April 22, 2024
Boston: “According to the latest BCC Research study, the demand for Next-generation Sequencing: Emerging Clinical Applications and Global Markets is estimated to increase from $21.9 billion in 2023 to $52.9 billion by the end of 2028, at a compound annual growth rate (CAGR) of 19.3% during the forecast period of 2023-2028.”
This report dives into the world of clinical Next-Generation Sequencing (NGS), covering technologies, applications, industries, and market trends. It explains why genetic variation matters in clinical testing, highlights significant research initiatives, and discusses liquid biopsy methods. Market analysis includes factors like test complexity, clinical indications, and purposes. It forecasts NGS diagnostics markets up to 2028, focusing on oncology, cardiovascular diseases, infectious diseases, and more. Geographical markets and industry sectors are also explored, with profiles of over 100 companies in the field. Additionally, recent industry acquisitions and alliances are summarized, giving insights into key trends.
Next-generation sequencing (NGS) advancements drive targeted medicines and precision diagnostics, with robotics and bioinformatics enhancing speed and accuracy. Portable platforms extend applications beyond medicine. Whole-genome sequencing popularity rises, aiding diagnostics. Companies prioritize early cancer detection via acquisitions. Genetic testing crucial for diagnosing rare disorders, facilitated by techniques like WES and WGS for comprehensive gene analysis.
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Next-Generation Sequencing Market Key Drivers
Growing Demand for Precision Medicine: Precision medicine tailors treatments based on individuals' unique genetic, lifestyle, and environmental factors. NGS identifies genetic variations for personalized treatment plans, driving demand for NGS diagnostics.
Emergence of Tissue-Agnostic Drug Labels: Tissue-agnostic drug labels focus on genetic mutations rather than tumor types for cancer treatment. NGS identifies these mutations, leading to targeted therapies applicable across cancers, boosting NGS adoption.
Increasing Endorsement of Liquid Biopsy-Based Diagnostics: Liquid biopsies analyze cell-free DNA for cancer detection. NGS detects genetic alterations, enabling early detection, treatment monitoring, and disease assessment, backed by industry endorsement.
Emergence of High Market Potential Applications: NGS aids in oncology for mutation identification, predicting drug responses, and monitoring tumor progression. It enhances diagnostics and personalized treatment in various medical fields, driving market potential.
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Report Synopsis
Report Metrics |
Details |
Base year considered |
2022 |
Forecast Period considered |
2023-2028 |
Base year market size |
$18.4 billion |
Market Size Forecast |
$52.9 billion |
Growth Rate |
CAGR of 19.3% for the forecast period of 2023-2028 |
Segment Covered |
Disease Class, Test Complexity, Analysis Type, and Geographic Region |
Regions covered |
North America, Europe, Asia-Pacific, and Rest of the World |
Countries covered |
Austria, Belgium, Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Ireland, Iceland, Italy, Luxembourg, Netherlands, Norway, Poland, Portugal, Romania, Spain, Switzerland, Turkey, UK, Sweden, Australia, China, India, Japan, Malaysia, New Zealand, Philippines, Singapore, Taiwan, Thailand, South Korea, Argentina, Brazil, Chile, Israel, Kuwait, Russia, Saudi Arabia, South Africa, UAE |
Key Market Drivers |
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Segmentation: Understanding the Global Markets for Vaccine Technologies: How They're Divided in the Global Markets:
By Disease Type Segmentation
NGS is used in various medical fields. In oncology, it identifies mutations for personalized cancer treatment. In reproductive health, it detects genetic disorders in pregnancy. Mendelian disorders are diagnosed through single gene mutations. NGS also aids in cardiovascular and neurological conditions, infectious diseases, and immune responses.
By Test Complexity Segmentation
NGS methods differ in complexity. Multi-gene analysis studies multiple genes simultaneously for complex diseases. Hotspot testing focuses on specific gene regions with common mutations. Whole/targeted exome sequencing examines all or specific protein-coding genes. Whole-genome sequencing reads an individual's entire genetic code, while single-gene testing targets specific genes.
By Purpose of Tests Segmentation
NGS serves various medical purposes. Screening detects genetic risk factors early. Monitoring tracks disease progression or treatment response. Diagnostics identify specific genetic conditions accurately. Therapy guidance tailor’s treatments based on genetic information.
This report on the Next-generation Sequencing provides comprehensive insights and analysis, addressing the following key questions:
1. What is the projected market size and growth rate of the market?
2. What are the key factors driving the growth of the market?
3. What segments are covered in the market?
4. By disease type, which segment will dominate the market by the end of 2028?
5. Which region has the highest market share in the market?
Some of the Key Market Players Are:
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Proteomics: Technologies and Global Markets: This research report study provides a comprehensive analysis of analytical technologies such as Mass Spectrometry (MS) instruments, consumables, and biochips, covering research, drug development, diagnostics, and various end-user segments across North America, Europe, Asia-Pacific, and the Rest of the World. It includes market analysis by instrument type, consumables, product type, and biochip type, with insights into diagnostics, disease types, and growth forecasts up to 2027. The report also discusses market-driving forces, industry alliances, acquisitions, competitive trends, key acquisitions, strategic alliances, patent trends, and profiles of proteomics companies.
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Next-generation Sequencing: Emerging Clinical Applications and Global Markets( BIO126E )
Publish Date: Jan 2024
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