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1.
J Food Sci ; 76(2): M149-55, 2011 Mar.
Article in English | MEDLINE | ID: mdl-21535779

ABSTRACT

Fruit and vegetable skins have polyphenolic compounds, terpenes, and phenols with antimicrobial and antioxidant activity. These flavoring plant essential oil components are generally regarded as safe. Edible films made from fruits or vegetables containing apple skin polyphenols have the potential to be used commercially to protect food against contamination by pathogenic bacteria. The main objective of this study was to evaluate physical properties as well as antimicrobial activities against Listeria monocytogenes, Escherichia coli O157:H7, and Salmonella enterica of apple skin polyphenols at 0% to 10% (w/w) concentrations in apple puree film-forming solutions formulated into edible films. Commercial apple skin polyphenol powder had a water activity of 0.44 and high total soluble phenolic compounds and antioxidant capacity (995.3 mg chlorogenic acid/100 g and 14.4 mg Trolox/g, respectively). Antimicrobial activities of edible film containing apple skin polyphenols were determined by the overlay method. Apple edible film with apple skin polyphenols was highly effective against L. monocytogenes. The minimum concentration need to inactive L. monocytogenes was 1.5%. However, apple skin polyphenols did not show any antimicrobial effect against E. coli O157:H7 and S. enterica even at 10% level. The presence of apple skin polyphenols reduced water vapor permeability of films. Apple skin polyphenols increased elongation of films and darkened the color of films. The results of the present study show that apple skin polyphenols can be used to prepare apple-based antimicrobial edible films with good physical properties for food applications by direct contact.


Subject(s)
Anti-Bacterial Agents/pharmacology , Flavonoids/pharmacology , Fruit/chemistry , Malus/chemistry , Phenols/pharmacology , Plant Extracts/pharmacology , Anti-Bacterial Agents/chemistry , Antioxidants/pharmacology , Escherichia coli O157/drug effects , Escherichia coli O157/growth & development , Food Microbiology , Food Packaging , Listeria monocytogenes/drug effects , Listeria monocytogenes/growth & development , Microbial Sensitivity Tests , Permeability , Polyphenols , Salmonella enterica/drug effects , Salmonella enterica/growth & development , Tensile Strength , Viscosity
2.
J Food Sci ; 76(7): E519-24, 2011 Sep.
Article in English | MEDLINE | ID: mdl-22417551

ABSTRACT

The objective of this study was to evaluate the gelation, thermal, mechanical, and oxygen permeability properties of different mammalian, warm- and cold-water fish gelatin solutions and films. Mammalian gelatin solutions had the highest gel set temperatures, followed by warm-water fish and then cold-water fish gelatin solutions. These differences were related to concentrations of imino acids present in each gelatin, with mammalian gelatin having the highest and cold-water fish gelatin having the lowest concentrations. Mammalian and warm-water fish gelatin films contained helical structures, whereas cold-water fish gelatin films were amorphous. This was due to the films being dried at room temperature (23 °C), which was below or near the gelation temperatures of mammalian and warm-water fish gelatin solutions and well above the gelation temperature of cold-water fish gelatin solutions. Tensile strength, percent elongation, and puncture deformation were highest in mammalian gelatin films, followed by warm-water fish gelatin film and then by cold-water fish gelatin films. Oxygen permeability values of cold-water fish gelatin films were significantly lower than those for mammalian gelatin films. These differences were most likely due to higher moisture sorption in mammalian gelatin films, leading to higher oxygen diffusivity.


Subject(s)
Fishes , Food Packaging/instrumentation , Gelatin/chemistry , Oxygen/chemistry , Amino Acids/analysis , Animals , Calorimetry, Differential Scanning , Cattle , Chemical Phenomena , Gels/chemistry , Permeability , Swine , Tensile Strength
3.
J Food Sci ; 74(7): M372-8, 2009 Sep.
Article in English | MEDLINE | ID: mdl-19895483

ABSTRACT

Essential oils (EOs) derived from plants are rich sources of volatile terpenoids and phenolic compounds. Such compounds have the potential to inactivate pathogenic bacteria on contact and in the vapor phase. Edible films made from fruits or vegetables containing EOs can be used commercially to protect food against contamination by pathogenic bacteria. EOs from cinnamon, allspice, and clove bud plants are compatible with the sensory characteristics of apple-based edible films. These films could extend product shelf life and reduce risk of pathogen growth on food surfaces. This study evaluated physical properties (water vapor permeability, color, tensile properties) and antimicrobial activities against Escherichia coli O157:H7, Salmonella enterica, and Listeria monocytogenes of allspice, cinnamon, and clove bud oils in apple puree film-forming solutions formulated into edible films at 0.5% to 3% (w/w) concentrations. Antimicrobial activities were determined by 2 independent methods: overlay of the film on top of the bacteria and vapor phase diffusion of the antimicrobial from the film to the bacteria. The antimicrobial activities against the 3 pathogens were in the following order: cinnamon oil > clove bud oil > allspice oil. The antimicrobial films were more effective against L. monocytogenes than against the S. enterica. The oils reduced the viscosity of the apple solutions and increased elongation and darkened the colors of the films. They did not affect water vapor permeability. The results show that apple-based films with allspice, cinnamon, or clove bud oils were active against 3 foodborne pathogens by both direct contact with the bacteria and indirectly by vapors emanating from the films.


Subject(s)
Anti-Infective Agents/chemistry , Anti-Infective Agents/pharmacology , Food Preservatives/pharmacology , Fruit/chemistry , Malus/chemistry , Oils, Volatile/chemistry , Oils, Volatile/pharmacology , Clove Oil/chemistry , Clove Oil/pharmacology , Elasticity , Escherichia coli O157/drug effects , Food Microbiology , Food Packaging/instrumentation , Food Preservatives/chemistry , Listeria monocytogenes/drug effects , Microbial Sensitivity Tests , Permeability , Pigmentation , Pimenta/chemistry , Salmonella enterica/drug effects , Tensile Strength , Viscosity
4.
J Food Sci ; 74(7): M390-7, 2009 Sep.
Article in English | MEDLINE | ID: mdl-19895486

ABSTRACT

Physical properties as well as antimicrobial activities against Escherichia coli O157:H7, Salmonella enterica, and Listeria monocytogenes of allspice, garlic, and oregano essential oils (EOs) in tomato puree film-forming solutions (TPFFS) formulated into edible films at 0.5% to 3% (w/w) concentrations were investigated in this study. Antimicrobial activities were determined by 2 independent methods: overlay of the film on top of the bacteria and vapor-phase diffusion of the antimicrobial from the film to the bacteria. The results indicate that the antimicrobial activities against the 3 pathogens were in the following order: oregano oil > allspice oil > garlic oil. Listeria monocytogenes was less resistant to EO vapors, while E. coli O157:H7 was more resistant to EOs as determined by both overlay and vapor-phase diffusion tests. The presence of plant EO antimicrobials reduced the viscosity of TPFFS at the higher shear rates, but did not affect water vapor permeability of films. EOs increased elongation and darkened the color of films. The results of the present study show that the 3 plant-derived EOs can be used to prepare tomato-based antimicrobial edible films with good physical properties for food applications by both direct contact and indirectly by vapors emanating from the films.


Subject(s)
Anti-Infective Agents/pharmacology , Enterobacteriaceae/drug effects , Fruit/chemistry , Listeria monocytogenes/drug effects , Oils, Volatile/pharmacology , Solanum lycopersicum/chemistry , Anti-Infective Agents/chemistry , Dose-Response Relationship, Drug , Elasticity , Escherichia coli O157/drug effects , Food Microbiology , Food Packaging/instrumentation , Garlic/chemistry , Microbial Sensitivity Tests/methods , Oils, Volatile/chemistry , Origanum/chemistry , Permeability , Pigmentation , Pimenta/chemistry , Plant Leaves/chemistry , Plant Roots/chemistry , Salmonella enterica/drug effects , Tensile Strength , Viscosity
5.
J Food Sci ; 73(7): M378-83, 2008 Sep.
Article in English | MEDLINE | ID: mdl-18803723

ABSTRACT

Edible films containing plant antimicrobials are gaining importance as potential treatment to extend product shelf life and reduce risk of pathogen growth on contaminated food surfaces. The main objective of the present study was to evaluate the antimicrobial activities, storage stabilities, and physical-chemical-mechanica1 properties of novel edible films made from tomatoes containing carvacrol, the main constituent of oregano oil. The antimicrobial activities against E. coli O157:H7 and the stability of carvacrol were evaluated during the preparation and storage of tomato-based films made by 2 different casting methods, continuous casting and batch casting. Antimicrobial assays of tomato films indicated that optimum antimicrobial effects occurred with carvacrol levels of approximately 0.75% added to tomato purees before film preparation. HPLC analysis of the films indicated that the carvacrol concentrations and bactericidal effect of the films remained unchanged over the storage period of up to 98 d at 5 and 25 degrees C. Carvacrol addition to the tomato puree used to prepare the films increased water vapor permeability of tomato films. The continuous method for casting of the films appears more suitable for large-scale use than the batch method. This 1st report on tomato-based edible antimicrobial tomato films suggests that these films have the potential to prevent adverse effects of contaminated food and promote human health associated with the consumption of tomatoes.


Subject(s)
Anti-Bacterial Agents/pharmacology , Escherichia coli O157/drug effects , Food Microbiology , Monoterpenes/pharmacology , Solanum lycopersicum/chemistry , Chromatography, High Pressure Liquid , Cymenes , Escherichia coli O157/growth & development , Food Packaging/instrumentation , Food Preservatives/pharmacology , Microbial Sensitivity Tests , Tensile Strength
6.
J Food Sci ; 73(7): N31-7, 2008 Sep.
Article in English | MEDLINE | ID: mdl-18803724

ABSTRACT

In this study, chitosan nanoparticles were prepared and incorporated in hydroxypropyl methylcellulose (HPMC) films under different conditions. Mechanical properties, water vapor and oxygen permeability, water solubility, and scanning and transmission electron microscopy (SEM and TEM) results were analyzed. Incorporation of chitosan nanoparticles in the films improved their mechanical properties significantly, while also improving film barrier properties significantly. The chitosan poly(methacrylic acid) (CS-PMAA) nanoparticles tend to occupy the empty spaces in the pores of the HPMC matrix, inducing the collapse of the pores and thereby improving film tensile and barrier properties. This study is the first to investigate the use of nanoparticles for the purpose of strengthening HPMC films.


Subject(s)
Chitosan/chemistry , Methylcellulose/analogs & derivatives , Nanoparticles/chemistry , Food Packaging , Hypromellose Derivatives , Methylcellulose/chemistry , Microscopy, Electron, Scanning , Microscopy, Electron, Transmission , Oxygen/analysis , Particle Size , Permeability , Polymethacrylic Acids/chemistry , Solubility , Tensile Strength , Water/analysis
7.
J Food Sci ; 73(6): E259-65, 2008 Aug.
Article in English | MEDLINE | ID: mdl-19241546

ABSTRACT

This research studied the effect of berry size and dipping pretreatment in hot sodium hydroxide (NaOH) solution on the drying characteristics of blueberries under infrared radiation (IR) heating. Changes in the microstructure and diffusion coefficient of the berries after the NaOH pretreatment were also determined using scanning electronic microscopy and dynamic vapor sorption (DVS), respectively. To quantify the effect of berry size, non-pretreated bulk blueberries were sorted into 6 groups based on their diameters and dried at 70 degrees C. To determine the effectiveness of NaOH pretreatment in improving drying characteristics, bulk blueberries of different sizes, both nonpretreated and NaOH pretreated, were dried at constant temperatures of 80 and 90 degrees C, and variable temperatures of 70 degrees C for 50 min followed by 90 degrees C for 50 min. The NaOH pretreatment dipped blueberries in 0.1% NaOH solution with fruit to solution ratio 1:1 (w/v) at initial temperature of 93 degrees C for 5 s. Results showed that the drying rate increased with decreased berry size. Average moisture diffusivity was in the range of 5.89 to 8.13 m2/s at 70 degrees C. The NaOH pretreatment increased drying rate and moisture diffusivity and reduced the number of broken berries, especially at high drying temperatures. Results from SEM observation and DVS showed that the increase in diffusivity coefficients of berry coat and loss of intact microstructure in coat and tissue cells might contribute to the effect of NaOH pretreatment on the IR drying of blueberries.


Subject(s)
Blueberry Plants/chemistry , Food Handling/methods , Food Irradiation , Food Preservation/methods , Fruit/standards , Sodium Hydroxide/pharmacology , Consumer Product Safety , Desiccation/methods , Fruit/drug effects , Fruit/radiation effects , Fruit/ultrastructure , Infrared Rays , Microscopy, Electron, Scanning , Particle Size , Temperature , Time Factors
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