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  • Study of the antifungal potential of novel cellulose/copper composites as absorbent materials for fruit juices.

Study of the antifungal potential of novel cellulose/copper composites as absorbent materials for fruit juices.

International journal of food microbiology (2012-07-28)
Amparo Llorens, Elsa Lloret, Pierre Picouet, Avelina Fernandez
ABSTRACT

Cellulose/copper composites with antifungal properties have been synthesized by physical/chemical methods. Physical treatments by heat or by a combination of heat and UV radiation provided composites with metallic copper and excellent interfacial adhesion; in contrast, chemical reduction with borohydride generated small although partially aggregated copper oxide nanoparticles. Copper micro/nano-particles and copper ions (Cu(2+)) were released from the cellulose matrix at an adequate rate to achieve a strong antimicrobial activity against Saccharomyces cerevisiae in in vitro experiments. Moreover, the copper oxide composites showed an excellent antifungal activity in pineapple and melon juice, reducing about 4 log cycles the loads of spoilage-related yeasts and moulds. The metallic copper composites reduced in 4 log cycles the load of yeasts and moulds in pineapple juice, although their antifungal activity was weaker in contact with melon juice. Copper loaded absorbent materials could be selectively implemented during the shelf-life of minimally processed fruits to reduce the number of spoilage-related microorganisms in the drip.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Copper(I) oxide, ≥99.99% trace metals basis, anhydrous
Sigma-Aldrich
Copper(I) oxide, powder, ≤7 μm, 97%