4.6 Article

Hydrocolloids from the Mushroom Auricularia heimuer: Composition and Properties

Journal

JOURNAL OF FUNGI
Volume 9, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/jof9060681

Keywords

Auricularia heimuer; extract; hydrocolloids; polysaccharides; composition; stability; moisture retention; sustainable production

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This study focused on the composition, properties and potential use of a gel-forming extract from Auricularia heimuer. The extract contained soluble homo- and heteropolysaccharides, minerals, fatty acids, and amino acids. It exhibited thermal and storage stability, as well as a moisture retention capacity comparable to high molecular weight sodium hyaluronate. Hydrocolloids from Auricularia have great application potential in the food and cosmetic industries.
The ear- to shell-shaped fruiting bodies of the genus Auricularia are widely used as food and in traditional medicinal remedies. This study was primarily focused on the composition, properties and potential use of the gel-forming extract from Auricularia heimuer. The dried extract contained 50% soluble homo- and heteropolysaccharides, which were mainly composed of mannose and glucose, acetyl residues, glucuronic acid and a small amount of xylose, galactose, glucosamine, fucose, arabinose and rhamnose. The minerals observed in the extract included approximately 70% potassium followed by calcium. Among the fatty and amino acids, 60% unsaturated fatty acids and 35% essential amino acids could be calculated. At both acidic (pH 4) and alkaline (pH 10) conditions, the thickness of the 5 mg/mL extract did not change in a temperature range from -24 & DEG;C to room temperature, but decreased statistically significantly after storage at elevated temperature. At neutral pH, the studied extract demonstrated good thermal and storage stability, as well as a moisture retention capacity comparable to the high molecular weight sodium hyaluronate, a well-known moisturizer. Hydrocolloids that can be sustainably produced from Auricularia fruiting bodies offer great application potential in the food and cosmetic industries.

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