0000000000129360

AUTHOR

Emilie Lang

showing 7 related works from this author

Drying parameters greatly affect the destruction of Cronobacter sakazakii and Salmonella Typhimurium in standard buffer and milk

2017

International audience; Salmonella Typhimurium and Cronobacter sakazakii are two foodborne pathogens involved in neonatal infections from milk powder and infant formula. Their ability to survive in low-moisture food and during processing from the decontamination to the dried state is a major issue in food protection. In this work, we studied the effects of the drying process on Salmonella Typhimurium and Cronobacter sakazakii, with the aim of identifying the drying parameters that could promote greater inactivation of these two foodborne pathogens. These two bacteria were dried under different atmospheric relative humidities in milk and phosphate-buffered saline, and the delays in growth re…

0301 basic medicineEnterobacter-sakazakiiSevere dehydrationSalmonellaWater activitySurvivalMicroorganismDesiccation tolerance030106 microbiologyResistanceDrying conditionsLow-moisture foodsInfant formulasBuffersmedicine.disease_causeMicrobiologyMicrobiologyCultivability03 medical and health sciencesCronobacter sakazakiiStrain variabilitymedicineAnimalsFood scienceDesiccationThermal-destructionMicrobial Viabilitybiologybusiness.industry[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringHuman decontaminationFood safetybiology.organism_classificationCronobacter sakazakiiKineticsMilkInfant formulaSalmonella TyphimuriumFood MicrobiologybusinessBacteriaFood ScienceWater activity
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Recovery Estimation of Dried Foodborne Pathogens Is Directly Related to Rehydration Kinetics.

2016

International audience; Drying is a common process which is used to preserve food products and technological microorganisms, but which is deleterious for the cells. The aim of this study is to differentiate the effects of drying alone from the effects of the successive and necessary rehydration. Rehydration of dried bacteria is a critical step already studied in starter culture but not for different kinetics and not for pathogens. In the present study, the influence of rehydration kinetics was investigated for three foodborne pathogens involved in neonatal diseases caused by the consumption of rehydrated milk powder: Salmonella enterica subsp. enterica serovar Typhimurium, Salmonella enteri…

Salmonella typhimuriumBacterial Diseases0301 basic medicineSurvivalPhysiologyMicroorganism[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionCell MembranesResistancelcsh:MedicineEscherichia-coliPathology and Laboratory MedicineLactic Acid BacteriaFoodborne OrganismsSalmonellaMedicine and Health SciencesFood scienceProkaryoteslcsh:SciencemembraneMultidisciplinarybiologyDehydrationEnteric BacteriaSalmonella entericaBacterial InfectionsAnhydrobiosisBacterial PathogensDeathInfectious DiseasesMedical MicrobiologySalmonella entericaPathogensCellular Structures and OrganellesResearch ArticleWater activityDesiccation tolerance030106 microbiologyMicrobiologyMicrobiology03 medical and health sciencesCronobacter sakazakiiEnterobacteriaceaemedicineHumansDehydrationDesiccationMicrobial PathogensBacteriabusiness.industrylcsh:ROrganismsFood ConsumptionBiology and Life SciencesCell Biologymedicine.diseasebiology.organism_classificationFood safetyCronobacter sakazakiiInfant formulaFood MicrobiologyFluid Therapylcsh:QPhysiological ProcessesbusinessBacteriaWater activityPLoS ONE
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Modeling the heat inactivation of foodborne pathogens in milk powder : High relevance of the substrate water activity

2017

International audience; Due to the ability of foodborne pathogens to survive in low moisture foods, the decontamination of these products is an important issue in food hygiene. Up to now, such decontamination has mostly been achieved through empirical methods. The intention of this work is to establish a more rational use of heat treatment cycles. The effects of thermal treatment cycles on the inactivation of dried Salmonella Typhimurium, Salmonella Senftenberg, Cronobacter sakazakii and Escherichia coli were assessed. Bacteria were mixed with whole milk powder and dried down to different water activity levels (0.11, 0.25, 0.44 and 0.58). The rate of inactivated bacteria was determined afte…

0301 basic medicineSalmonellaHot TemperatureTime FactorsWater activityFood HandlingThermal resistance030106 microbiologymedicine.disease_causeFoodborne Diseases03 medical and health sciencesCronobacter sakazakiiGram-Negative Bacteria[SDV.IDA]Life Sciences [q-bio]/Food engineeringFood QualitymedicineEscherichia coliAnimalsSalmonella SenftenbergFood scienceEscherichia coliDecontamination2. Zero hungerMicrobial ViabilitybiologyMoisturePredictive microbiologyChemistry[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringWaterHuman decontaminationModels Theoreticalbiology.organism_classificationLow water activity foodCronobacter sakazakii6. Clean waterMilk13. Climate actionSalmonella TyphimuriumFood MicrobiologyPowdersBacteriaFood Science
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Caco-2 Invasion by Cronobacter sakazakii and Salmonella enterica Exposed to Drying and Heat Treatments in Dried State in Milk Powder

2017

International audience; Due to the ability of foodborne pathogens to survive in low moisture food, the decontamination of milk powder is an important issue in food protection. The safety of food products is, however, not always insured and the different steps in the processing of food involve physiological and metabolic changes in bacteria. Among these changes, virulence properties may also be affected. In this study, the effect of drying and successive thermal treatments on the invasion capacity of Salmonella Typhimurium, Salmonella Senftenberg, and Cronobacter sakazakii was assessed. Bacteria were dried on milk powder at three different water activity levels (0.25, 0.58, and 0.80) and hea…

0301 basic medicineMicrobiology (medical)SalmonellaWater activity030106 microbiologylcsh:QR1-502medicine.disease_causesurvivalMicrobiologystress responseslcsh:Microbiologyresistancestress03 medical and health sciencesCronobacter sakazakiiListeria monocytogenes[SDV.IDA]Life Sciences [q-bio]/Food engineeringwater activitymedicineFood sciencefoodborne pathogensserovar typhimurium2. Zero hungerbiologybusiness.industry[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringSalmonella entericaCaco-2invasionFood safetybiology.organism_classificationCronobacter sakazakiivirulence030104 developmental biologySalmonella entericaescherichia-coliFood processingenterobacter-sakazakiilisteria-monocytogenesbusinessBacteriaFrontiers in Microbiology
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Cellular Injuries in Cronobacter sakazakii CIP 103183T and Salmonella enterica Exposed to Drying and Subsequent Heat Treatment in Milk Powder

2018

International audience; Because of the ability of foodborne pathogens to survive in low-moisture foods, their decontamination is an important issue in food protection. This study aimed to clarify some of the cellular mechanisms involved in inactivation of foodborne pathogens after drying and subsequent heating. Individual strains of Salmonella Typhimurium, Salmonella Senftenberg, and Cronobacter sakazakii were mixed into whole milk powder and dried to different water activity levels (0.25 and 0.58); the number of surviving cells was determined after drying and subsequent thermal treatments in closed vessels at 90 and 100 degrees C, for 30 and 120 s. For each condition, the percentage of unc…

0301 basic medicineSalmonellalcsh:QR1-502medicine.disease_causelcsh:Microbiologyperméabilité membranairechemistry.chemical_compound[SDV.IDA]Life Sciences [q-bio]/Food engineeringFood sciencedryingOriginal Researchpropidium iodidebiologyChemistryMicrobiology and Parasitologyplasma-membraneSalmonella entericainfant formulaMicrobiologie et ParasitologieSalmonella entericaAlimentation et Nutritionsaccharomyces-cerevisiaeenterobacter-sakazakiitraitement thermiqueséchageMicrobiology (medical)Water activityMembrane permeabilitydesiccation tolerance030106 microbiologylow-water activityMicrobiologyrespiratory activity03 medical and health sciencesCronobacter sakazakiimedicineFood and NutritionPropidium iodideactivation respiratoireEscherichia colifoodborne pathogensheat treatmentbiology.organism_classificationCronobacter sakazakii030104 developmental biologymembrane permeabilitythermal inactivationSalmonella enterica;Cronobacter sakazakii;membrane permeability;respiratory activity;heat treatment;dryingescherichia-coliBacteria
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The Impact of Drying on Foodborne Pathogens Salmonella enterica and Cronobacter sakazakii

2017

International audience; [Technical Session 1 – Intervention Strategies] Introduction: Salmonella enterica and Cronobacter sakazakii are foodborne pathogens responsible for severe infant illness. Their ability to survive in harsh environmental conditions make these species a matter of concern for the low moisture food industry. Purpose: This study aimed to evaluate and understand the impact of drying conditions on survival, physiology, and invasion capacity of Salmonella Typhimurium and C. sakazakii.Methods: Salmonella Typhimurium and C. sakazakii were mixed into whole milk powder and dried at different water activity (aw) levels (0.25, 0.58 and 0.80). For each strain, the impact of each dry…

[ SDV.IDA ] Life Sciences [q-bio]/Food engineering[SDV.IDA] Life Sciences [q-bio]/Food engineering
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Foodborne pathogens inactivation in low-water activity foods

2016

Dried food products are common in food industry. Nevertheless, their safety is not well insured, involving numerous outbreaks every years around the world. Particularly, two pathogenic bacteria are of interest, one of them due to its number of cases, Salmonella enterica, and the other one due to its ability to survive environmental perturbations, Cronobacter spp.. A deeper comprehension of drying and heat treatment in dried state impact could lead to an optimization of drying and heating processes, insuring food safety. In the first instance, drying was considered as a supplementary decontamination step by optimizing its conditions of use. In a second phase, the rehydration impact was studi…

Traitement thermiqueRéhydratationCronobacter sakazakiiVirulencePhysiologySalmonella entericaRehydration[SDV.IDA] Life Sciences [q-bio]/Food engineeringHeat treatmentPhysiologieDryingSéchage
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