» Articles » PMID: 18570217

Antibacterial Terpenes from the Oleo-resin of Commiphora Molmol (Engl.)

Overview
Journal Phytother Res
Publisher Wiley
Date 2008 Jun 24
PMID 18570217
Citations 18
Authors
Affiliations
Soon will be listed here.
Abstract

Two octanordammaranes, mansumbinone (1) and 3,4-seco-mansumbinoic acid (2), and two sesquiterpenes, beta-elemene (3) and T-cadinol (4) have been isolated from the oleo-resin of Commiphora molmol (Engl.). The structures of these compounds were established unambiguously by a series of 1D and 2D-NMR analyses. We have also unambiguously assigned all (1)H and (13)C NMR resonances for 2 and revised its (13)C data. The crude extract of the oleo-resin of C. molmol displayed potentiation of ciprofloxacin and tetracycline against S. aureus, several Salmonella enterica serovar Typhimurium strains and two K. pneumoniae strains. The antibacterial activity of terpenes 1-4 was determined against a number of Staphylococcus aureus strains: SA1199B, ATCC25923, XU212, RN4220 and EMRSA15 and minimum inhibitory concentration (MIC) values were found to be in the range of 4-256 microg/ml. The highest activity was observed by the seco-A-ring octanordammarane 2 with an MIC of 4 microg/ml against SA1199B, a multidrug-resistant strain which over-expresses the NorA efflux transporter, the major characterized antibiotic pump in this species. This activity compared favorably to the antibiotic norfloxacin with an MIC of 32 microg/ml. Compound 2 also displayed weak potentiation of ciprofloxacin and tetracycline activity against strains of Salmonella enterica serovar Typhimurium SL1344 and L10.

Citing Articles

The Genus Commiphora: An Overview of Its Traditional Uses, Phytochemistry, Pharmacology, and Quality Control.

Yang Y, Sun X, Peng C, Wei J, Yang X Pharmaceuticals (Basel). 2024; 17(11).

PMID: 39598434 PMC: 11597752. DOI: 10.3390/ph17111524.


An Unprecedented 4,8-Cycloeudesmane, Further New Sesquiterpenoids, a Triterpene, Steroids, and a Lignan from the Resin of and Their Anti-Inflammatory Activity In Vitro.

Unterholzner A, Kuck K, Weinzierl A, Lipowicz B, Heilmann J Molecules. 2024; 29(18).

PMID: 39339310 PMC: 11434423. DOI: 10.3390/molecules29184315.


Terpenoids from Myrrh and Their Cytotoxic Activity against HeLa Cells.

Kuck K, Unterholzner A, Lipowicz B, Schwindl S, Jurgenliemk G, Schmidt T Molecules. 2023; 28(4).

PMID: 36838624 PMC: 9964945. DOI: 10.3390/molecules28041637.


The Role of Myrrh Metabolites in Cancer, Inflammation, and Wound Healing: Prospects for a Multi-Targeted Drug Therapy.

Suliman R, Alghamdi S, Ali R, Aljatli D, Aljammaz N, Huwaizi S Pharmaceuticals (Basel). 2022; 15(8).

PMID: 36015092 PMC: 9416713. DOI: 10.3390/ph15080944.


Efficacy of myrrh mouthwash on early wound healing after tooth extraction: A randomized controlled trial.

Eid R Saudi Dent J. 2021; 33(1):44-54.

PMID: 33473242 PMC: 7801243. DOI: 10.1016/j.sdentj.2019.11.011.