituents calceorioside B (1), homoplantaginin (hispidulin-7-O-glucoside) (2) and plantamajoside (3) from the aerial parts of Plantago major subsp. major L. (Plantaginaceae) have been tested against hyaluronidase, collagenase, and elastase, which play critical roles in wound pathogenesis. Even though, the extract (27.04%), and among the isolated compounds, calceorioside B (41.16%) exerted significant inhibition against hyaluronidase enzyme, homoplantaginin and plantamajoside were found to be inactive. Similar results were obtained from collagenase enzyme inhibition test. The extract (21.92%) and calceorioside B (28.34%) also caused notable inhibition in this test. However, no remarkable inhibition was observed in the presence of elastase enzyme. The experimental data revealed that P. major subsp. major displayed remarkable inhibitory activity against hyaluronidase and collagenase enzymes. In vitro enzyme activity of P. major subsp. major is reported for the first time in the current study. Keywords: Collagenase, Elastase, Enzyme inhibition, Hyaluronidase, In vitro, Plantago major, Plantaginaceae

Subjects

Subjects :
Therapeutics. Pharmacology
RM1-950

Details

Language :
English
ISSN :
13190164
Volume :
28
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Saudi Pharmaceutical Journal
Publication Type :
Academic Journal
Accession number :
edsdoj.f3277eb58a64f3b9256a1443a5fde86
Document Type :
article
Full Text :
https://doi.org/10.1016/j.jsps.2019.11.011