Food Packaging
Soghra Valizadeh; Mehdi Sedaghatiyan; Farnaz Farahmandi; Sevda Ghaem Maghami
Abstract
Meat and meat products are highly susceptible to microbial spoilage and lipid oxidation, leading to rapid deterioration in quality and shortened shelf life. The growing concerns regarding synthetic preservatives have increased the interest in natural biodegradable alternatives. Whey protein isolate (WPI), ...
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Meat and meat products are highly susceptible to microbial spoilage and lipid oxidation, leading to rapid deterioration in quality and shortened shelf life. The growing concerns regarding synthetic preservatives have increased the interest in natural biodegradable alternatives. Whey protein isolate (WPI), a dairy by-product, offers excellent film-forming ability and oxygen barrier properties, making it a promising matrix for active edible coatings and films. This systematic review, conducted according to Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines, included a comprehensive literature search that was performed on Scopus and PubMed databases for original English-language articles published between 2010 and 2025. Eight original studies met the strict inclusion criteria, reporting the application of WPI or whey protein concentrate (WPC) films/coatings containing plant essential oils (EOs) or extracts to meat or meat products during storage. Gas chromatography–mass spectrometry (GC-MS) analyses consistently identified phenolic monoterpenes (thymol, carvacrol, and eugenol) and diterpenes (carnosic acid and rosmarinic acid) as the primary bioactive compounds. Whey protein-EO systems reduced total viable counts by 1–5 log10 CFU/g and lipid oxidation markers (thiobarbituric acid reactive substances and peroxide value) by 30–60% compared to controls. Thyme and Trachyspermum copticum EOs exhibited the strongest antimicrobial activity, whereas rosemary and laurel provided superior antioxidant protection. Nanoencapsulated and Pickering emulsion formulations consistently outperformed free EOs through sustained release. Whey protein–plant bioactive composites effectively extend the shelf life of meat and meat products through dual antimicrobial and antioxidant mechanisms, representing sustainable and clean-label solutions that support product safety and circular economy principles by valorizing dairy and plant by-products.
Food Safety
Soghra Valizadeh; Farzad Katiraee; Hamed Behniafar
Abstract
Plant-derived compounds possess robust antioxidant capabilities and exhibit notable antimicrobial activities against diverse pathogens. This study investigated the antioxidant activities of methanolic and aqueous extracts of Satureja hortensis (S. hortensis) and Cinnamomum zeylanicum (C. zeylanicum). ...
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Plant-derived compounds possess robust antioxidant capabilities and exhibit notable antimicrobial activities against diverse pathogens. This study investigated the antioxidant activities of methanolic and aqueous extracts of Satureja hortensis (S. hortensis) and Cinnamomum zeylanicum (C. zeylanicum). The minimal inhibitory concentration (MIC) and minimal fungicidal concentration (MFC) of the extracts were also evaluated. The antifungal activity of methanolic extract of S. hortensis (MIC 1.25 mg/mL) was higher than that of the aqueous extract (MIC 5 mg/mL) on P. chrysogenum. For Candida species, especially C. albicans, MIC and MFC of methanolic extract were lower (MIC 0.31 mg/mL, MFC 1.25 mg/mL) than aqueous extract. The methanolic extract of C. zeylanicum exhibited a MIC of 0.31 mg/mL and MFC of 0.62 mg/mL against P. chrysogenum, outperforming the aqueous extract (MIC 0.62 mg/mL, MFC 1.25 mg/mL). Similarly, methanolic extracts showed markedly lower MIC values than the aqueous extracts against Candida species. In antioxidant activity of methanolic and aqueous extracts of both plants, ABTS values were consistently higher than DPPH results, likely due to ABTS's broader sensitivity to hydrophilic and lipophilic antioxidants. In the DPPH assay, the methanolic extract of C. zeylanicum exhibited the highest antioxidant activity with a scavenging percentage of 89.16 ± 0.6%. In the ABTS method, the methanolic extract of C. zeylanicum exhibited highest antioxidant activity, with a scavenging percentage of 97.8 ± 0.1%. The results of this study indicate that S. hortensis and C. zeylanicum extracts are promising natural antifungals and antioxidants.