Original ArticleAsian Journal of Biological and Life SciencesVol. 9 | Issue 4 | pp. 143–148Open access
The Growth Inhibitory Activity of Tasmannia lanceolata (Poir.) A.C. Sm against the Food-poisoning Pathogen Yersinia enterocolitica
- 1,
- 2*,
- 1,
- 1,
- 1,3*
- 1 School of Environment and Science, Griffith University, Brisbane, Queensland, AUSTRALIA.
- 2 Department of Research and Development, First Choice College, Gold Coast, Queensland, AUSTRALIA.
- 3 Environmental Futures Research Institute, Griffith University, Brisbane, Queensland, AUSTRALIA.
Published in Asian Journal of Biological and Life Sciences
Correspondence: Mitchell Henry Wright
Department of Research and Development, First Choice College, Gold Coast, Queensland, AUSTRALIA.
Email: mitchell@fcc.edu.au
- DOI:
- 10.5530/pc.2019.4.30.
How to cite
Aldosary, H., Wright, M. H., Lee, C. J., Greene, A. C., & Cock, I. E. The Growth Inhibitory Activity of Tasmannia lanceolata (Poir.) A.C. Sm against the Food-poisoning Pathogen Yersinia enterocolitica. Asian Journal of Biological and Life Sciences, 9(4), 143–148. https://doi.org/10.5530/pc.2019.4.30.
Abstract
Introduction: Yersinia enterocolitica is a major source of food poisoning via the consumption of contaminated meat products, causing acute gastroenteric yersiniosis. Tasmannia lanceolata has been widely documented for its antiseptic properties, repressing the growth of an extensive range of bacteria. Despite this, Tasmannia lanceolata has yet to be been tested for its inhibitory capacity against Y. enterocolitica. Methods: T. lanceolata leaf and berry extracts were prepared by maceration and growth inhibitory activity against a clinical strain of Y. enterocolitica was examined by disc diffusion assays. The MIC values of the extracts were determined to quantify and compare their relative efficacies. Toxicity was determined using an Artemia franciscana nauplii bioassay. Results: T. lanceolata leaf and berry extracts displayed potent growth inhibitory activity in the disc diffusion assay against Y. enterocolitica. The ethyl acetate and chloroform leaf extracts (MICs of 30 and 53 μg/mL respectively) and the hexane berry extract (MIC
= 34 μg/mL) were particularly potent growth inhibitors. The methanol and water extracts of both the berry and leaf, as well as the leaf ethyl acetate extract, also had strong growth inhibitory activity against Y. enterocolitica, albeit with a higher MIC values (250-300μg/mL). All other extracts had lower efficacy, although their MIC values also indicated good inhibitory activity (with the exception of the chloroform berry extract). When assessed for toxicity, all T. lanceolata extracts were non-toxic (LC50 values >1000 μg/mL) in the Artemia franciscana bioassay. Conclusion: The non-toxicity of the T. lanceolata berry and leaf extracts, combined with the potent inhibitory bioactivity observed against Y. enterocolitica, demonstrates their potential as therapeutic agents in the prevention and treatment of yersiniosis.
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Article metadata
| Title | The Growth Inhibitory Activity of Tasmannia lanceolata (Poir.) A.C. Sm against the Food-poisoning Pathogen Yersinia enterocolitica |
|---|---|
| Authors | Huda Aldosary; Mitchell Henry Wright; Cameron Jay Lee; Anthony Carlson Greene; Ian Edwin Cock |
| Affiliations | School of Environment and Science, Griffith University, Brisbane, Queensland, AUSTRALIA.; Department of Research and Development, First Choice College, Gold Coast, Queensland, AUSTRALIA.; Environmental Futures Research Institute, Griffith University, Brisbane, Queensland, AUSTRALIA. |
| Corresponding author | mitchell@fcc.edu.au |
| Journal | Asian Journal of Biological and Life Sciences |
| Volume / Issue | Vol. 9, Issue 4 |
Also in this issue
- Editorialpp. 123–123
- Traditional Botanical Treatments for Mycosis Show Promise as Novel Agents for the Treatment of a Variety of Fungal Skin Pathologiespp. 149–151
- Upcoming Eventspp. 153–153
- Retraction Noticepp. 154–154
- Preliminary Evaluations of the Antibacterial Activity of Tasmannia lanceolata against Bacillus anthracis: Natural Resource Probing to Prevent Anthraxpp. 124–129
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