Vancouver, BC -- (SBWire) -- 04/20/2021 --According to the Center for Disease Control and Prevention, in 2019, cancer was the second leading cause of death in the US. Around 599,601 cancer deaths occurred in 2019, among which 283,725 were female, and 315,879 were male. Rising prevalence is resulting in need for developing more effective treatment techniques by pharma companies for early detection of infected cells and tissues.
The global in-situ hybridization market size reached USD 905.3 Million in 2020 and is expected to register a CAGR of 7.1%, during the forecast period, according to latest analysis by Emergen Research. Increasing prevalence of cancer, genetic disorders, and infectious diseases is expected to drive revenue growth of the global in-situ hybridization market during the forecast period.
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Key players in the market include Thermo Fisher Scientific, Biocare Medical, Agilent Technologies, Abbott Laboratories, Abnova Corporation, Hoffmann-La Roche Ltd., Merck KGAa, Danaher Corporation, Bio SB, and BioGenex Laboratories.
Scope of the Report:
The study finds that how on certain account threats and challenges can act as a roadblock for the business. A thorough evaluation of the In-Situ Hybridization market in the light of macro-environment such as social, political, economical as well as technological environment add granularity to the overall research. In addition, the study produces real-time data on vital aspects including sales, profits, gross margin and growth prospects to show how going forward the business will witness a substantial upswing.
Emergen Research has segmented the global in-situ hybridization market on the basis of technology, application, product type, end-use, and region:
Technology Outlook (Revenue, USD Million; 2018–2028)
Fluorescence In-Situ Hybridization (FISH)
Chromogenic In-Situ Hybridization (CISH)
Application Outlook (Revenue, USD Million; 2018–2028)
Cancer Diagnostic
Infectious Disease
Immunology
Neuroscience
Cytology
Others
Product Type Outlook (Revenue, USD Million; 2018–2028)
Kits & Reagents
Probes
Instruments
Software
Others
End-use Outlook (Revenue, USD Million; 2018–2028)
Diagnostics Laboratories and Hospitals
Pharmaceutical & Bio-technology
Academic & Research Institute
Contract Research Organizations (CRO)
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The global In-Situ Hybridization market report covers the analysis of drivers, trends, limitations, restraints, and challenges arising in the In-Situ Hybridization market. The report also discusses the impact of various other market factors affecting the growth of the market across various segments and regions. The report segments the market on the basis of types, applications, and regions to impart a better understanding of the
In-Situ Hybridization market.
Detailed Regional Analysis covers:
North America (U.S., Canada)
Europe (U.K., Italy, Germany, France, Rest of EU)
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)
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Objectives of the Report:
Study of the global In-Situ Hybridization market size by key regions, types, and applications with reference to historical data (2017-2018) and forecast (2020-2027)
Industrial structure analysis of the In-Situ Hybridization market by identification of various sub-segments
Extensive analysis of key market players along with their SWOT analysis
Competitive landscape benchmarking
Analysis of In-Situ Hybridization market based on growth trends, futuristic outlook, and contribution to the total growth of the market
Analysis of drivers, constraints, opportunities, challenges, and risks in the global In-Situ Hybridization market
Comprehensive analysis of competitive developments such as expansions, agreements, new product launches, and other strategic alliances
Table of Content
Chapter 1. Methodology & Sources
1.1. Market Definition
1.2. Research Scope
1.3. Methodology
1.4. Research Sources
1.4.1. Primary
1.4.2. Secondary
1.4.3. Paid Sources
1.5. Market Estimation Technique
Chapter 2. Executive Summary
2.1. Summary Snapshot, 2021–2028
Chapter 3. Key Insights
Chapter 4. In-Situ Hybridization Market Segmentation & Impact Analysis
4.1. In-Situ Hybridization Market Material Segmentation Analysis
4.2. Industrial Outlook
4.2.1. Market indicators analysis
4.2.2. Market drivers analysis
4.2.2.1. Growing prevalence of cancer and genetic disorders
4.2.2.2. Increasing investment in R&D activity
4.2.2.3. Growing awareness about cancer therapeutics and diagnostic solutions
4.2.2.4. Increasing technology advancement in medical science
4.2.3. Market restraints analysis
4.2.3.1. High cost of in-situ hybridization-based treatment
4.2.3.2. Complex procedures and difficulty in quantifying hybridization results
4.3. Technological Insights
4.4. Regulatory Framework
4.5. Porter's Five Forces Analysis
4.6. Competitive Metric Space Analysis
4.7. Price trend Analysis
4.8. Covid-19 Impact Analysis
Chapter 5. In-Situ Hybridization Market By Technology Insights & Trends, Revenue (USD Million)
5.1. Technology Dynamics & Market Share, 2021–2028
5.1.1. Fluorescence In-Situ Hybridization(FISH)
5.1.2. Chromogenic-In-Situ Hybridization(CISH)
Chapter 6. In-Situ Hybridization Market By Application Size Insights & Trends Revenue (USD Million)
6.1. Application Dynamics & Market Share, 2021–2028
6.1.1. Cancer Diagnostic
6.1.2. Infectious Disease
6.1.3. Immunology
6.1.4. Neuroscience
6.1.5. Cytology
6.1.6. Others
Chapter 7. In-Situ Hybridization Market By Product Type Insights & Trends, Revenue (USD Million)
7.1. Product Type Dynamics & Market Share, 2021–2028
7.1.1. Kits & Reagents
7.1.2. Probes
7.1.3. Instruments
7.1.4. Software
7.1.5. Others
CONTINUED…!
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In-Situ Hybridization Market Applications, Technology, Types, Recent Trends, Future Growth Analysis, Industry Analysis and Forecasts 2028
A closer look at the aspects including but not limited to In-Situ Hybridization market segmentation by the end-user, end-use, geography, type, and application forms an integral part of the research report.