The "In Vitro Diagnostics Market, Industry Trends and Global Forecasts to 2035: Distribution by Test Type, Type of Offering, Type of Technology, Therapeutic Area, End Users and Geographical Regions" report has been added to ResearchAndMarkets.com's offering.
The In Vitro Diagnostics Market is valued at USD 108 billion in 2024 growing at a CAGR of 5.2% during the forecast period 2024-2035
The report provides a comprehensive estimate of the current IVD market size, opportunity, and future growth potential from 2024 to 2035. Our analysis is based on multiple parameters, adoption trends, and primary validations. We have provided an informed estimate of market evolution, including the likely distribution of current and forecasted opportunity. To account for future uncertainties, we have also presented three forecast scenarios: conservative, base, and optimistic, representing different tracks of the industry's growth. This detailed analysis helps stakeholders understand the market's trajectory and make informed decisions.
In vitro diagnostic tests (IVD) are laboratory tests that examine human samples, such as blood or tissue, outside the human body. The term "in vitro" comes from Latin, meaning "within the glass," which refers to the testing of biological samples in a controlled environment. These tests play a crucial role in diagnosing diseases, monitoring treatment progress, and predicting healthcare outcomes. IVD products are used in both industrial and clinical settings, and despite being non-invasive, they are subject to the same regulatory requirements as medical devices.
The in vitro diagnostic industry offers a wide range of products, from simple self-test glucose monitoring devices to complex laboratory procedures. These tests can identify blood types, diagnose cancer, and profile kidney function, among other applications. According to the World Health Organization, there are over 40,000 IVD products available in the market, highlighting the importance of diagnostics in healthcare.
In fact, over 70% of healthcare decisions are based on laboratory test results, underscoring the critical role of IVD products in patient care. Given the benefits of rapid diagnostic results and improved patient outcomes, the global in vitro diagnostics market is expected to grow at a healthy rate over the forecast period. The growth of the IVD market can be attributed to factors such as increasing demand for point-of-care diagnostics devices, rapid testing, and the growing prevalence of chronic diseases.
Research Coverage:
- This report provides an overview of the leading players in the in vitro diagnostics (IVD) market. The analysis includes information on their year of establishment, company size, location of headquarters and annual revenues of the players (FY23, USD billion). Further, it highlights a detailed assessment of the in vitro diagnostic solutions based on several relevant parameters, such as type of technology used (clinical chemistry, hematology, immunoassay, molecular diagnostics, urinalysis), diagnostic applications (autoimmune, cardiology, diabetes, gynecology, healthcare-associated infections, infectious diseases, oncological disorders, renal, sexually transmitted infections / diseases).
- This analysis evaluates the top players in the in vitro diagnostics market, considering factors such as years of experience, company competitiveness, and technological capabilities. It provides insights into their strengths and weaknesses.
- Comprehensive company profiles of leading IVD market players are provided, featuring detailed information on each company's background, financial performance, product offerings, and recent developments. This includes a brief overview, financial information, in vitro diagnostic products and services, recent developments, and expert analysis and future outlook for each company.
- Profiles of prominent IVD players are presented, highlighting key company details, financial performance, and product offerings. Each profile includes a brief overview, including year of establishment, number of employees, headquarters location, and executive team members. Additionally, financial information, in vitro diagnostic products and services, recent developments, and expert analysis of future outlook are provided for each company.
Leading In Vitro Diagnostics Market Companies
- Abbott Laboratories
- Agilent
- Becton Dickinson
- bioMerieux
- Bio-Rad
- Danaher Corporation
- DiaSorin
- Exact Sciences
- Fujifilm
- Gold Standard Diagnostics
- Grifols
- Hologic
- Illumina
- LabCorp
- Qiagen
- Quest Diagnostics
- QuidelOrtho
- Roche
- Siemens Healthineers
- Sysmex
- Thermo Fisher Scientific
- Werfen
Key Market Segments
Test Type
- Laboratory Testing
- Point-of-Care Testing
Type of Offering
- Reagents
- Instruments
- Services
Type of Technology
- Clinical Chemistry
- Hematology
- Immunoassay
- Molecular Diagnostics
- Others
Therapeutic Area
- Autoimmune Diseases
- Cardiovascular Disorders
- Diabetes
- Infectious Diseases
- Renal Disorders
- Oncological Disorders
- Others
End Users
- Hospitals
- Laboratories
- Others
Key Topics Covered:
1. PREFACE
2. RESEARCH METHODOLOGY
3. ECONOMIC AND OTHER PROJECT SPECIFIC CONSIDERATIONS
3.1. Chapter Overview
3.2. Market Dynamics
4. INTRODUCTION
4.1. Chapter Overview
4.2. Overview of In Vitro Diagnostics
4.3. Classification of In Vitro Diagnostic Products
4.4. Types of In Vitro Diagnostic Tests
4.5. Therapeutic Areas Targeted by In Vitro Diagnostic Solutions
4.6. Challenges in the In Vitro Diagnostics Domain
4.7. Recent Developments in the In Vitro Diagnostics Domain
5. MARKET OVERVIEW: LEADING IN VITRO DIAGNOSTICS SOLUTIONS
5.1. Chapter Overview
5.2. In Vitro Diagnostics: Overall Market Landscape
5.3. In Vitro Diagnostics: Solution Providers Landscape
6. IN VITRO DIAGNOSTIC SOLUTION PROVIDERS: COMPANY COMPETITIVENESS ANALYSIS
6.1. Methodology and Key Parameters Assessed
6.2. In Vitro Diagnostic Solution Providers: Competitiveness Analysis
6.3. Benchmarking Analysis: Leading In Vitro Diagnostic Solutions Providers
6.3.1. Benchmarking of Companies
6.3.1.1. Abbott: Benchmarking Analysis
6.3.1.2. Agilent: Benchmarking Analysis
6.3.1.3. BD: Benchmarking Analysis
6.3.1.4. bioMerieux: Benchmarking Analysis
6.3.1.5. Bio-Rad: Benchmarking Analysis
6.3.1.6. Danaher: Benchmarking Analysis
6.3.1.7. Qiagen: Benchmarking Analysis
6.3.1.8. QuidelOrtho: Benchmarking Analysis
6.3.1.9. Roche: Benchmarking Analysis
6.3.1.10. Siemens Healthineers: Benchmarking Analysis
6.3.2. Benchmarking of Parameters
6.3.2.1. Leading In Vitro Diagnostics Solution Providers: Benchmarking by Competitiveness
6.3.2.2. Leading In Vitro Diagnostic Solution Providers: Benchmarking by Type of Technology Score
6.3.2.3. Leading In Vitro Diagnostic Solution Providers: Benchmarking by Diagnostic Applications Score
7. DETAILED COMPANY PROFILES
7.1. Chapter Overview
7.2. Abbott
7.2.1. Company Overview
7.2.2. Financial Information
7.2.3. In Vitro Diagnostic Offerings
7.2.4. Recent Developments and Future Outlook
7.3. Agilent
7.4. BD
7.5. bioMerieux
7.6. Bio-Rad
7.7. Danaher
7.8. Qiagen
7.9. Quest Diagnostics
7.10. QuidelOrtho
7.11. Roche
7.12. Siemens Healthineers
7.13. Sysmex
8. SHORT COMPANY PROFILES
8.1. Chapter Overview
8.2. DiaSorin
8.2.1. Company Overview
8.2.2. Financial Information
8.2.3. Recent Developments
8.2.4. In Vitro Diagnostic Offerings
8.3. Exact Sciences
8.4. Fujifilm
8.5. Gold Standard Diagnostics
8.6. Grifols
8.7. Hologic
8.8. Illumina
8.9. LabCorp
8.10. Thermo Fisher Scientific
8.11. Werfen
9. PORTER'S FIVE FORCES ANALYSIS
9.1. Chapter Overview
9.2. Methodology and Assumptions
9.3. Key Parameters
9.4. Porter's Five Force Analysis: Harvey Ball Analysis
9.5. Concluding Remarks
10. MARKET IMPACT ANALYSIS: DRIVERS, RESTRAINTS, OPPORTUNITIES AND CHALLENGES
10.1. Chapter Overview
10.2. Market Drivers
10.3. Market Restraints
10.4. Market Opportunities
10.5. Market Challenges
10.6. Conclusion
11. GLOBAL IN VITRO DIAGNOSTICS MARKET
11.1. Chapter Overview
11.2. Assumptions and Methodology
11.3. Global In Vitro Diagnostics Market, Historical Trends (2018-2023) and Forecasted Estimates (2024-2035)
11.3.1. Scenario Analysis
11.3.1.1. Conservative Scenario
11.3.1.2. Optimistic Scenario
11.3.2. Key Market Segmentations
12. IN VITRO DIAGNOSTICS MARKET, BY TEST TYPE
12.1. Chapter Overview
12.2. Assumptions and Methodology
12.3. In Vitro Diagnostics Market: Distribution by Test Type, 2018, 2024 and 2035
12.4. Data Triangulation and Validation
13. IN VITRO DIAGNOSTICS MARKET, BY TYPE OF OFFERING
13.1. Chapter Overview
13.2. Assumptions and Methodology
13.3. In Vitro Diagnostics Market: Distribution by Type of Offering, 2018, 2024 and 2035
13.4. Data Triangulation and Validation
14. IN VITRO DIAGNOSTICS MARKET, BY TYPE OF TECHNOLOGY
14.1. Chapter Overview
14.2. Assumptions and Methodology
14.3. In Vitro Diagnostics Market: Distribution by Type of Technology, 2018, 2024 And 2035
14.4. Data Triangulation and Validation
15. IN VITRO DIAGNOSTICS MARKET, BY THERAPEUTIC AREA
15.1. Chapter Overview
15.2. Assumptions and Methodology
15.3. In Vitro Diagnostics Market: Distribution by Therapeutic Area, 2018, 2024 and 2035
15.4. Data Triangulation and Validation
16. IN VITRO DIAGNOSTICS MARKET, BY END USERS
16.1. Chapter Overview
16.2. Assumptions and Methodology
16.3. In Vitro Diagnostics Market: Distribution by End Users, 2018, 2024 and 2035
16.4. Data Triangulation and Validation
17. IN VITRO DIAGNOSTICS MARKET, BY GEOGRAPHY
17.1. Chapter Overview
17.2. Assumptions and Methodology
17.3. In Vitro Diagnostics Market: Distribution by Key Geographies, 2018, 2024 And 2035
18. IN VITRO DIAGNOSTICS MARKET, BY LEADING PLAYERS
18.1. Chapter Overview
18.2. Assumptions and Methodology
18.3. In Vitro Diagnostics Market: Distribution of Leading Players by Annual Revenue (FY23, USD Billion)
19. EXECUTIVE INSIGHTS
19.1. Chapter Overview
19.2. Teco Diagnostics
19.2.1. Company Snapshot
19.2.2. Interview Transcript: Kiranjit Kaur Dhaliwal, Research and Development Associate (Q2 2024)
19.3. BD Biosciences
19.3.1. Company Snapshot
19.3.2. Interview Transcript: Milan Aggarwal, Senior Scientist (Q2 2024)
20. APPENDIX I: TABULATED DATA
21. APPENDIX II: LIST OF COMPANIES AND ORGANIZATIONS
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