Ftir spectral changes in candida albicans biofilm following exposure to antifungals

Candida albicans is a microbial fungus that exists as a commensal member of the human microbiome and an opportunistic pathogen. Biofilm formation by this fungal pathogen occurs mostly in the mucosa or endothelium associated with candidiasis and colonizes medical devices. The present work was perform...

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Main Authors: Kamaruzzaman, Alya Nur Athirah, Mulok, Tengku Elida Tengku Zainal, Nor, Nurul Hidayah Mohamad, Yahya, Mohd Fakharul Zaman Raja
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Published: 2022
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Online Access:http://eprints.um.edu.my/43850/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85140983289&doi=10.55230%2fmabjournal.v51i4.11&partnerID=40&md5=012c387ddb06c6e96fe5be87aaf2ef16
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spelling my.um.eprints.438502024-11-18T04:49:49Z http://eprints.um.edu.my/43850/ Ftir spectral changes in candida albicans biofilm following exposure to antifungals Kamaruzzaman, Alya Nur Athirah Mulok, Tengku Elida Tengku Zainal Nor, Nurul Hidayah Mohamad Yahya, Mohd Fakharul Zaman Raja Q Science (General) QC Physics Candida albicans is a microbial fungus that exists as a commensal member of the human microbiome and an opportunistic pathogen. Biofilm formation by this fungal pathogen occurs mostly in the mucosa or endothelium associated with candidiasis and colonizes medical devices. The present work was performed to determine the efficacy of the antifungal creams on the viability and biochemical composition of C. albicans biofilm. Four commercial antifungal creams were used herein namely econazole nitrate, miconazole nitrate, ketoconazole and tolnaftate. Resazurin assay and Fourier transform infrared (FTIR) spectroscopy were performed to determine the viability and biochemical composition of C. albicans biofilm, respectively. Results demonstrated that the antifungal creams inhibited C. albicans biofilm. The highest percent inhibition shown by econazole nitrate, miconazole nitrate, ketoconazole, and tolnaftate were 16.5, 17.1, 15.8, and 6.9, respectively. Econazole nitrate with the lowest IC50 value of 43.42 µg/mL caused changes in the FTIR spectral peak shape at 1377 cm-1 and 1736 cm-1. On the other hand, miconazole nitrate with the second lowest IC50 value of 118.26 µg/mL caused spectral peak shifting from 1237 cm-1 to 1228 cm-1. In conclusion, the inhibition of C. albicans biofilm may be mediated by the changes in protein, lipid, and nucleic acid compositions. © 2022, Malaysian Society of Applied Biology. All rights reserved. 2022 Article PeerReviewed Kamaruzzaman, Alya Nur Athirah and Mulok, Tengku Elida Tengku Zainal and Nor, Nurul Hidayah Mohamad and Yahya, Mohd Fakharul Zaman Raja (2022) Ftir spectral changes in candida albicans biofilm following exposure to antifungals. Malaysian Applied Biology, 51 (4). 57 – 66. ISSN 0126-8643, DOI https://doi.org/10.55230/mabjournal.v51i4.11 <https://doi.org/10.55230/mabjournal.v51i4.11>. https://www.scopus.com/inward/record.uri?eid=2-s2.0-85140983289&doi=10.55230%2fmabjournal.v51i4.11&partnerID=40&md5=012c387ddb06c6e96fe5be87aaf2ef16 10.55230/mabjournal.v51i4.11
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic Q Science (General)
QC Physics
spellingShingle Q Science (General)
QC Physics
Kamaruzzaman, Alya Nur Athirah
Mulok, Tengku Elida Tengku Zainal
Nor, Nurul Hidayah Mohamad
Yahya, Mohd Fakharul Zaman Raja
Ftir spectral changes in candida albicans biofilm following exposure to antifungals
description Candida albicans is a microbial fungus that exists as a commensal member of the human microbiome and an opportunistic pathogen. Biofilm formation by this fungal pathogen occurs mostly in the mucosa or endothelium associated with candidiasis and colonizes medical devices. The present work was performed to determine the efficacy of the antifungal creams on the viability and biochemical composition of C. albicans biofilm. Four commercial antifungal creams were used herein namely econazole nitrate, miconazole nitrate, ketoconazole and tolnaftate. Resazurin assay and Fourier transform infrared (FTIR) spectroscopy were performed to determine the viability and biochemical composition of C. albicans biofilm, respectively. Results demonstrated that the antifungal creams inhibited C. albicans biofilm. The highest percent inhibition shown by econazole nitrate, miconazole nitrate, ketoconazole, and tolnaftate were 16.5, 17.1, 15.8, and 6.9, respectively. Econazole nitrate with the lowest IC50 value of 43.42 µg/mL caused changes in the FTIR spectral peak shape at 1377 cm-1 and 1736 cm-1. On the other hand, miconazole nitrate with the second lowest IC50 value of 118.26 µg/mL caused spectral peak shifting from 1237 cm-1 to 1228 cm-1. In conclusion, the inhibition of C. albicans biofilm may be mediated by the changes in protein, lipid, and nucleic acid compositions. © 2022, Malaysian Society of Applied Biology. All rights reserved.
format Article
author Kamaruzzaman, Alya Nur Athirah
Mulok, Tengku Elida Tengku Zainal
Nor, Nurul Hidayah Mohamad
Yahya, Mohd Fakharul Zaman Raja
author_facet Kamaruzzaman, Alya Nur Athirah
Mulok, Tengku Elida Tengku Zainal
Nor, Nurul Hidayah Mohamad
Yahya, Mohd Fakharul Zaman Raja
author_sort Kamaruzzaman, Alya Nur Athirah
title Ftir spectral changes in candida albicans biofilm following exposure to antifungals
title_short Ftir spectral changes in candida albicans biofilm following exposure to antifungals
title_full Ftir spectral changes in candida albicans biofilm following exposure to antifungals
title_fullStr Ftir spectral changes in candida albicans biofilm following exposure to antifungals
title_full_unstemmed Ftir spectral changes in candida albicans biofilm following exposure to antifungals
title_sort ftir spectral changes in candida albicans biofilm following exposure to antifungals
publishDate 2022
url http://eprints.um.edu.my/43850/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85140983289&doi=10.55230%2fmabjournal.v51i4.11&partnerID=40&md5=012c387ddb06c6e96fe5be87aaf2ef16
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