Molecular Cytogenetics Market Will Reach USD 2,266.4 Million by 2022: Meticulous Research®
Molecular Cytogenetics Market Size by Technique (Fluorescence In Situ Hybridization, Comparative Genomic Hybridization, Karyotyping, and Banding Techniques), by Product (Instruments, Kits & Reagents, Software, Service ), by Application (Oncology, Genetic Disorders), by End User (Pharmaceuticals & Biotechnology and Diagnostic Laboratories) – Global Forecast to 2022
Pune, India – June 27, 2019 /MarketersMedia/ —
Molecular cytogenetics market has shown steady growth pattern in recent year’s majorly due to increasing focus on preventive healthcare measures, increasing genetic abnormalities, growing aging population and subsequent increase in chronic diseases, increasing need to reduce mounting healthcare cost, and rising focus on clinical and research diagnosis.
Meticulous Research® in its latest publication on molecular cytogenetics market states that the global molecular cytogenetics market will increase at a CAGR of 11% from 2017 to 2022 to reach USD 2,266.4 million by 2022. Wherein, geographically, North America commanded the largest share in this market followed by Europe. The major share of North America is mainly attributed to increased funding for medical research, stringent drug development regulations which demand molecular cytogenetics techniques, growing aging population and thereby prevalence of various chronic diseases, and direct & indirect financial investments in the pharma biotech companies.
The report provides meticulous analysis of global molecular cytogenetics market by segmenting it on the basis of technique (fluorescence in situ hybridization, comparative genomic hybridization, in situ hybridization, karyotyping, and banding techniques), product (instruments, kits and reagents, software, services, and consumable/accessories), application (oncology, genetic disorders, personalized medicines, and other), end user (pharmaceuticals and biotechnological companies, clinical and diagnostic laboratories, and academic institutes). Wherein, among technique, comparative genomic hybridization segment commanded the largest share in this market majorly due to growing usage of Array-Comparative Genomic Hybridization technique. Array based techniques are preferred over FISH since the high resolution, locus specific analysis, and genome wide evaluation are combined in a single technique. Also, the sensitivity of these techniques is high compared to FISH which is useful for researchers in the detection of microdeletions.
The key players analyzed in the global molecular cytogenetics market are Thermo Fisher Scientific, Abbott Laboratories, Agilent Technologies, PerkinElmer, Bio-Rad Laboratories, Applied Spectral Imaging, Quest Diagnostics, Roche Diagnostics, Danaher Corporation, Illumina, and Oxford Gene Technology.
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Key Topics Covered in This Report:
1. Introduction
1.1. Market Ecosystem
1.2. Currency And Limitations
1.2.1. Currency
1.2.2. Limitations
1.3. Key Stakeholders
2. Research Methodology
2.1. Research Process
2.1.1. Secondary Research
2.1.2. Primary Research
2.1.3. Market Size Estimation
3. Executive Summary
4. Market Insights
4.1. Introduction
4.2. Drivers
4.2.1. Increasing Focus on Preventive Healthcare Measures
4.2.2. Increasing Genetic Abnormalities
4.2.3. Increasing Aging Population and Subsequent Increase in the Various Chronic Diseases
4.2.4. Growing Need to Reduce Mounting Healthcare Cost
4.2.5. Increasing Focus on Research and Clinical Diagnosis
4.3. Restraints
4.3.1. Lack Of Awareness About Emerging Diagnosis Technologies
4.3.2. High Cost of Diagnosis
4.3.3. Unfavourable Reimbursement Scenario
4.3.4. Technical Limitations and Complexities of The Equipment
4.4. Opportunities
4.4.1. Emerging Economies: China, India, South Korea, and Southest Asia
4.4.2. Increasing Focus on Targeted Based Therapies
4.4.3. Increase in Predictive and Presymptomatic Genetic Testing
4.5. Trends
4.5.1. Transition From Fluorescence In Situ Hybridization To Array Based Techniques
5. Molecular Cytogenetics Market, by Technique
5.1. Introduction
5.2. Fluorescence In Situ Hybridization
5.3. In Situ Hybridization
5.4. Comparative Genomic Hybridization
5.4.1. Chromosomal-Comparative Genomic Hybridization
5.4.2. Array-Comparative Genomic Hybridization
5.5. Karyotyping
5.5.1. Spectral Karyotyping
5.5.2. Virtual Karyotyping
5.6. Banding Techniques
5.6.1. G Banding
5.6.2. Q Banding
5.6.3. R Banding
5.6.4. C Banding
5.6.5. T Banding
6. Molecular Cytogenetics Market, by Product
6.1. Introduction
6.2. Instruments
6.2.1. Systems
6.2.2. Imagers and Scanners
6.3. Kits and Reagents
6.3.1. Testing Kits
6.3.2. Probes
6.3.3. Reagents
6.4. Software
6.5. Services
6.6. Consumables/Accessories
7. Molecular Cytogenetics Market, by Application
7.1. Introduction
7.2 Oncology
7.3 Genetic Disorders
7.4 Personalized Medicines
7.5 Other Applications
8. Molecular Cytogenetics Market, by End-User
8.1. Introduction
8.2. Pharmaceutical and Biotechnology Companies
8.3. Clinical and Diagnostic Laboratories
8.4. Academic Institutes
8.5. Others
9. Molecular Cytogenetics Market, by Geography
9.1. Introduction
9.2. North America
9.2.1. U.S.
9.2.2. Canada
9.3. Europe
9.3.1. Germany
9.3.2. France
9.3.3. U.K.
9.3.4. Italy
9.3.5. Spain
9.3.6. Rest of Europe
9.4. Asia-Pacific
9.4.1. China
9.4.2. India
9.4.3. Japan
9.4.4. Rest of Asia-Pacific
9.5. Rest of World
9.5.1. Latin America
9.5.2. Middle East & Africa
10. Competitive Landscape
10.1. Introduction
10.2. New Product Launches & Enhancements
10.3. Acquisitions & Mergers
10.4. Expansions
10.5. Agreements, Collaborations, and Partnerships
11. Company Profiles (Includes Business Overview, Financial Overview, Product Portfolio, and Strategic Developments)
11.1. Thermo Fisher Scientific
11.2. Abbott Laboratories
11.3. Agilent Technologies
11.4. Perkinelmer
11.5. Bio-Rad Laboratories, Inc.
11.6. Applied Spectral Imaging, Inc.
11.7. Quest Diagnostics
11.8. Roche Holding AG
11.9. Danaher Corporation
11.10. Illumina, Inc.
11.11. Oxford Gene Technology
11.12 Others
12. Appendix
12.1. Questionnaire
12.2. Available Customization
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