Author:
Anand Sushil,Deighton Margaret,Livanos George,Pang Edwin Chi Kyong,Mantri Nitin
Abstract
AbstractThere is an urgent need for new effective antifungal agents suitable for the treatment of superficial skin infections, since acquired resistance of fungi to currently available agents is increasing. The antifungal activity of mono-floral Agastache honey and commercially available honeys were tested against dermatophytes (T. mentagrophytes and T. rubrum) and C. albicans (ATCC 10231 and a clinical isolate) by agar well diffusion and micro-dilution (AWD and MD). In AWD and MD assays, Agastache honey was effective at 40% concentration against dermatophytes (zone diameter, 19.5–20 mm) and C. albicans with the same MIC and MFC values indicating fungicidal activity. Tea tree honey was effective at 80% concentration (zone diameter, 14 mm) against dermatophytes and at 40% concentration against T. mentagrophytes and C. albicans. Manuka was effective at 80% concentration only against T. mentagrophytes (zone diameter, 12 mm) and at 40% against T. rubrum and C. albicans with fungistatic activity. Similar to the AWD results, Jelly bush, Super Manuka, and Jarrah showed no activity against dermatophytes but showed some activity against C. albicans. Headspace volatiles of six honeys were isolated by SPME and identified by GC-MS. The characteristic chemical markers for each honey were as follows: Agastache- Phenol, 2,4-bis(1,1-dimethylethyl) and Estragole; Manuka and Tea-tree- Acetanisole and Methyl 3,5-dimethoxybenzoate; Jelly bush- Linalool and Nonanal; Super Manuka- Methyl 3,5-dimethoxybenzoate and Nonanal; Jarrah- Isophorone and Nonanoic acid. Overall, analysis of the bioactive compound content and antifungal activity of Agastache honey indicated possible use as an antifungal agent for management of superficial fungal infections.
Publisher
Springer Science and Business Media LLC
Reference72 articles.
1. Sojka, M., Valachova, I., Bucekova, M. & Majtan, J. Antibiofilm efficacy of honey and bee-derived defensin-1 on multispecies wound biofilm. J. Med. Microbiol. https://doi.org/10.1099/jmm.0.000227 (2016).
2. Chakraborti, T., Barman, S. & Mandal, N. C. Original Research Article Evaluation of antibacterial potential of some Indian honey samples against throat and skin infective pathogens. 3, 362–369 (2014).
3. Anand, S., Pang, E., Livanos, G. & Mantri, N. Characterization of physico-chemical properties and antioxidant capacities of bioactive honey produced from australian grown agastache rugosa and its correlation with colour and poly-phenol content. Molecules 23 (2018).
4. Sell, S. A. et al. A preliminary study on the potential of manuka honey and platelet-rich plasma in wound healing. Int. J. Biomater. https://doi.org/10.1155/2012/313781 (2012).
5. Lund-Nielsen, B. et al. The effect of honey-coated bandages compared with silver-coated bandages on treatment of malignant wounds-a randomized study. Wound Repair Regen. https://doi.org/10.1111/j.1524-475X.2011.00735.x (2011).
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