Lumex Instruments
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Lumex Instruments news

During this pandemic situation, erratic supply of lab wares and reagents, as well as bottlenecks created due to high demand and short supply of the test reagents, has created a delay in getting the population tested for COVID-19. Worldwide calls for widespread testing has skyrocketed the amount of requests for PCR reagent supply. Current real-time PCR assays and PCR instruments consume large volume of reagents (20 μl reaction), since assays are performed in PCR tubes or array plates. Lumex

Apr. 23, 2020

The current pandemic situation has created a demand for test kits that can be run with less amount of reagents while generating faster test results.Lumex Instruments’ microchip real-time PCR analyzer AriaDNA, by detecting SARS-CoV-2, has proven its ability to meet this demand. The Microchip RT-PCR COVID-19 Detection System based on AriaDNA enables to test up to seven patient samples in one run, which takes less than an hour, with low reagent consumption. Currently the system is for rese

Apr. 23, 2020

Lumex Instruments Canada in partnership with Dinelab invites the Industry and Academia to meet an innovative approach to PCR analysis: rapid qualitative and quantitative analysis of nucleic acids in various samples with the real-time microchip-based PCR.
The real-time PCR in miniaturized volumes can be used for R&D, clinical and laboratory services for medical, veterinary and phytopathogen diagnostics, quality control services for food manufacturing, customs control and biological sa

Sep. 18, 2018

The polymerase chain reaction (PCR) is a well-known technique that has been adopted for detection of many bacteria, fungi, viruses, and viroids due to high specificity and sensitivity. However, most of the currently used PCR analysis techniques for multiple pathogen detection are very time-consuming, require tedious reaction set up in strictly controlled laboratory conditions and prone to user errors.

Register for our upcoming webinar and meet an innovative approach to PCR analysis: r

Mar. 29, 2018