From USD 1.8 billion in 2022 to USD 3.2 billion by 2031, the worldwide automated liquid handling market is expected to expand at a CAGR of 8.1% Currently, North America rules the market.
Rising need for high-throughput screening in drug development, growing attention on lab automation, and expanding acceptance in genomics and proteomics research are driving notable expansion of the automated liquid handling market. Modern laboratories all across different sectors depend on automated liquid handling systems since technological developments in robotics and artificial intelligence are improving their capacities and efficiency.
Market Trend: Integration of machine learning and artificial intelligence in systems of liquid handling
Automated liquid handling systems' incorporation of artificial intelligence and machine learning is transforming laboratory processes. These cutting-edge technologies improve data analysis tools, optimize systems, and allow predictive maintenance. Liquid handlers driven by artificial intelligence can lower errors, adjust to changing experimental settings, and raise general efficiency. More clever and autonomous liquid handling solutions driven by this trend are attracting investments from both established companies and startups in the industry.
Moreover, real-time monitoring and liquid handling process modification made possible by artificial intelligence guarantees better accuracy and repeatability of findings. In complicated applications like drug development and customized treatment, especially valuable is the capacity to learn from earlier studies and propose enhancements. As artificial intelligence develops, we might anticipate to see more sophisticated liquid handling systems able to manage ever difficult jobs with minimum human involvement, hence quickening research and development in many different scientific disciplines.
Market Driver: Growing need in drug development for high-throughput screening
The automated liquid handling market is mostly driven by the increasing attention of the pharmaceutical sector on high-throughput screening (HTS) for drug development. HTS calls for fast processing of many samples, which is practically hard to accomplish effectively and precisely with hand techniques. By allowing researchers to rapidly screen hundreds of compounds, automated liquid handling devices help to greatly speed the drug development process and lower the time-to--market for new treatments.
Furthermore, the growing complexity of drug discovery techniques—personalized medicine and biologics research among other things—requests more sophisticated and exact liquid handling capabilities. With great accuracy and reproducibility, automated systems can manage a great spectrum of volumes—from nanoliters to milliliters. Reliable data generation in early-stage drug research depends on this accuracy; even minor mistakes can result in misleading positives or negatives. Advanced automated liquid handling systems are predicted to be much in demand in the next years as pharmaceutical businesses keep extensively investing in R&D to keep competitive advantage.
Market Restrain: Large initial outlay of funds and maintenance expenses
Particularly for small to medium-sized labs and academic research organizations, the large upfront expenses connected with obtaining and using automated liquid handling systems create a major obstacle to market development. Not only for the hardware but also for software, training, and connection with current laboratory infrastructure, these advanced systems can demand significant initial expenditure. Further expenses of ownership include possible improvements, calibration, and continuous maintenance.
The fast speed of technical developments in the field, which might rapidly make current solutions obsolete, aggravates the financial load even more. This causes uncertainty among prospective purchasers who worry their investment might become out-of-date in few years. Many companies find it difficult to justify these expenses versus conventional manual processes, particularly in cases when instantaneous return on investment is not clear-cut. Market companies are looking at more flexible price structures like leasing possibilities and pay-per-use schemes to remove this constraint and enable automated liquid handling technologies to be more easily available to a wider spectrum of laboratories.
Mostly in the market are automated liquid handlers.
Comprising the most portion by product type, automated liquid handlers are the pillar of the automated liquid handling market. Modern laboratories depend on these sophisticated equipment since they are made to carry out a wide spectrum of liquid handling chores with great efficiency and accuracy.
The flexibility and capacity of automated liquid handlers to greatly increase workflow productivity help to explain their predominance. From naniliters to milliliters, these systems can manage a range of liquid volumes and accomplish difficult chores such serial dilutions, plate reformatting, and sample preparation for different analytical methods. The need for advanced automated liquid handlers is predicted to rise gradually as laboratories across sectors keep giving automation top priority in order to boost throughput and lower human mistake.
Leading the market with sophisticated research infrastructure is North America.
Currently holding the most market share and dominating the automated liquid handling market is North America. The strong research infrastructure of the area, significant investments in life sciences and pharmaceutical R&D, and early adoption of innovative laboratory technology define this leading role largely.
Particularly the United States is quite important in promoting market expansion in North America. Strong demand for automated liquid handling solutions results from the country's strong biotechnology and pharmaceutical industries as well as from large government support of research facilities. Furthermore driving ongoing development and acceptance of modern liquid handling technology in the area are significant market participants and an innovative culture.
Moreover, the demand for high-throughput screening and accurate liquid handling features is being driven by North America's growing attention on customized medicine and genomics research. Laboratory automation is also being embraced by regional academic and research facilities in order to improve research output and repeatability. These elements, together with the robust regulatory system and healthcare system of the area, help North America to keep its leadership in the automated liquid handling market for the foreseeable future.
Intense competition among established companies and creative startups defines the automated liquid handling sector. With their complete product lines and worldwide presence, key market leaders including Tecan Group, Hamilton Company, and Thermo Fisher Scientific rule. These businesses keep spending in R&D to bring cutting-edge technologies including enhanced precision and artificial intelligence integration. Gilson and Eppendorf, among mid-sized businesses, concentrate on regional markets and specialized applications. Particularly targeting small to medium-sized laboratories, emerging entrepreneurs are upsetting the market with innovative technologies and affordable solutions. As businesses try to increase their technological capacity and market presence, strategic alliances, mergers, and acquisitions are rather frequent. Customized and application-specific liquid handling systems' increasing demand is inspiring innovation and diversification in product offers.
Tecan Group Ltd.
Hamilton Company
Thermo Fisher Scientific, Inc.
PerkinElmer, Inc.
Agilent Technologies, Inc.
Danaher Corporation
Eppendorf AG
Aurora Biomed Inc.
Gilson, Inc.
Analytik Jena AG
Mettler-Toledo International Inc.
Corning Incorporated
1. INTRODUCTION
1.1. Market Definition
1.2. Study Scope
1.3. Currency Conversion
1.4. Study Period (2022- 2031)
1.5. Regional Coverage
2. RESEARCH METHODOLOGY
2.1. Primary Research
2.2. Secondary Research
2.3. Company Share Analysis
2.4. Data Triangulation
3. EXECUTIVE SUMMARY
3.1. Global Automated Liquid Handling Market (2018 – 2022)
3.2. Global Automated Liquid Handling Market (2023 – 2031)
3.2.1. Market Segment By Product Type (2023 – 2031)
3.2.2. Market Segment By Modality (2023 – 2031)
3.2.3. Market Segment By Procedure (2023 – 2031)
3.2.4. Market Segment By End-user (2023 – 2031)
4. MARKET DYNAMICS
4.1. Market Trends
4.1.1. Integration of artificial intelligence and machine learning in liquid handling systems
4.1.2. Increasing adoption of cloud-based laboratory management systems
4.1.3. Growing demand for modular and scalable liquid handling solutions
4.2. Market Drivers
4.2.1. Increasing demand for high-throughput screening in drug discovery
4.2.2. Rising focus on laboratory automation and efficiency
4.2.3. Advancements in genomics and proteomics research
4.3. Market Restraints
4.3.1. High initial investment and maintenance costs
4.3.2. Complexity in system integration and user training
4.4. Porter's Five Forces Analysis
4.4.1. Threat of New Entrants
4.4.2. Bargaining Power of Buyers/Consumers
4.4.3. Bargaining Power of Suppliers
4.4.4. Threat of Substitute Products
4.4.5. Intensity of Competitive Rivalry
4.5. Supply Chain Analysis
4.6. Pricing Analysis
4.7. Regulatory Analysis
4.8. Pipeline Analysis
5. BY PRODUCT TYPE (MARKET VALUE (US$ MILLION) – 2022-2031*)
5.1. Automated Liquid Handlers
5.2. Reagents & Consumables
5.3. Software
6. BY MODALITY
6.1. Standalone
6.2. Integrated
7. BY PROCEDURE
7.1. Serial Dilution
7.2. Plate Reformatting
7.3. PCR Setup
7.4. Others
8. BY END-USER
8.1. Pharmaceutical & Biotechnology Companies
8.2. Academic & Research Institutes
8.3. Contract Research Organizations
8.4. Others
9. GEOGRAPHY
9.1. North America
9.1.1. United States
9.1.2. Canada
9.1.3. Mexico
9.2. South America
9.2.1. Brazil
9.2.2. Argentina
9.2.3. Rest of South America
9.3. Europe
9.3.1. Germany
9.3.2. United Kingdom
9.3.3. France
9.3.4. Italy
9.3.5. Spain
9.3.6. Russia
9.3.7. Rest of Europe
9.4. Asia-Pacific
9.4.1. China
9.4.2. Japan
9.4.3. India
9.4.4. Australia
9.4.5. South Korea
9.4.6. Rest of Asia-Pacific
9.5. Middle-East
9.5.1. UAE
9.5.2. Saudi Arabia
9.5.3. Turkey
9.5.4. Rest of Middle East
9.6. Africa
9.6.1. South Africa
9.6.2. Egypt
9.6.3. Rest of Africa
10. COMPETITVE LANDCAPE
10.1. Key Developments
10.2. Company Market Share Analysis
10.3. Product Benchmarking
11. SWOT ANALYSIS
12. COMPANY PROFILES
12.1. Tecan Group Ltd.
12.2. Hamilton Company
12.3. Thermo Fisher Scientific, Inc.
12.4. PerkinElmer, Inc.
12.5. Agilent Technologies, Inc.
12.6. Danaher Corporation
12.7. Eppendorf AG
12.8. Aurora Biomed Inc.
12.9. Gilson, Inc.
12.10. Analytik Jena AG
12.11. Mettler-Toledo International Inc.
12.12. Corning Incorporated (*LIST NOT EXHAUSTIVE)
13. MARKET OPPORTUNITIES
By Product Type:
Automated Liquid Handlers
Reagents & Consumables
Software
By Modality:
Standalone
Integrated
By Procedure:
Serial Dilution
Plate Reformatting
PCR Setup
Others
By End-user:
Pharmaceutical & Biotechnology Companies
Academic & Research Institutes
Contract Research Organizations
Others
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