Species-Dependent Antifungal Profiles of Chitosan and Sulphated Polysaccharide-Rich Extract from Jania pedunculata var. adhaerens

Yeast infections are becoming an increasing public health concern, mainly due to the spread of opportunistic species and the emergence of strains resistant to commonly used antifungal drugs. Marine resources are a promising source of bioactive compounds, including polysaccharides and other biopolymers with potential antifungal applications. In this study, a sulphated polysaccharide-rich extract was obtained from the red alga Jania pedunculata var. adhaerens and chemically characterized. Its antifungal activity was compared with that of a commercial chitosan formulation against clinically relevant yeasts, including species of Candida, Cryptococcus, Clavispora, Naganishia and Trichosporon. Growth kinetics were monitored in liquid medium over 24 h, and antifungal activity was evaluated through growth rate analysis, growth inhibition at 20 h and susceptibility clustering. The sulphated polysaccharide-rich extract showed moderate but consistent growth inhibition, with the strongest effects observed at 5 mg mL−1. Maximum growth inhibition reached 60.9% in Cryptococcus deuterogattii and 59.8% in Candida albicans, although no complete inhibition was observed within the tested concentration range. Chitosan showed a stronger antifungal effect, with minimal inhibitory concentration (MIC) values between 10 and 20 µg mL−1 in several species and maximum inhibition values above 80% in the most susceptible yeasts. However, C. albicans showed marked resistance to chitosan, with inhibition below 12%. K-means clustering confirmed distinct susceptibility profiles between treatments, supporting a species-dependent response. Overall, these results highlight marine-derived biopolymers as promising antifungal candidates and show that chitosan and algal sulphated polysaccharides produce distinct, species-dependent antifungal profiles.

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Publication Details

Journal
Marine Drugs
Published
2026-08-24
DOI
https://doi.org/10.3390/md24090296
Primary Topic
Seaweed-derived Bioactive Compounds
Type
article
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article

Species-Dependent Antifungal Profiles of Chitosan and Sulphated Polysaccharide-Rich Extract from Jania pedunculata var. adhaerens

Marc Terradas, Federico Lopez‐Moya, María Francisca Colom, Miguel Valverde-Urrea et al.
Marine Drugs
Seaweed-derived Bioactive Compounds
article

Species-Dependent Antifungal Profiles of Chitosan and Sulphated Polysaccharide-Rich Extract from Jania pedunculata var. adhaerens

Marc Terradas, Federico Lopez‐Moya, María Francisca Colom, Miguel Valverde-Urrea, Jose Defez-Perez, Luis V. López-Llorca
article en

Abstract

Yeast infections are becoming an increasing public health concern, mainly due to the spread of opportunistic species and the emergence of strains resistant to commonly used antifungal drugs. Marine resources are a promising source of bioactive compounds, including polysaccharides and other biopolymers with potential antifungal applications. In this study, a sulphated polysaccharide-rich extract was obtained from the red alga Jania pedunculata var. adhaerens and chemically characterized. Its antifungal activity was compared with that of a commercial chitosan formulation against clinically relevant yeasts, including species of Candida, Cryptococcus, Clavispora, Naganishia and Trichosporon. Growth kinetics were monitored in liquid medium over 24 h, and antifungal activity was evaluated through growth rate analysis, growth inhibition at 20 h and susceptibility clustering. The sulphated polysaccharide-rich extract showed moderate but consistent growth inhibition, with the strongest effects observed at 5 mg mL−1. Maximum growth inhibition reached 60.9% in Cryptococcus deuterogattii and 59.8% in Candida albicans, although no complete inhibition was observed within the tested concentration range. Chitosan showed a stronger antifungal effect, with minimal inhibitory concentration (MIC) values between 10 and 20 µg mL−1 in several species and maximum inhibition values above 80% in the most susceptible yeasts. However, C. albicans showed marked resistance to chitosan, with inhibition below 12%. K-means clustering confirmed distinct susceptibility profiles between treatments, supporting a species-dependent response. Overall, these results highlight marine-derived biopolymers as promising antifungal candidates and show that chitosan and algal sulphated polysaccharides produce distinct, species-dependent antifungal profiles.

Marine DrugsVol. 24(9)
Universitat de Miguel Hernández d'Elx (ES), University of Alicante (ES)
Life below water
Openalex Percentile: Top 6%
Seaweed-derived Bioactive Compounds
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