Author:
Wardani Agustin Krisna,Buana Efendi Oulan Gustav Hakim Nata,Sutrisno Aji
Abstract
AbstractBiofilm becomes one of the crucial food safety problems in the food industry as the formation of biofilm can be a source of contamination. To deal with the problem, an industry generally employs physical and chemical methods including sanitizers, disinfectants, and antimicrobials to remove biofilm. However, the use of these methods may bring about new problems, which are bacterial resistance in the biofilm and the risk for product contamination. New strategies to deal with bacterial biofilms are needed. Bacteriophages (phages), as a green alternative to chemical, have re-emerged as a promising approach to treat bacterial biofilm. In the present study, the potential of lytic phages which have antibiofilm activity on biofilm-forming bacteria (Bacillus subtilis), were isolated from chicken intestines and beef tripe obtained from Indonesian traditional markets using host cells obtained isolated from these samples. Phages isolation was conducted by using double layer agar technique. A lytic test of phages was administered on biofilm-forming bacteria. The difference of turbidity level between control (which were not infected by phages) and the test tubes containing host bacteria infected by phages was investigated. The infection time for the production of phages was determined based on the level of clarity of the media in the test tube with a longer lysate addition time. Three phages were isolated namely: ϕBS6, ϕBS8, and ϕUA7. It showed the ability to inhibit B. subtilis as biofilm-forming spoilage bacteria. The best inhibition results were obtained from ϕBS6. Infection with ϕBS6 in B. subtilis lead to 0.5 log cycle decreased in bacterial cells. This study showed that isolated phages might be used as a potential approach for handling the problem of biofilm formation by B. subtilis.
Funder
Directorate General of Higher Education, Ministry of National Education, Indonesia and Universitas Brawijaya
Publisher
Springer Science and Business Media LLC
Reference40 articles.
1. Bai, X., Nakatsu, C. H. & Bhunia, A. K. Bacterial biofilms and their implications in pathogenesis and food safety. Foods. 10(9), 1–26. https://doi.org/10.3390/foods10092117 (2021).
2. Koger, C. Biofilms bring safety challenges to food companies. Food Safety News. October 25 (2021). https://www.foodsafetynews.com/2021/10/__trashed-4/
3. Gutiérrez, D., Rodríguez-rubio, L., Martínez, B., Rodríguez, A. & García, P. Bacteriophages as weapons against bacterial biofilms in the food industry. Front Microbiol. 7, 1–15. https://doi.org/10.3389/fmicb.2016.00825 (2016).
4. Sadekuzzaman, M., Yang, S., Mizan, M. F. R. & Ha, S. D. Current and recent advanced strategies for combating biofilms. Compr. Rev. Food Sci. Food Saf. 14, 491–509. https://doi.org/10.1111/1541-4337.12144 (2015).
5. Epstein, A. K., Pokroy, B., Seminara, A. & Aizenberg, J. Bacterial biofilm shows persistent resistance to liquid wetting and gas penetration. PNAS 108(3), 995–1000. https://doi.org/10.1073/pnas.1011033108 (2011).