Clinical Sciences

Genuine Porex®: From drug discovery to DNA research.

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Certified Pure PorexClinical science products, media and filters from Porex Corporation are design optimized to help ensure performance, purity, accuracy and reproducibility in demanding IVD, molecular and clinical diagnostic sample preparation, liquid handling and microfluidic applications. The distinct range of innovative products and OEM advanced porous materials, micro porous PTFE, porous polymeric fiber, porous glass fiber membrane, porous composites and functionalized and bio-activated porous media, combine unique Porex manufacturing processes with proprietary and patented technologies to help deliver technologically advanced solutions for today’s challenging clinical science applications.

POREX® Filters and Materials for the clinical sciences are third party tested by analytical, clinical, and life cycle microbiology laboratories. The Pure Porex™ certification substantiates POREX Filters and Materials for filter purity, no material additives or contaminants, no heavy metal interference or inorganic element interference, clinical laboratory methodology compatibility, 99.9% bacterial aerosol filtration efficiency. POREX Filters and Materials were further tested by independent laboratories and determined to be non-cytotoxic and non-hemolytic.1

1 Testing by independent laboratories. Data on file and available on request.

View our study on Factors Affecting Clinical and Life Science Test Results in Polymeric Consumables

Porex Intake, Inline, ESR, Clinical Pipette Tip and Serological Filters are the porous design solutions chosen by a broad spectrum of pipette and instrument manufacturers to help eliminate aerosol by-pass, degassing, sample carryover and the passage of aqueous based liquid from sample to equipment and instrumentation.

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Advances in micro fluidic systems have strong potential for detection of a wide range of analytes with reduced sample and reagent volume, lower costs and shorter analysis times. High–fidelity multiplex and multiclass assays that synergize components and achievements in nanotechnology, molecular diagnostics, micro fluidics and microelectronics, have the ability to create new and powerful measurement tools in a small device footprint that meet or exceed today’s analytical performance requirements.

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