The global next-generation sequencing market is growing significantly due to advances in next-generation technologies, increasing scientists and researchers’ compliance for next-generation sequencing, and low cost of next-generation sequencing methods compared to conventional sequencing methods in the industry. The unexplored next-generation sequencing market in emerging economies and increasing focus for the development of personalized medicine are creating opportunities for the global next-generation sequencing market to grow at a considerable rate in the coming years.
The advanced research and development activities by the major players are propelling the demand for cost effective and efficient next-generation sequencing platforms. However, interpretation of large volume of complex sequencing data through next-generation sequencing platforms is a major challenge in global next-generation sequencing market.
The global next-generation sequencing market is categorized as technology type, sequencing workflow, applications, and end-users. Based on technology type, the next-generation sequencing market is categorized as pyrosequencing, ion-semiconductor sequencing, sequencing by synthesis, single molecule realtime sequencing, and sequencing by ligation. The sequencing by synthesis segment leads the global next-generation sequencing market. Based on sequencing workflow, the next-generation sequencing market is categorized as next-generation pre-sequencing, next-generation sequencing platforms, and next-generation sequencing services.
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Based on applications, the next-generation sequencing market can be categorized as diagnostics, drug discovery, animal and agriculture research, personalized medicine, and others. End-users of next-generation sequencing include academic and research institutes, biopharmaceutical and biotechnology companies, hospitals, and others. Academic and research institutes lead the global next-generation sequencing market.
Some of the major players operating in the global next-generation sequencing market are Agilent Technologies, Inc., F. Hoffmann-La Roche AG, Biomatters, Ltd., GATC Biotech AG, Illumina, Inc., Thermo Fisher Scientific, Inc., Pacific Biosciences, Oxford Nanopore Technologies, Ltd, Macrogen, Inc. among others.
The advanced research and development activities by the major players are propelling the demand for cost effective and efficient next-generation sequencing platforms. However, interpretation of large volume of complex sequencing data through next-generation sequencing platforms is a major challenge in global next-generation sequencing market.
The global next-generation sequencing market is categorized as technology type, sequencing workflow, applications, and end-users. Based on technology type, the next-generation sequencing market is categorized as pyrosequencing, ion-semiconductor sequencing, sequencing by synthesis, single molecule realtime sequencing, and sequencing by ligation. The sequencing by synthesis segment leads the global next-generation sequencing market. Based on sequencing workflow, the next-generation sequencing market is categorized as next-generation pre-sequencing, next-generation sequencing platforms, and next-generation sequencing services.
Inquiry Before Purchase at: https://www.psmarketresearch.com/send-enquiry?enquiry-url=next-generation-sequencing-market
Based on applications, the next-generation sequencing market can be categorized as diagnostics, drug discovery, animal and agriculture research, personalized medicine, and others. End-users of next-generation sequencing include academic and research institutes, biopharmaceutical and biotechnology companies, hospitals, and others. Academic and research institutes lead the global next-generation sequencing market.
Some of the major players operating in the global next-generation sequencing market are Agilent Technologies, Inc., F. Hoffmann-La Roche AG, Biomatters, Ltd., GATC Biotech AG, Illumina, Inc., Thermo Fisher Scientific, Inc., Pacific Biosciences, Oxford Nanopore Technologies, Ltd, Macrogen, Inc. among others.
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