Nucleic Acid Amplification Testing Market Statistics, Business Opportunities, Competitive Landscape and Industry Analysis Report by 2026

High demand for advanced diagnostic techniques, increasing investment in the field of diagnostics, favorable initiatives by governments all over the globe, extensive range of applications, growing demand from blood banks and transfusion centers, technological development in healthcare sector are key factors contributing to high CAGR of Nucleic Acid Amplification Testing during forecast period.

the global Nucleic Acid Amplification Testing (NAAT) market was valued at USD 2.315 Billion in 2018 and is expected to reach USD 4.549 Billion by year 2026, at a CAGR of 8.8 %. The study covers Nucleic acid which a complex organic substance essential to all forms of life. It is present in living cells as RNA and DNA, composed of nucleotides linked in a long chain. Whereas, Nucleic acid amplification testing is a method of testing the blood to detect pathogen causing bacteria or virus in in blood, tissue, urine, etc.

The nucleic acid amplification testing is widely used in the field of diagnostics. With market players exploring the applications of nucleic acid amplification testing, and it is expected to be adopted in new disease fields for the diagnostics and monitoring purpose. For instance, Gen-Probe, Inc., a US based Clinical Diagnostics company, introduced three assays based on its transcription-mediated amplification technology: the APTIMA CT assay (ACT), which detects C. trachomatis, the APTIMA GC assay (AGC), which detects Neisseria gonorrhoeae, and the APTIMA COMBO 2 assay (AC2), which detects both pathogens.

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The report provides extensive coverage of the supply chain, key players of the industry, consumer base, company profiles, production and consumption rate, primary applications, and other relevant data. It provides an in-depth assessment of the key companies operating in the market along with their company profiles, business overview, production and manufacturing capacity, product portfolio, financial standing, global position, and business expansion plans. It also studies recent mergers and acquisitions, joint ventures, product launches, partnerships, collaborations, and agreements among other. The report also provides insights into new entrants and their strategic alliances to gain a robust footing in the market.

 Key Manufacturers in the Global Nucleic Acid Amplification Testing Market:

Siemens Healthcare GmbH, Abbott Laboratories, Inc., F. Hoffmann-La Roche Ltd, Grifols SA, Becton, Illumina Inc., Dickinson and Company, Beckman Coulter Inc., Bio-Rad Laboratories, and bioMrieux SA

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The report also provides an extensive regional segmentation to offer the readers key insights into the spread of the market over key geographical regions. It covers production and consumption patterns, import/export, supply and demand, consumer demand and behavior, key trends, and presence of key players in each region. The report also offer a country-wise analysis to impart a better understanding of the revenue growth of the market in each region.

  • North America (U.S., Canada, Mexico)
  • Europe (U.K., Italy, Germany, France, Rest of Europe)
  • Asia Pacific (India, Japan, China, South Korea, Australia, Rest of APAC)
  • Latin America (Chile, Brazil, Argentina, Rest of Latin America)
  • Middle East & Africa (Saudi Arabia, U.A.E., South Africa, Rest of MEA)

Technique Type (Revenue, USD Million; 2016–2026)

  • Target Amplification
  • Probe Amplification
  • Signal Amplification

Application Type (Revenue, USD Million; 2016–2026)

  • Infectious Diseases
  • Cancer
  • Personalized Medicine
  • Genetic

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Key Questions Addressed in the Report:

  • What is the market size the global Nucleic Acid Amplification Testing market is expected to reach over the forecast period? What is the expected CAGR?
  • What are the key segments of the market?
  • What are the key products and applications of the Nucleic Acid Amplification Testing market?
  • What factors are expected to drive and restrain market growth over the forecast period?
  • What are the key outcomes of SWOT analysis and Porter’s Five Forces analysis?

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