Digital PCR (dPCR) and Real-time PCR (qPCR) Market Will Generate Record Revenue by 2031

Global Digital PCR (dPCR) and Real-time PCR (qPCR) report from Global Insight Services is the single authoritative source of intelligence on Digital PCR (dPCR) and Real-time PCR (qPCR) market. The report will provide you with analysis of impact of latest market disruptions such as Russia-Ukraine war and Covid-19 on the market. Report provides qualitative analysis of the market using various frameworks such as Porters’ and PESTLE analysis. Report includes in-depth segmentation and market size data by categories, product types, applications, and geographies. Report also includes comprehensive analysis of key issues, trends and drivers, restraints and challenges, competitive landscape, as well as recent events such as M&A activities in the market.

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Market segmentation

The Digital PCR (dPCR) and Real-time PCR (qPCR) market is segmented by technology, application, and product. By technology, the market is classified into quantitative and digital. By application, the market is divided into clinical, research, forensic and others. By product, the market is segmented into consumables & reagents, instrument, software & services. Region-wise, the market is segmented into North America, Europe, Asia-Pacific and rest of the world.

Key Players

The Key Players in the Digital PCR (dPCR) and Real-time PCR (qPCR) Market market are, Thermo Fisher Scientific, Bio-Rad Laboratories Inc., F. Hoffmann-La Roche, Ltd., Abbott Laboratories, Agilent Technologies, Analytik Jena AG, Becton Dikinson and Company, BioMerieux SA, Danaher Corporation, and Eppendorf.

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Key Drivers

Digital PCR (dPCR) and Real-time PCR (qPCR) are two of the most popular methods for PCR-based detection of nucleic acids. Both methods are highly sensitive and specific, and can be used for a variety of applications including gene expression analysis, pathogen detection, and genotyping.

dPCR is typically more sensitive than qPCR, due to the fact that dPCR can quantify absolute copy numbers of target sequences, while qPCR can only relative copy numbers. In addition, dPCR is not affected by PCR inhibitors, while qPCR can be.

qPCR is typically faster and easier to set up than dPCR, and does not require specialized equipment. qPCR can also be used for multiplexing, while dPCR is typically limited to single plex assays.

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