Scientific Information

Concentrating Bacteriophage from Environmental and Wastewater Samples Using the InnovaPrep® Concentrating Pipette Select™

Application Note - Concentrating Bacteriophage from Environmental and Wastewater Samples Using the InnovaPrep® Concentrating Pipette Select™

Concentrating Bacteriophage from Environmental and Wastewater Samples Using the InnovaPrep® Concentrating Pipette Select™

Application Note - Concentrating Bacteriophage from Environmental and Wastewater Samples Using the InnovaPrep® Concentrating Pipette Select™

Guidance for Reducing PCR Inhibition in Samples Concentrated with the Concentrating Pipette™

Guidance Document - Guidance for Reducing PCR Inhibition in Samples Concentrated with the InnovaPrep Concentrating Pipette™

Guidance for Reducing PCR Inhibition in Samples Concentrated with the Concentrating Pipette™

Guidance Document - Guidance for Reducing PCR Inhibition in Samples Concentrated with the InnovaPrep Concentrating Pipette™

Concentrating Microbial Targets from Pasteurized Milk Using the InnovaPrep® Concentrating Pipette™

Application Note - Concentrating Microbial Targets from Pasteurized Milk Using the InnovaPrep® Concentrating Pipette™.

Concentrating Microbial Targets from Pasteurized Milk Using the InnovaPrep® Concentrating Pipette™

Application Note - Concentrating Microbial Targets from Pasteurized Milk Using the InnovaPrep® Concentrating Pipette™.

Milk Clarification Pretreatment Approaches for Microbial Concentration Using the Concentrating Pipette™

Guidance Document - Milk Clarification Pretreatment Approaches for Microbial Concentration using the Concentrating Pipette™

Milk Clarification Pretreatment Approaches for Microbial Concentration Using the Concentrating Pipette™

Guidance Document - Milk Clarification Pretreatment Approaches for Microbial Concentration using the Concentrating Pipette™

Pooling Strategies for Air Monitoring for Optimal Efficiency and Maximum Detection Sensitivity

Guidance Document - Pooling Strategies for Air Monitoring for Optimal Efficiency and Maximum Detection Sensitivity

Pooling Strategies for Air Monitoring for Optimal Efficiency and Maximum Detection Sensitivity

Guidance Document - Pooling Strategies for Air Monitoring for Optimal Efficiency and Maximum Detection Sensitivity

Comprehensive Biomonitoring: Exponential Concentration of Microbes from Air, Surfaces, and Liquids

Comprehensive Biomonitoring: Exponential Concentration of Microbes from Air, Surfaces, and Liquids

To achieve a truly comprehensive biomonitoring strategy, it’s essential to sample all three environments: air, surfaces, and liquids.

Comprehensive Biomonitoring: Exponential Concentration of Microbes from Air, Surfaces, and Liquids

To achieve a truly comprehensive biomonitoring strategy, it’s essential to sample all three environments: air, surfaces, and liquids.

Guidance for Successful Indoor Airborne Disease Monitoring Strategies

Guidance Document - Successful Indoor Airborne Disease Monitoring Strategies using AirPrep Samplers.

Guidance for Successful Indoor Airborne Disease Monitoring Strategies

Guidance Document - Successful Indoor Airborne Disease Monitoring Strategies using AirPrep Samplers.

24-Hour Air Sampling for Pathogenic Plant Fungi: New Insights into Airborne Spore Dynamics

24-Hour Air Sampling for Pathogenic Plant Fungi: New Insights into Airborne Spore Dynamics

Pathogenic plant fungi pose a significant threat to the farming industry, causing extensive crop losses, lowering yield quality, and driving up production costs. To mitigate these impacts, researchers are seeking...

24-Hour Air Sampling for Pathogenic Plant Fungi: New Insights into Airborne Spore Dynamics

Pathogenic plant fungi pose a significant threat to the farming industry, causing extensive crop losses, lowering yield quality, and driving up production costs. To mitigate these impacts, researchers are seeking...

Sequencing Air for Crop Fungus

Sequencing Air for Crop Fungus

At the British Society of Plant Pathology conference held at the University of Oxford in 2024, Jade van Wijk presented on a collaborative project involving the Earlham Institute, Elsoms Wheat,...

Sequencing Air for Crop Fungus

At the British Society of Plant Pathology conference held at the University of Oxford in 2024, Jade van Wijk presented on a collaborative project involving the Earlham Institute, Elsoms Wheat,...

Tracking the Spread of RSV

Tracking the Spread of RSV

 A comprehensive study conducted in Northern Ireland demonstrated how Wastewater-Based Epidemiology (WBE) combined with advanced technologies like the Concentrating Pipette System (CP) allow for tracking RSV, variants, and other disease pathogens trending...

Tracking the Spread of RSV

 A comprehensive study conducted in Northern Ireland demonstrated how Wastewater-Based Epidemiology (WBE) combined with advanced technologies like the Concentrating Pipette System (CP) allow for tracking RSV, variants, and other disease pathogens trending...

Aerosolized Antimicrobial Resistance Genes from Urban Surface Waters

Aerosolized Antimicrobial Resistance Genes from Urban Surface Waters

Urban environments often conceal invisible threats to public health, and a recent study in La Paz, Bolivia, brings one such danger to light: the aerosolization of antibiotic resistance genes (ARGs)....

Aerosolized Antimicrobial Resistance Genes from Urban Surface Waters

Urban environments often conceal invisible threats to public health, and a recent study in La Paz, Bolivia, brings one such danger to light: the aerosolization of antibiotic resistance genes (ARGs)....

Calculating Your Potential Concentration Factor

Application Note -  Calculating Your Potential Concentration Factor - How to select the best concentration approach for your application

Calculating Your Potential Concentration Factor

Application Note -  Calculating Your Potential Concentration Factor - How to select the best concentration approach for your application