Global Automated Liquid Handling System Market Size By Modality, By Application, By End-User, By Geographic Scope And Forecast
Published Date: August - 2024 | Publisher: MIR | No of Pages: 320 | Industry: latest updates trending Report | Format: Report available in PDF / Excel Format
Global Automated Liquid Handling System Market Size By Modality, By Application, By End-User, By Geographic Scope And Forecast
Automated Liquid Handling System Market Size And Forecast
Automated Liquid Handling System Market size was valued at USD 2.81 Billion in 2023 and is projected to reach USD 5.61 Billionby 2030, growing at a CAGR of 9.3%during the forecast period 2024-2030.
Global Automated Liquid Handling System Market Drivers
The market drivers for the Automated Liquid Handling System Market can be influenced by various factors. These may include
Growing Need in Biotechnology and Life SciencesResearch in the biological sciences and biotechnology uses automated liquid handling systems extensively for activities including proteomics, genomics, and drug development. The market is expanding as a result of the rising need for developments in these domains.
High Efficiency and ThroughputLarge amounts of samples can be processed quickly and accurately in laboratories because to automated liquid handling systems’ high throughput and precision. One of the main factors driving the adoption of these systems is the requirement for quicker and more dependable sample processing.
Reduced Labor Costs and Skill ShortagesLabor shortages in laboratories are addressed in part by automation. Repetitive operations can be completed by automated liquid handling systems, eliminating the requirement for physical labor and lowering the possibility of mistakes. Saving money may result from this in turn.
Technological DevelopmentsAutomated liquid handling systems are becoming more and more popular due to ongoing technical improvements such increased software capabilities, increased precision, and robotics integration. Market expansion is fueled by innovations in system functioning and design.
Growing Research and DevelopmentThe need for automated liquid handling systems is driven by an increase in research and development operations in a number of industries, including biotechnology, clinical diagnostics, and pharmaceuticals. These systems are essential for quickening the pace of research.
Tight Regulating GuidelinesStrict regulations apply to the biotechnology and pharmaceutical sectors. The adoption of automated liquid handling systems is fueled by their capacity to produce accurate and reliable findings, which aid in laboratories’ compliance with these laws.
Boosting Clinical Diagnostic AdoptionClinical diagnostic laboratories are using automated liquid handling systems more and more for activities like sample handling and processing. The market is growing in part because of the need for precise and efficient diagnostic procedures.
Partnerships & CooperationsResearch organizations, pharmaceutical businesses, and automation solution suppliers can work together to promote the creation and uptake of sophisticated automated liquid handling systems.
Impact of COVID-19The necessity of automation in laboratories for duties like sample processing and testing has been highlighted by the COVID-19 epidemic. The requirement for quick testing and growing awareness could be factors in the market expansion for automated liquid handling systems.
Global Automated Liquid Handling System Market Restraints
Several factors can act as restraints or challenges for the Automated Liquid Handling System Market. These may include
Exorbitant starting costs Acquiring and deploying automated liquid handling systems might come with hefty upfront expenditures. This could be a problem, particularly for smaller labs or research organizations with tighter funding.
Implementation and Integration Complexity Automated liquid handling system implementation can be challenging, requiring knowledge of system operation and integration. The smooth integration of these systems with current procedures and devices may provide difficulties for laboratories.
Challenges with Calibration and MaintenanceFor accuracy and dependability, automated liquid handling systems need to be calibrated and maintained on a regular basis. It could be difficult for laboratories to handle these maintenance duties, which could result in downtime and extra expenses.
Absence of Skilled WorkersAutomated liquid handling systems require knowledgeable staff that are experienced with technology to operate and maintain. The general implementation of these technologies may be hampered in some areas by a lack of qualified personnel.
Restricted Personalization for Particular UsesCustomization of certain automated liquid handling systems for particular applications or workflows may be limited. It could be difficult for laboratories with very specific needs to locate systems that exactly meet their needs.
Fears Regarding ContaminationIn laboratory settings, contamination is a crucial factor to take into account. When handling sensitive samples, users may voice concerns regarding the possibility of contamination in automated liquid handling systems.
Problems with Assay Kit and Consumable CompatibilityThe interoperability of automated liquid handling systems with particular assay kits and consumables might provide difficulties for laboratories. The smooth integration of these systems into the current laboratory processes may be impeded by incompatibilities.
Opposition to ChangeBecause of their familiarity with manual procedures, automated liquid handling systems may be difficult for laboratories to implement because of perceived complexity, productivity disruptions, and training needs.
Space and Size RestrictionsThe size and footprint of automated liquid handling systems may be difficult for certain laboratories to manage, especially those with limited physical space.
Regulatory Compliance DifficultiesFor laboratories that use automated liquid handling systems, adhering to regulatory compliance standards like Good Manufacturing Practice (GMP) and Good Laboratory Practice (GLP) can be difficult. It may be difficult to ensure that these systems comply with regulatory requirements, but it is essential.
Global Automated Liquid Handling System Market Segmentation Analysis
The Global Automated Liquid Handling System Market is Segmented on the basis of Modality, Application, End-User, and Geography.
Automated Liquid Handling System Market, By Modality
Disposable Tips
Some liquid handling systems use disposable tips for pipetting to prevent cross-contamination between samples. This modality is popular in laboratories that prioritize sample integrity.
Fixed Tips
Systems with fixed tips, which are typically integrated into the system and are not replaced between liquid transfers. This modality may be suitable for laboratories with less stringent contamination concerns.
Automated Liquid Handling System Market, By Application
Drug Discovery and ADME-Tox Research
Automated liquid handling systems are extensively used in drug discovery for tasks such as compound screening, assay development, and absorption, distribution, metabolism, and excretion (ADME) studies.
Clinical Diagnostics
In clinical laboratories, these systems are employed for tasks like sample preparation, assay development, and diagnostic testing. They contribute to efficiency and accuracy in diagnostic processes.
Genomics
Liquid handling systems are widely used in genomics research for tasks such as DNA/RNA extraction, PCR setup, and sequencing preparation. The precision of these systems is crucial in genomics workflows.
Proteomics
Liquid handling systems play a role in protein research by assisting in protein purification, sample preparation, and other proteomic applications.
Automated Liquid Handling System Market, By End-User
Pharmaceutical and Biotechnology Companies
Large pharmaceutical and biotech companies often use automated liquid handling systems for high-throughput screening, drug development, and various research applications.
Contract Research Organizations (CROs)
CROs utilize liquid handling systems to provide specialized services to pharmaceutical companies, accelerating drug discovery and development processes.
Academic and Research Institutes
Research institutions and universities employ liquid handling systems for various scientific research projects, ranging from basic research to applied sciences.
Hospitals and Diagnostic Laboratories
Clinical laboratories in hospitals and diagnostic facilities use automated liquid handling systems for sample processing, diagnostic testing, and other laboratory tasks.
Automated Liquid Handling System Market, By Geography
North AmericaMarket conditions and demand in the United States, Canada, and Mexico.
EuropeAnalysis of the Automated Liquid Handling System Market in European countries.
Asia-PacificFocusing on countries like China, India, Japan, South Korea, and others.
Middle East and AfricaExamining market dynamics in the Middle East and African regions.
Latin AmericaCovering market trends and developments in countries across Latin America.
Key Players
The major players in the Automated Liquid Handling System Market are
Thermo Fisher Scientific
Hamilton Company
PerkinElmer Inc.
Tecan Group Ltd.
Agilent Technologies
Danaher Corporation (through Beckman Coulter Life Sciences)
Eppendorf
Promega Corporation
Mettler-Toledo International Inc.
Corning Incorporated
Gilson
Labcyte Inc.
Viapath Technologies
Sciegene
Biotecon Instruments GmbH
Sartorius Stedim Lab Ltd.
MTA International
Report Scope
REPORT ATTRIBUTES
DETAILS
STUDY PERIOD
2020-2030
BASE YEAR
2023
FORECAST PERIOD
2024-2030
HISTORICAL PERIOD
2020-2022
UNIT
Value (USD Billion)
KEY COMPANIES PROFILED
Thermo Fisher Scientific, Hamilton Company, K26PerkinElmer Inc., Tecan Group Ltd., Agilent Technologies, Eppendorf, Promega Corporation, Mettler-Toledo International Inc., Corning Incorporated, Labcyte Inc.
SEGMENTS COVERED
By Modality, By Application, By End-User and By Geography
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