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1.
Int J Food Microbiol ; 335: 108890, 2020 Dec 16.
Artigo em Inglês | MEDLINE | ID: mdl-32971300

RESUMO

The bioactivity of essential oils applied in foods to act as natural preservatives can be reduced due to interactions with other components of the food matrix. Microencapsulation can help to increase the functionality of these compounds. In addition, the electrostatic interaction between proteins and polysaccharides can result in double-layered encapsulating structures, ensuring greater protection to essential oils than using only protein as surface active agent. In this work, pink pepper essential oil was microencapsulated by spray drying of single-layer emulsions, stabilized by soy protein isolate (SPI), and of double-layer emulsions, stabilized by soy protein isolate/high methoxyl pectin (SPI/HMP). Pink pepper essential oil showed predominance of α-pinene, ß-pinene, ß-mircene, δ-3-carene, d-limonene, and germacrene D. Compared to SPI microcapsules, SPI/HMP microcapsules better preserved the total volatile content identified in pure oil, showed less water adsorption during storage at relative humidity ≥75% and improved antimicrobial properties. When stored for 20 days (25 °C/RH = 52.8%), both microcapsules allowed more gradual release of volatiles compared with non-encapsulated oil. Microencapsulation by spray drying did not have negative effects on the antioxidant activity of the encapsulated oil, as the microcapsules showed similar results to the non-encapsulated oil, around 11 µg Trolox/mg of oil. After storage, however, the non-encapsulated oil showed greater losses of its antioxidant activity due to higher rates of volatile release. In the in vitro antimicrobial activity assay, both microcapsules inhibited growth of Staphylococcus aureus, Bacillus subtilis, Listeria monocytogenes and Listeria innocua, although no inhibition was observed against Gram-negative bacteria. When added in milk, both microcapsules reduced bacterial growth, whereas non-encapsulated oil showed no satisfactory inhibition. Faster reduction of microbial growth in milk was observed for SPI/HMP microcapsules. Inhibition results were better for skim milk than for whole milk, suggesting that the interaction of essential oil with other lipids present in milk decreased its bioactivity. Microencapsulation positively affected the functionality of pink pepper essential oil, highlighting its potential for application as a natural preservative in food products.


Assuntos
Anacardiaceae/química , Antibacterianos/química , Conservantes de Alimentos/química , Óleos Voláteis/química , Antibacterianos/farmacologia , Cápsulas/química , Cápsulas/farmacologia , Dessecação , Emulsões/química , Emulsões/farmacologia , Conservantes de Alimentos/farmacologia , Bactérias Gram-Positivas/efeitos dos fármacos , Bactérias Gram-Positivas/crescimento & desenvolvimento , Óleos Voláteis/farmacologia , Pectinas/química , Proteínas de Soja/química , Terebintina/química , Terebintina/farmacologia
2.
Rev. Inst. Adolfo Lutz ; 70(4): 480-483, out.-dez. 2011. tab
Artigo em Inglês | LILACS, SES-SP, SESSP-CTDPROD, SES-SP, SESSP-ACVSES, SESSP-IALPROD, SES-SP, SESSP-IALACERVO | ID: lil-672305

RESUMO

Creamy dulce de leche is a product made from concentrated milk by heating, and adding sucrose. Ambrosia is a variety of dulce de leche prepared by adding eggs and sugar in to milk. Aiming at identifying the genera of filamentous fungi isolated from creamy dulce de leche and ambrosia, 40 ambrosia and 20 creamy dulce deleche samples were analyzed in the present study. Filamentous fungi and yeast counts and the identification of genera of the isolated filamentous fungi were performed. Thirty-nine samples (65 per cent) showed filamentous fungi and yeast counts that exceeded the accep table limits. Six fungus genera were identified, and amongthem the Penicillium was the most frequent. These findings are a warning of the requirement for strict control on good manufacturing practices as well as on the inspection and monitoring of ambrosia andcreamy dulce de leche trading.


Assuntos
Doces , Fungos , Leite
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