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Comparative Analysis of Freeze-Dried Mushroom Powders on Probiotic and Harmful Bacteria and Its Bioactive Compounds

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Journal J Fungi (Basel)
Date 2025 Jan 24
PMID 39852421
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Abstract

(oyster mushroom) holds excellent promise worldwide, bringing several opportunities and augmenting the tool sets used in the biotechnology field, the food industry, and medicine. Our study explores the antimicrobial and probiotic growth stimulation benefits of freeze-dried powders (OMP-TF, oyster mushroom powder from the total fresh sample; OMP-CSR, oyster mushroom powder from the cooked solid residue; OMP-CL, oyster mushroom powder from the cooked liquid), focusing on their bioactive compounds and associated activities. Our research examined polysaccharide fractions-specifically total glucans and α- and β-glucans-alongside secondary metabolites, including polyphenols and flavonoids, from freeze-dried mushroom powders. Additionally, carbon nanodots (CNDs) were also characterized. The growth inhibition was tested against and , while the capacity for stimulating probiotic growth was evaluated using and Evidence indicates that OMP-CL and OMP-CSR exhibit significant antimicrobial properties against Gram-positive bacteria. OMP-CL notably promoted the growth of . OMP-CL, containing the most significant number of CNDs, has shown to be a valuable source for gut microbiota modulation, with its antimicrobial and probiotic-stimulating efficacy. However, further in vitro and in vivo studies should be performed to explore CNDs and their behavior in different biological systems.

References
1.
Ahmad N, Mahmood F, Khalil S, Zamir R, Fazal H, Abbasi B . Antioxidant activity via DPPH, gram-positive and gram-negative antimicrobial potential in edible mushrooms. Toxicol Ind Health. 2012; 30(9):826-34. DOI: 10.1177/0748233712463775. View

2.
McCleary B, Draga A . Measurement of β-Glucan in Mushrooms and Mycelial Products. J AOAC Int. 2016; 99(2):364-73. DOI: 10.5740/jaoacint.15-0289. View

3.
Hassan R, Shafi M, Attia K, Assar M . Influence of Oyster Mushroom Waste on Growth Performance, Immunity and Intestinal Morphology Compared With Antibiotics in Broiler Chickens. Front Vet Sci. 2020; 7:333. PMC: 7300226. DOI: 10.3389/fvets.2020.00333. View

4.
Alves M, Ferreira I, Dias J, Teixeira V, Martins A, Pintado M . A review on antimicrobial activity of mushroom (Basidiomycetes) extracts and isolated compounds. Planta Med. 2012; 78(16):1707-18. DOI: 10.1055/s-0032-1315370. View

5.
Park S, Lee H, Park E, Lee S, Lee J, Jeong S . Photoluminescent green carbon nanodots from food-waste-derived sources: large-scale synthesis, properties, and biomedical applications. ACS Appl Mater Interfaces. 2014; 6(5):3365-70. DOI: 10.1021/am500159p. View