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Synergistic antifungal effect of naturally-derived antimicrobials with penetration enhancer against Candida albicans biofilm at 5 °C and 22 °C
- Ko, Byung Soo;
- Park, Seon Gyeong;
- Rhee, Min Suk
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1초록
Background: Biofilms of fungi such as Candida albicans (C. albicans) can survive even at cold temperatures and are generally difficult to eradicate with well-known antimicrobials. The aim of this study was to develop a novel synergistic technique against C. albicans biofilms using low concentrations of propylene glycol (PG), as a penetration enhancer. It helps naturally-derived antimicrobials [caprylic acid (CA) and carvacrol (CAR)] permeate C. albicans biofilms and cell membranes within short times even in cold environments. Methods: C. albicans biofilms formed on stainless steel coupons were treated with antifungal complexes (PG, CA and CAR at 0.6-1.2 mM) for 1 or 5 min at 5 and 22 degrees C. PG was selected as the highest fungicidal efficacy, as well as its odourless, colourless nature and excellent solubility compared to other penetration enhancers (isopropyl citrate, laurocapram). To visualize cell damage by antifungal complex, treated biofilms at 5 degrees C and 22 degrees C were examined using the confocal microscopy and field emission scanning electron microscopy. Results: Each substance (PG, CA, CAR), when applied alone to C. albicans biofilms for 5 min, showed less than 0.50 log reduction at both 5 and 22 degrees C. C. albicans biofilm was completely eradicated by PG + CA + CAR (all 1.2 mM) after 5 min at 5 and 22 degrees C (> 6.20 log reduction), but treatment mixtures without PG were incompletely eliminated after 1 min at 5 degrees C (1.75 log reduction) and 22 degrees C (3.75 log reduction). Based on the visualization of biofilms, PG + CA + CAR (all 1.2 mM) resulted in remarkable membrane disruption and cell detachment from stainless steel coupons in contrast to the other treatment conditions. Conclusion: This study indicates that trace amounts of developed antifungal complex could be an effective way to inactivate fungal biofilms on the surfaces of the medical and healthcare field even at cold temperatures. (c) 2025 The Authors. Published by Elsevier Ltd on behalf of King Saud Bin Abdulaziz University for Health Sciences. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/ 4.0/).
키워드
- 제목
- Synergistic antifungal effect of naturally-derived antimicrobials with penetration enhancer against Candida albicans biofilm at 5 °C and 22 °C
- 저자
- Ko, Byung Soo; Park, Seon Gyeong; Rhee, Min Suk
- 발행일
- 2025-10
- 유형
- Article
- 권
- 18
- 호
- 10