
Liquid Handling System Market - Global Outlook & Forecast 2022-2027
Description
Liquid Handling System Market - Global Outlook & Forecast 2022-2027
The global liquid handling system market is expected to grow at a CAGR of 6.79% during 2022-2027.
INDUSTRY INSIGHTS
Liquid handling involves the movement of liquid reagents through various laboratories' diverse range of large-scale analyzers, instruments, and platforms. The liquid handling tools are used in various laboratory applications ranging from research to clinical applications to handle various samples with accurate measurements.
Growth in the global liquid handling system market is driven primarily by the growth of the pharmaceutical biotechnology sector, increased R&D spending by biopharmaceutical companies, and growth in life sciences research backed by favorable funding scenarios.
The research associations and other medical institutions are conducting various clinical trials to develop suitable anti-COVID drugs and testing devices. They are expected to support the global liquid handling system market growth. For example, in 2020, Hamilton announced a test job for the automated COVID-19 testing workstations and high-speed priority tracking of all orders related to fighting virus pandemics.
KEY HIGHLIGHTS
a) R&D is the lifeline of the pharmaceutical industry. The success of large pharmaceutical companies depends almost entirely on the discovery and development of new drugs, and their capital spending (fixed investment) allocation reflects this fact. Average spending is over 25% of revenue, but some companies spend significantly more.
b) Biopharmaceutical research and development continued at a record pace in 2021, despite the COVID-19 pandemic. According to the data, 5,500 newly planned clinical trials launched last year have increased by 14% since 2020.
c) Approval and launch of new drugs continued to accelerate in 2021, with 84 new drugs entering the market. This is twice as much as it was five years ago. With more than 6,000 product pipelines under active development, up 68% compared to 2016, the pace of pharma R&D will be maintained over the next few years.
MARKET TRENDS AND DRIVERS
A Surge in Demand for Liquid Handling Workstations
INSIGHTS BY PRODUCT
Among all product segments in the global liquid handling system market, the pipettes segment reported a significant share of around 28.41% in 2021. The pipette segment is estimated to be higher because there are both fixed volume pipettes and adjustable volume pipettes on the market. The former is more accurate and precise, while the latter has a broader scope, so the operator can choose different volumes depending on the experiment's needs. Electronic pipettes are considered more accurate because they are user experience independent and can achieve self-calibration with visual feedback. After all, users can get the wrong volume, even if it requires thousands of trials each day.
Segmentation by Product
The method segment is divided into electronic, automated, and manual. The electronic segment reported a major share in 2021 and is estimated to be higher because electronic pipettes are an efficient approach to boost sample throughput without using a robot and are an excellent ergonomic alternative to manual pipettes. Electronic pipettes frequently allow the user to write unique programs on the device, allowing the pipettes to be customized to meet various application demands. Electronic pipettes, like manual pipettes, come in various configurations, including single channel, multi-channel, 96-well, and 364-well.
Segmentation by Method
The global liquid handling system market on the basics of application is dominated by the drug discovery & development segment in 2021. The growth can be attributed to the segment as drug discovery has largely undergone a revolution over the last two decades due to the widespread adoption of automated liquid handling. Automated liquid handling systems have been implemented across the whole pharmaceutical and biotechnology pipeline due to a competitive necessity to enhance throughput and increase production while assuring the highest accuracy and repeatability standards. Laboratory automation, which is available on the market, is one solution for this set of issues. High-throughput screening allows researchers to quickly analyze the activity of many chemicals against a specific biological target, which is made possible by automated robots and workstations.
Segmentation by Application
Among all end-users, the pharma & biotech companies segment reported a significant share of 31.01% in 2021 in the global liquid handling system market. The pharma & biotech companies market segment is estimated to be higher because, as an industry, pharma & biotech companies research, develop, and commercialize drugs primarily made from artificial sources. Drug development can take years to go through the R&D phase before reaching the market. Part of the long R&D process is approval by the Food and Drug Administration (FDA). As the pharma companies are investing billions of dollars in R&D of the drug product, they require sophisticated liquid handling systems to rapidly perform the task such as drug sample screening, analysis, etc.
Segmentation by End User
Among all geography, the North American segment reported a significant share of around 31.01% in 2021 in the global liquid handling system market. The North America segment is estimated to be higher because the liquid handling system market in North America has been improving alongside the growth in drug research & development, genomics & proteomics, and growth in the R&D activities in research and academic laboratory. The North American liquid handling system market is well established with prominent laboratory equipment companies. The rise in drug development has greatly increased the demand for ALHS in this region. The U.S. is the major revenue contributor in North America mainly due to an increase in the high demand for cell and gene therapy development, demand for genomics, and proteomics, reflecting the growth in awareness of personalized medicines and their benefits against chronic diseases.
Europe accounted for the second-highest share in the global liquid handling system market in 2021. Europe has developed healthcare infrastructure and has significantly contributed to research and development. Their research labs are equipped with advanced infrastructure to perform complex research. These laboratories use different types of liquid handling, such as electronic pipettes and ALHS, which are significant tools to cater to lab research needs.
Segmentation by Geography
Japan
India
South Korea
Australia
Canada
France
UK
Italy
Spain
Mexico
Argentina
Saudi Arabia
South Africa
UAE
COMPETITIVE ANALYSIS
The liquid handling system market is highly dynamic, with several global and local players offering a diverse range of LHS and associated software. The market is consolidated with the global players accounting for high shares. In 2021, Thermo Fisher Scientific, Danaher, METTLER TOLEDO, Eppendorf, Agilent Technologies, Tecan, and Corning Incorporated were the leading players that accounted for significant shares in the global liquid handling system market.
The global players focus on developing innovative products and expanding their product portfolio to remain competitive in the market. They are investing extensively in R&D and product development activities to expand their product portfolio. Manufacturers such as Thermo Fisher Scientific, Danaher, METTLER TOLEDO, and Eppendorf continuously focus on product development and offer sophisticated liquid handling systems with new technology to increase their market presence.
Key Vendors
1. What is the size of the global liquid handling system market?
2. What is the growth rate of the global liquid handling system market?
3. What are the key driving factors in the liquid handling system market?
4. Who are the key vendors in the global liquid handling system market?
5. Which region holds the largest global liquid handling system market share?
6. What is the expected growth rate of the electronic method segment in the liquid handling system market by 2027?
The global liquid handling system market is expected to grow at a CAGR of 6.79% during 2022-2027.
INDUSTRY INSIGHTS
Liquid handling involves the movement of liquid reagents through various laboratories' diverse range of large-scale analyzers, instruments, and platforms. The liquid handling tools are used in various laboratory applications ranging from research to clinical applications to handle various samples with accurate measurements.
Growth in the global liquid handling system market is driven primarily by the growth of the pharmaceutical biotechnology sector, increased R&D spending by biopharmaceutical companies, and growth in life sciences research backed by favorable funding scenarios.
The research associations and other medical institutions are conducting various clinical trials to develop suitable anti-COVID drugs and testing devices. They are expected to support the global liquid handling system market growth. For example, in 2020, Hamilton announced a test job for the automated COVID-19 testing workstations and high-speed priority tracking of all orders related to fighting virus pandemics.
KEY HIGHLIGHTS
a) R&D is the lifeline of the pharmaceutical industry. The success of large pharmaceutical companies depends almost entirely on the discovery and development of new drugs, and their capital spending (fixed investment) allocation reflects this fact. Average spending is over 25% of revenue, but some companies spend significantly more.
b) Biopharmaceutical research and development continued at a record pace in 2021, despite the COVID-19 pandemic. According to the data, 5,500 newly planned clinical trials launched last year have increased by 14% since 2020.
c) Approval and launch of new drugs continued to accelerate in 2021, with 84 new drugs entering the market. This is twice as much as it was five years ago. With more than 6,000 product pipelines under active development, up 68% compared to 2016, the pace of pharma R&D will be maintained over the next few years.
MARKET TRENDS AND DRIVERS
A Surge in Demand for Liquid Handling Workstations
- In today's research and clinical genomics labs, sample preparation is an experimental bottleneck, especially for high-throughput next-generation sequencing (NGS). More and more genomics labs are looking to automate liquid processing to make sequence workflows more efficient and cost-effective. The industrial-scale genomics lab also employs automation to increase productivity. For example, screening genes that encode many proteins to determine the structure of a protein requires several experiments under different conditions. Integrating microarray experiments and automation has enabled high-throughput analysis of sequences and simultaneous monitoring of thousands of genes in large biotechnology companies.
- The liquid processing workstation must meet standard requirements such as high throughput, high precision, and high precision, especially in small quantities for use in life science labs. In addition, such robots on the market have a variety of characteristics that suit specific laboratory requirements.
- The liquid processing robots on the market meet NGS's wide range of automation needs. Some, such as PerkinElmer's Sciclone NGSxiQ workstation, take this one step further by offering on-deck thermal cycling and chip box storage for full automation of the NGS protocol. Agilent's Bravo NGS, unlike many other robots, has an advanced microplate management system that can include a microplate thermal sealer, a centrifuge, and a plate barcode labeler.
- Over the past century, life science research has helped scientists discover the biological basis of life and develop ways to overcome illness. Modern Life Science Institutes often require high-throughput liquid processing for efficiency reasons. For example, the number of genes encoding species of proteins involved in protein structure determination is enormous, somewhere between 20,000 and 25,000.
- Liquid handling plays a central role in the Life Science Institute. Experiments such as gene sequencing, protein crystallization, antibody testing, and drug screening require liquid biosamples to be moved between different-sized containers and dispensed into different types of substrates.
- Kevin Rosovsky, CEO of Caliper Life Sciences, said laboratory automation had received great attention in recent years. The robotic technology that has long been found in factory automation is being used for automated liquid handling. In addition, new application-specific devices are constantly being developed for this purpose. “Getting 500,000 test points a day opens up a new strategy in drug discovery.”
- The pharmaceutical and healthcare industry's response to the COVID-19 pandemic has led to the development of over 1000 vaccine and therapeutic candidates, with nearly 5,000 clinical trials underway. This revolutionary explosion, coupled with a shift to more outsourcing by pharmaceutical and biotechnology companies, has created a surge in demand for liquid handling systems.
- The range of bioanalysis required is overwhelming. New therapies require pharmacokinetic, immunogenicity, and biomarker assays. Nucleic acid amplification test (NAAT) and antigen test are needed for the diagnosis of COVID-19 and registration of clinical trials. Apart from the development of therapeutics and vaccines for COVID19, millions of tests are performed every day globally.
- As of June 2, 2022, the U.S. conducted more than one billion tests for COVID-19. The U.S. is the most abundant country in the world. Russia has conducted more than 273 million tests. The COVID-19 pandemic puts a heavy burden on healthcare systems around the world. Thus, during COVID-19, the laboratories are under strain with a large volume of samples of COVID-19 vaccines, therapeutics drugs, and COVID-19 tests. The laboratories need large numbers of liquid handling equipment to accelerate the growth of the sample’s performance. The millions of COVID-19 testing are required for the automated system to manage the large scale of samples during COVID-19. Such factors of the pandemic have boosted the growth of the global automated liquid handling system market.
INSIGHTS BY PRODUCT
Among all product segments in the global liquid handling system market, the pipettes segment reported a significant share of around 28.41% in 2021. The pipette segment is estimated to be higher because there are both fixed volume pipettes and adjustable volume pipettes on the market. The former is more accurate and precise, while the latter has a broader scope, so the operator can choose different volumes depending on the experiment's needs. Electronic pipettes are considered more accurate because they are user experience independent and can achieve self-calibration with visual feedback. After all, users can get the wrong volume, even if it requires thousands of trials each day.
Segmentation by Product
- Pipettes
- Automated Liquid Handling System (ALHS)
- Microplate Reagent Dispensers (MRD)
- Burettes
- Others
The method segment is divided into electronic, automated, and manual. The electronic segment reported a major share in 2021 and is estimated to be higher because electronic pipettes are an efficient approach to boost sample throughput without using a robot and are an excellent ergonomic alternative to manual pipettes. Electronic pipettes frequently allow the user to write unique programs on the device, allowing the pipettes to be customized to meet various application demands. Electronic pipettes, like manual pipettes, come in various configurations, including single channel, multi-channel, 96-well, and 364-well.
Segmentation by Method
- Electronic
- Automated
- Manual
- User-friendly, effortless, and efficient
- Precise and accurate
- Simplifying complex pipetting
- Time-saving
The global liquid handling system market on the basics of application is dominated by the drug discovery & development segment in 2021. The growth can be attributed to the segment as drug discovery has largely undergone a revolution over the last two decades due to the widespread adoption of automated liquid handling. Automated liquid handling systems have been implemented across the whole pharmaceutical and biotechnology pipeline due to a competitive necessity to enhance throughput and increase production while assuring the highest accuracy and repeatability standards. Laboratory automation, which is available on the market, is one solution for this set of issues. High-throughput screening allows researchers to quickly analyze the activity of many chemicals against a specific biological target, which is made possible by automated robots and workstations.
Segmentation by Application
- Drug Discovery & Development (DDD)
- Clinical Diagnostics
- Proteomics & Genomics
- Others
Among all end-users, the pharma & biotech companies segment reported a significant share of 31.01% in 2021 in the global liquid handling system market. The pharma & biotech companies market segment is estimated to be higher because, as an industry, pharma & biotech companies research, develop, and commercialize drugs primarily made from artificial sources. Drug development can take years to go through the R&D phase before reaching the market. Part of the long R&D process is approval by the Food and Drug Administration (FDA). As the pharma companies are investing billions of dollars in R&D of the drug product, they require sophisticated liquid handling systems to rapidly perform the task such as drug sample screening, analysis, etc.
Segmentation by End User
- Pharma & Biotech Companies (PBC)
- Academic & Research Labs/Centers (ARLC)
- Clinical Diagnostics Labs (CDL)
- Others End Users (OEU)Tankers
Among all geography, the North American segment reported a significant share of around 31.01% in 2021 in the global liquid handling system market. The North America segment is estimated to be higher because the liquid handling system market in North America has been improving alongside the growth in drug research & development, genomics & proteomics, and growth in the R&D activities in research and academic laboratory. The North American liquid handling system market is well established with prominent laboratory equipment companies. The rise in drug development has greatly increased the demand for ALHS in this region. The U.S. is the major revenue contributor in North America mainly due to an increase in the high demand for cell and gene therapy development, demand for genomics, and proteomics, reflecting the growth in awareness of personalized medicines and their benefits against chronic diseases.
Europe accounted for the second-highest share in the global liquid handling system market in 2021. Europe has developed healthcare infrastructure and has significantly contributed to research and development. Their research labs are equipped with advanced infrastructure to perform complex research. These laboratories use different types of liquid handling, such as electronic pipettes and ALHS, which are significant tools to cater to lab research needs.
Segmentation by Geography
- APAC
Japan
India
South Korea
Australia
- North America
Canada
- Europe
France
UK
Italy
Spain
- Latin America
Mexico
Argentina
- Middle East & Africa
Saudi Arabia
South Africa
UAE
COMPETITIVE ANALYSIS
The liquid handling system market is highly dynamic, with several global and local players offering a diverse range of LHS and associated software. The market is consolidated with the global players accounting for high shares. In 2021, Thermo Fisher Scientific, Danaher, METTLER TOLEDO, Eppendorf, Agilent Technologies, Tecan, and Corning Incorporated were the leading players that accounted for significant shares in the global liquid handling system market.
The global players focus on developing innovative products and expanding their product portfolio to remain competitive in the market. They are investing extensively in R&D and product development activities to expand their product portfolio. Manufacturers such as Thermo Fisher Scientific, Danaher, METTLER TOLEDO, and Eppendorf continuously focus on product development and offer sophisticated liquid handling systems with new technology to increase their market presence.
Key Vendors
- Thermo Fisher Scientific
- Agilent Technologies
- METTLER TOLEDO
- Tecan
- Danaher
- Eppendorf
- Corning Incorporated
- BrandTech Scientific
- Borosil
- BIOTEC
- CELLINK
- CooperSurgical Fertility Solutions
- FORMULATRIX
- Flow Robotics
- Gilson
- Greiner Bio-One International
- HiTec Zang
- Hudson Robotics
- Hamilton Company
- Ingersoll Rand
- Metrohm
- Orochem Technologies
- PerkinElmer
- HighRes Biosolutions
- Sartorius
- SPT Labtech
- TOMTEC IMAGING SYSTEMS
- Tianlong
- Vitrolife
- Wuhan Bonnin Technology
- Waters Corporation
- Integra Biosciences
- Peak Analysis and Automation
- Synchron Lab Automation
1. What is the size of the global liquid handling system market?
2. What is the growth rate of the global liquid handling system market?
3. What are the key driving factors in the liquid handling system market?
4. Who are the key vendors in the global liquid handling system market?
5. Which region holds the largest global liquid handling system market share?
6. What is the expected growth rate of the electronic method segment in the liquid handling system market by 2027?
Table of Contents
344 Pages
- 1 RESEARCH METHODOLOGY
- 2 RESEARCH OBJECTIVES
- 3 RESEARCH PROCESS
- 4 SCOPE & COVERAGE
- 4.1 MARKET DEFINITION
- 4.1.1 INCLUSIONS
- 4.1.2 EXCLUSIONS
- 4.1.3 MARKET ESTIMATION CAVEATS
- 4.2 BASE YEAR
- 4.3 SCOPE OF THE STUDY
- 4.3.1 MARKET SEGMENTATION BY PRODUCT
- 4.3.2 MARKET SEGMENTATION BY METHOD
- 4.3.3 MARKET SEGMENTATION BY APPLICATION
- 4.3.4 MARKET SEGMENTATION BY END USER
- 4.3.5 MARKET SEGMENTATION BY GEOGRAPHY
- 5 REPORT ASSUMPTIONS & CAVEATS
- 5.1 KEY CAVEATS
- 5.2 CURRENCY CONVERSION
- 5.3 MARKET DERIVATION
- 6 MARKET AT A GLANCE
- 7 INTRODUCTION
- 7.1 OVERVIEW
- 7.1.1 SURGE IN R&D INITIATIVES ACROSS LIFE SCIENCES SECTOR
- 7.1.2 APPLICATION OF LIQUID HANDLING IN PERSONALIZED MEDICINE/ GENOMICS
- 8 PREMIUM INSIGHTS
- 8.1 OVERVIEW
- 8.1.1 GLOBAL LIQUID HANDLING SYSTEM MARKET SCENARIO
- 8.1.2 MARKET SEGMENTATION
- 8.1.3 VENDOR ANALYSIS
- 9 MARKET OPPORTUNITIES & TRENDS
- 9.1 EXPANDING ROLE OF LIQUID HANDLING IN GENOMICS & PROTEOMICS
- 9.2 SURGE IN DEMAND FOR LIQUID HANDLING WORKSTATIONS
- 9.3 GROWING IMPORTANCE OF LAB AUTOMATION INTEGRATED WITH LIQUID HANDLING EQUIPMENT
- 10 MARKET GROWTH ENABLERS
- 10.1 DIVERSIFIED APPLICATIONS OF LIQUID HANDLING SYSTEMS IN LIFE SCIENCE INDUSTRY
- 10.2 INCREASE IN R&D ACTIVITIES & INVESTMENTS IN HEALTHCARE INDUSTRY
- 10.3 HIGH DEMAND FOR LIQUID HANDLING SYSTEMS TO MANAGE LARGE VOLUMES OF COVID-19 SAMPLES
- 10.4 FOCUS ON HIGH-THROUGHPUT SCREENING & DATA PRECISION
- 11 MARKET RESTRAINTS
- 11.1 HIGH COST OF LIQUID HANDLING SYSTEMS
- 11.2 RISK OF ERRORS IN LIQUID HANDLING
- 11.3 SLOW ADOPTION OF AUTOMATION AMONG SMALL AND MEDIUM-SIZED LABORATORIES
- 12 MARKET LANDSCAPE
- 12.1 MARKET OVERVIEW
- 12.2 MARKET SIZE & FORECAST
- 12.2.1 INSIGHTS BY GEOGRAPHY
- 12.2.2 INSIGHTS BY PRODUCT
- 12.2.3 INSIGHTS BY APPLICATION
- 12.2.4 INSIGHTS BY METHOD
- 12.2.5 INSIGHTS BY END USER
- 12.3 FIVE FORCES ANALYSIS
- 12.3.1 THREAT OF NEW ENTRANTS
- 12.3.2 BARGAINING POWER OF SUPPLIERS
- 12.3.3 BARGAINING POWER OF BUYERS
- 12.3.4 THREAT OF SUBSTITUTES
- 12.3.5 COMPETITIVE RIVALRY
- 13 PRODUCT
- 13.1 MARKET SNAPSHOT & GROWTH ENGINE
- 13.2 MARKET OVERVIEW
- 13.3 PIPETTE
- 13.3.1 MARKET OVERVIEW
- 13.3.2 MARKET SIZE & FORECAST
- 13.3.3 MARKET BY GEOGRAPHY
- 13.4 AUTOMATED LIQUID HANDLING SYSTEM
- 13.4.1 MARKET OVERVIEW
- 13.4.2 MARKET SIZE & FORECAST
- 13.4.3 MARKET BY GEOGRAPHY
- 13.5 MICROPLATE REAGENT DISPENSER
- 13.5.1 MARKET OVERVIEW
- 13.5.2 MARKET SIZE & FORECAST
- 13.5.3 MARKET BY GEOGRAPHY
- 13.6 BURETTE
- 13.6.1 MARKET OVERVIEW
- 13.6.2 MARKET SIZE & FORECAST
- 13.6.3 MARKET BY GEOGRAPHY
- 13.7 OTHERS
- 13.7.1 MARKET OVERVIEW
- 13.7.2 MARKET SIZE & FORECAST
- 13.7.3 MARKET BY GEOGRAPHY
- 14 METHOD
- 14.1 MARKET SNAPSHOT & GROWTH ENGINE
- 14.2 MARKET OVERVIEW
- 14.3 ELECTRONIC
- 14.3.1 MARKET OVERVIEW
- 14.3.2 MARKET SIZE & FORECAST
- 14.3.3 MARKET BY GEOGRAPHY
- 14.4 AUTOMATED
- 14.4.1 MARKET OVERVIEW
- 14.4.2 MARKET SIZE & FORECAST
- 14.4.3 MARKET BY GEOGRAPHY
- 14.5 MANUAL
- 14.5.1 MARKET OVERVIEW
- 14.5.2 MARKET SIZE & FORECAST
- 14.5.3 MARKET BY GEOGRAPHY
- 15 APPLICATION
- 15.1 MARKET SNAPSHOT & GROWTH ENGINE
- 15.2 MARKET OVERVIEW
- 15.3 DRUG DISCOVERY & DEVELOPMENT
- 15.3.1 MARKET OVERVIEW
- 15.3.2 MARKET SIZE & FORECAST
- 15.3.3 MARKET BY GEOGRAPHY
- 15.4 CLINICAL DIAGNOSTICS
- 15.4.1 MARKET OVERVIEW
- 15.4.2 MARKET SIZE & FORECAST
- 15.4.3 MARKET BY GEOGRAPHY
- 15.5 PROTEOMICS & GENOMICS
- 15.5.1 MARKET OVERVIEW
- 15.5.2 MARKET SIZE & FORECAST
- 15.5.3 MARKET BY GEOGRAPHY
- 15.6 OTHERS
- 15.6.1 MARKET OVERVIEW
- 15.6.2 MARKET SIZE & FORECAST
- 15.6.3 MARKET BY GEOGRAPHY
- 16 END USER
- 16.1 MARKET SNAPSHOT & GROWTH ENGINE
- 16.2 MARKET OVERVIEW
- 16.3 PHARMACEUTICAL & BIOTECHNOLOGY COMPANIES
- 16.3.1 MARKET OVERVIEW
- 16.3.2 MARKET SIZE & FORECAST
- 16.3.3 MARKET BY GEOGRAPHY
- 16.4 ACADEMIC & RESEARCH LABORATORIES/CENTERS
- 16.4.1 MARKET OVERVIEW
- 16.4.2 MARKET SIZE & FORECAST
- 16.4.3 MARKET BY GEOGRAPHY
- 16.5 CLINICAL DIAGNOSTIC LABORATORIES
- 16.5.1 MARKET OVERVIEW
- 16.5.2 MARKET SIZE & FORECAST
- 16.5.3 MARKET BY GEOGRAPHY
- 16.6 OTHERS
- 16.6.1 MARKET OVERVIEW
- 16.6.2 MARKET SIZE & FORECAST
- 16.6.3 MARKET BY GEOGRAPHY
- 17 GEOGRAPHY
- 17.1 MARKET SNAPSHOT & GROWTH ENGINE
- 17.2 GEOGRAPHIC OVERVIEW
- 18 NORTH AMERICA
- 18.1 MARKET OVERVIEW
- 18.2 MARKET SIZE & FORECAST
- 18.3 KEY COUNTRIES
- 18.3.1 US: MARKET SIZE & FORECAST
- 18.3.2 CANADA: MARKET SIZE & FORECAST
- 19 EUROPE
- 19.1 MARKET OVERVIEW
- 19.2 MARKET SIZE & FORECAST
- 19.3 KEY COUNTRIES
- 19.3.1 GERMANY: MARKET SIZE & FORECAST
- 19.3.2 FRANCE: MARKET SIZE & FORECAST
- 19.3.3 UK: MARKET SIZE & FORECAST
- 19.3.4 ITALY: MARKET SIZE & FORECAST
- 19.3.5 SPAIN: MARKET SIZE & FORECAST
- 20 APAC
- 20.1 MARKET OVERVIEW
- 20.2 MARKET SIZE & FORECAST
- 20.3 KEY COUNTRIES
- 20.3.1 CHINA: MARKET SIZE & FORECAST
- 20.3.2 INDIA: MARKET SIZE & FORECAST
- 20.3.3 JAPAN: MARKET SIZE & FORECAST
- 20.3.4 SOUTH KOREA: MARKET SIZE & FORECAST
- 20.3.5 AUSTRALIA: MARKET SIZE & FORECAST
- 21 LATIN AMERICA
- 21.1 MARKET OVERVIEW
- 21.2 MARKET SIZE & FORECAST
- 21.3 KEY COUNTRIES
- 21.3.1 BRAZIL: MARKET SIZE & FORECAST
- 21.3.2 MEXICO: MARKET SIZE & FORECAST
- 21.3.3 ARGENTINA: MARKET SIZE & FORECAST
- 22 MIDDLE EAST AND AFRICA
- 22.1 MARKET OVERVIEW
- 22.2 MARKET SIZE & FORECAST
- 22.3 KEY COUNTRIES
- 22.3.1 TURKEY: MARKET SIZE & FORECAST
- 22.3.2 SAUDI ARABIA: MARKET SIZE & FORECAST
- 22.3.3 SOUTH AFRICA: MARKET SIZE & FORECAST
- 22.3.4 UAE: MARKET SIZE & FORECAST
- 23 COMPETITIVE LANDSCAPE
- 23.1 COMPETITION OVERVIEW
- 23.2 MARKET SHARE ANALYSIS
- 24 KEY COMPANY PROFILES
- 24.1 THERMO FISHER SCIENTIFIC
- 24.1.1 BUSINESS OVERVIEW
- 24.1.2 THERMO FISHER SCIENTIFIC IN LIQUID HANDLING SYSTEMS MARKET
- 24.1.3 PRODUCT OFFERINGS
- 24.1.4 KEY STRATEGIES
- 24.1.5 KEY STRENGTHS
- 24.1.6 KEY OPPORTUNITIES
- 24.2 AGILENT TECHNOLOGIES
- 24.2.1 BUSINESS OVERVIEW
- 24.2.2 AGILENT TECHNOLOGIES IN LIQUID HANDLING SYSTEMS MARKET
- 24.2.3 PRODUCT OFFERINGS
- 24.2.4 KEY STRATEGIES
- 24.2.5 KEY STRENGTHS
- 24.2.6 KEY OPPORTUNITIES
- 24.3 METTLER TOLEDO
- 24.3.1 BUSINESS OVERVIEW
- 24.3.2 METTLER TOLEDO IN LIQUID HANDLING SYSTEMS MARKET
- 24.3.3 PRODUCT OFFERINGS
- 24.3.4 KEY STRATEGIES
- 24.3.5 KEY STRENGTHS
- 24.3.6 KEY OPPORTUNITIES
- 24.4 TECAN
- 24.4.1 BUSINESS OVERVIEW
- 24.4.2 TECAN IN LIQUID HANDLING SYSTEMS MARKET
- 24.4.3 PRODUCT OFFERINGS
- 24.4.4 KEY STRATEGIES
- 24.4.5 KEY STRENGTHS
- 24.4.6 KEY OPPORTUNITIES
- 24.5 DANAHER
- 24.5.1 BUSINESS OVERVIEW
- 24.5.2 DANAHER IN LIQUID HANDLING SYSTEMS MARKET
- 24.5.3 PRODUCT OFFERINGS
- 24.5.4 KEY STRATEGIES
- 24.5.5 KEY STRENGTHS
- 24.5.6 KEY OPPORTUNITIES
- 24.6 EPPENDORF
- 24.6.1 BUSINESS OVERVIEW
- 24.6.2 EPPENDORF IN LIQUID HANDLING SYSTEMS MARKET
- 24.6.3 PRODUCT OFFERINGS
- 24.6.4 KEY STRATEGIES
- 24.6.5 KEY STRENGTHS
- 24.6.6 KEY OPPORTUNITIES
- 24.7 CORNING INCORPORATED
- 24.7.1 BUSINESS OVERVIEW
- 24.7.2 CORNING INCORPORATED IN LIQUID HANDLING SYSTEMS MARKET
- 24.7.3 PRODUCT OFFERINGS
- 24.7.4 KEY STRATEGIES
- 24.7.5 KEY STRENGTHS
- 24.7.6 KEY OPPORTUNITIES
- 25 OTHER PROMINENT VENDORS
- 25.1 BRAND
- 25.1.1 BUSINESS OVERVIEW
- 25.1.2 PRODUCT OFFERINGS
- 25.2 BOROSIL
- 25.2.1 BUSINESS OVERVIEW
- 25.2.2 PRODUCT OFFERINGS
- 25.3 BIOTEC
- 25.3.1 BUSINESS OVERVIEW
- 25.3.2 PRODUCT OFFERINGS
- 25.4 CELLINK
- 25.4.1 BUSINESS OVERVIEW
- 25.4.2 PRODUCT OFFERINGS
- 25.5 COOPERSURGICAL FERTILITY SOLUTIONS
- 25.5.1 BUSINESS OVERVIEW
- 25.5.2 PRODUCT OFFERINGS
- 25.6 FORMULATRIX
- 25.6.1 BUSINESS OVERVIEW
- 25.6.2 PRODUCT OFFERINGS
- 25.7 FLOW ROBOTICS
- 25.7.1 BUSINESS OVERVIEW
- 25.7.2 PRODUCT OFFERINGS
- 25.8 GILSON
- 25.8.1 BUSINESS OVERVIEW
- 25.8.2 PRODUCT OFFERINGS
- 25.9 GREINER BIO-ONE INTERNATIONAL
- 25.9.1 BUSINESS OVERVIEW
- 25.9.2 PRODUCT OFFERINGS
- 25.10 HITEC ZANG GMBH
- 25.10.1 BUSINESS OVERVIEW
- 25.10.2 PRODUCT OFFERINGS
- 25.11 HUDSON ROBOTICS
- 25.11.1 BUSINESS OVERVIEW
- 25.11.2 PRODUCT OFFERINGS
- 25.12 HAMILTON COMPANY
- 25.12.1 BUSINESS OVERVIEW
- 25.12.2 PRODUCT OFFERINGS
- 25.13 INGERSOLL RAND
- 25.13.1 BUSINESS OVERVIEW
- 25.13.2 PRODUCT OFFERINGS
- 25.14 METROHM
- 25.14.1 BUSINESS OVERVIEW
- 25.14.2 PRODUCT OFFERINGS
- 25.15 OROCHEM TECHNOLOGIES
- 25.15.1 BUSINESS OVERVIEW
- 25.15.2 PRODUCT OFFERINGS
- 25.16 PERKINELMER
- 25.16.1 BUSINESS OVERVIEW
- 25.16.2 PRODUCT OFFERINGS
- 25.17 HIGHRES BIOSOLUTIONS
- 25.17.1 BUSINESS OVERVIEW
- 25.17.2 PRODUCT OFFERINGS
- 25.18 SARTORIUS
- 25.18.1 BUSINESS OVERVIEW
- 25.18.2 PRODUCT OFFERINGS
- 25.19 SPT LABTECH
- 25.19.1 BUSINESS OVERVIEW
- 25.19.2 PRODUCT OFFERINGS
- 25.20 TOMTEC IMAGING SYSTEMS
- 25.20.1 BUSINESS OVERVIEW
- 25.20.2 PRODUCT OFFERINGS
- 25.21 TIANLONG
- 25.21.1 BUSINESS OVERVIEW
- 25.21.2 PRODUCT OFFERINGS
- 25.22 VITROLIFE
- 25.22.1 BUSINESS OVERVIEW
- 25.22.2 PRODUCT OFFERINGS
- 25.23 WUHAN BONNIN TECHNOLOGY
- 25.23.1 BUSINESS OVERVIEW
- 25.23.2 PRODUCT OFFERINGS
- 25.24 WATERS CORPORATION
- 25.24.1 BUSINESS OVERVIEW
- 25.24.2 PRODUCT OFFERINGS
- 25.25 INTEGRA BIOSCIENCES
- 25.25.1 BUSINESS OVERVIEW
- 25.25.2 PRODUCT OFFERINGS
- 25.26 PEAK ANALYSIS AND AUTOMATION
- 25.26.1 BUSINESS OVERVIEW
- 25.26.2 PRODUCT OFFERINGS
- 25.27 SYNCHRON LAB AUTOMATION
- 25.27.1 BUSINESS OVERVIEW
- 25.27.2 PRODUCT OFFERINGS
- 26 REPORT SUMMARY
- 26.1 KEY TAKEAWAYS
- 26.2 STRATEGIC RECOMMENDATIONS
- 27 QUANTITATIVE SUMMARY
- 27.1 MARKET BY PRODUCT
- 27.1.1 NORTH AMERICA: PRODUCT SEGMENTATION
- 27.1.2 EUROPE: PRODUCT SEGMENTATION
- 27.1.3 APAC: PRODUCT SEGMENTATION
- 27.1.4 LATIN AMERICA: PRODUCT SEGMENTATION
- 27.1.5 MIDDLE EAST & AFRICA: PRODUCT SEGMENTATION
- 27.2 MARKET BY METHOD
- 27.2.1 NORTH AMERICA: METHOD SEGMENTATION
- 27.2.2 EUROPE: METHOD SEGMENTATION
- 27.2.3 APAC: METHOD SEGMENTATION
- 27.2.4 LATIN AMERICA: METHOD SEGMENTATION
- 27.2.5 MIDDLE EAST & AFRICA: METHOD SEGMENTATION
- 27.3 MARKET BY APPLICATION
- 27.3.1 NORTH AMERICA: APPLICATION SEGMENTATION
- 27.3.2 EUROPE: APPLICATION SEGMENTATION
- 27.3.3 APAC: APPLICATION SEGMENTATION
- 27.3.4 LATIN AMERICA: APPLICATION SEGMENTATION
- 27.3.5 MIDDLE EAST & AFRICA: APPLICATION SEGMENTATION
- 27.4 MARKET BY END USER
- 27.4.1 NORTH AMERICA: END-USER SEGMENTATION
- 27.4.2 EUROPE: END-USER SEGMENTATION
- 27.4.3 APAC: END-USER SEGMENTATION
- 27.4.4 LATIN AMERICA: END-USER SEGMENTATION
- 27.4.5 MIDDLE EAST & AFRICA: END-USER SEGMENTATION
- 27.5 MARKET BY GEOGRAPHY
- 27.5.1 PIPETTE: GEOGRAPHY SEGMENTATION
- 27.5.2 AUTOMATED LIQUID HANDLING SYSTEM: GEOGRAPHY SEGMENTATION
- 27.5.3 MICROPLATE REAGENT DISPENSER: GEOGRAPHY SEGMENTATION
- 27.5.4 BURETTES: GEOGRAPHY SEGMENTATION
- 27.5.5 OTHERS: GEOGRAPHY SEGMENTATION
- 27.5.6 ELECTRONIC: GEOGRAPHY SEGMENTATION
- 27.5.7 AUTOMATED: GEOGRAPHY SEGMENTATION
- 27.5.8 MANUAL: GEOGRAPHY SEGMENTATION
- 27.5.9 DRUG DISCOVERY & DEVELOPMENT: GEOGRAPHY SEGMENTATION
- 27.5.10 CLINICAL DIAGNOSTICS: GEOGRAPHY SEGMENTATION
- 27.5.11 PROTEOMICS & GENOMICS: GEOGRAPHY SEGMENTATION
- 27.5.12 OTHER APPLICATIONS: GEOGRAPHY SEGMENTATION
- 27.5.13 PHARMACEUTICAL & BIOTECHNOLOGY COMPANIES: GEOGRAPHY SEGMENTATION
- 27.5.14 ACADEMIC & RESEARCH LABORATORIES/CENTERS: GEOGRAPHY SEGMENTATION
- 27.5.15 CLINICAL DIAGNOSTIC LABORATORIES: GEOGRAPHY SEGMENTATION
- 27.5.16 OTHER END USERS: GEOGRAPHY SEGMENTATION
- 28 APPENDIX
- 28.1 ABBREVIATIONS
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