Among the many functions that automated liquid handling systems are equipped to accomplish in laboratories is the automatic collection, separation, and combination of liquid samples. Using the automated liquid handling system, a number of laboratory procedures can be completed without the need for human intervention, greatly reducing the amount of time spent on them. These workstations can measure samples, dispense reagents, and guarantee a consistent flow of liquids into bioassays. Different liquid handling workstations may process a wide range of sample sizes, and they come with a wide range of integrated software for keeping their respective footprints small while doing their respective jobs.
Players in the industry are responding to the fierce competition by developing compact, user-friendly liquid handling workstations that can be used in even the smallest and medium-sized laboratories. The Association for Laboratory Automation and Screening Meeting in January 2014 saw the debut of Hamilton Robotics’ NIMBUS PCR workstation. This little workstation packs a big punch by allowing for quick and versatile assay setup at a low cost. In addition, in February of 2018, Tecan Group Limited debuted the Fluent Gx Automation workstation, which is tailored to the exacting standards of clinical and regulated labs.
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Automated Liquid Handling Systems Market Dynamics
There has been an uptick in the number of newly established laboratories since pharmaceutical corporations are placing a greater emphasis on performing their own research and development and also outsourcing it to academia and private research organisations. Liquid handling systems are becoming more in demand as a result, driving the market forward. Also, pharmaceutical companies are increasingly turning to private contract research organisations (CRO) to conduct their research as a means of remaining competitive in the rapidly expanding pharmaceutical and biotechnology medicines sector. In May of 2018, for instance, Ritter Pharmaceuticals, Inc., a producer of innovative medicinal medicines, signed a deal with Medpace, a clinical research organisation (CRO), to initiate the first of two pivotal Phase 3 clinical trials for RP-G28 in patients with lactose intolerance (LI). The Indian pharmaceutical business Sun Pharma stated in October 2016 that it would be investing in a new R&D plant in Madhya Pradesh, India, in order to boost its focus on R&D.
Unfortunately, the high price of automated liquid handling systems makes them prohibitive for medical settings in emerging nations and small-scale laboratories. The cost of these devices rises further because of the rigorous manufacturing standards necessary to obtain commercial licence and market clearances from multiple government organisations like the Food and Drug Administration and the European Commission. High production costs are another factor contributing to the high cost of lab flow equipment that incorporate IT. There are low-cost portable solutions, however they do not deliver accurate and reliable test findings. For example, in low-priced automated liquid handling systems, tip bending owing to external influences may account for roughly 10% of mistakes in pipetting accuracy, according to a paper issued in 2013 by the Food and Drug Association (FDA) and the A2LA Certification Board.
Automated Liquid Handling Systems – Regional Insights
With the quick development and deployment of unique tissue automation and robotic aided liquid handling workstations, the North American market for Automated Liquid Handling Systems dominated the global market in 2016, followed by the European market. In January 2014, for instance, Hamilton Robotics released NIMBUS PCR Workstation, a small and inexpensive pipetting workstation that facilitates quick and versatile assay preparation for endpoint, real-time, qPCR, or multiplex PCR.
In addition, some businesses in Europe are obtaining funding from both public and private organizations to engage in cutting-edge research towards the creation of new pharmaceuticals. In June 2017, Medicxi, an investor in life sciences research, provided Novartis AG with US$ 300 million to advance research and development in areas such as diabetes treatment and robotic surgery.
Also, due to the convenience of patient recruitment and the abundance of qualified specialists, many of the world’s largest biopharmaceutical companies are concentrating their clinical trial efforts in Asian countries. A direct consequence of this trend is an increase in the number of scientific institutes in the area. The expansion of research facilities is a key factor that will drive the industry forward. For instance, Herbalife Corporation established a new research and development center in Bangalore, India in March 2017 in collaboration with Indian pharmaceutical firm Syngene.
Automated Liquid Handling Systems – Competitive Analysis
Many of the leading companies in the automated liquid handling systems industry are concentrating on introducing innovative new products to the market. Using Qiagen’s instruments and consumables for DNA extraction, liquid handling, and others, Qiagen and the International Commission for Missing People (ICMP) released a next-generation DNA testing automated workflow in October 2017.
Aurora Biomed, Inc., Hamilton Company, Tecan Group Ltd, Eppendorf AG, Qiagen N.V., Mettler-Toledo International Inc., Corning, Inc., Bio-Rad Laboratories, Inc., PerkinElmer, Inc., Agilent Technologies, Inc., Danaher Corporation, and Thermo Fisher Scientific, Inc. are just some of the major companies in this industry.
Automated Liquid Handling Systems Market – Taxonomy
By Product Type:
- Automated Liquid Handling Workstation
- Microplate Reagent Dispensers
- Pipettes & Consumables
- Others
By End User:
- Hospitals & Diagnostic Centers
- Biotechnological & Pharmaceuticals Companies
- Research and Academic Institutes
- Others
By Region:
- North America
- Europe
- Latin America
- Middle East
- Asia Pacific
- Africa
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Reason to Buy this Report:
■ Analysis of the impact of technological advancements on the market and the emerging trends shaping the industry in the coming years.
■ Examination of the regulatory and policy changes affecting the market and the implications of these changes for market participants.
■ Overview of the competitive landscape in the Automated Liquid Handling Systems market, including profiles of the key players, their market share, and strategies for growth.
■ Identification of the major challenges facing the market, such as supply chain disruptions, environmental concerns, and changing consumer preferences, and analysis of how these challenges will affect market growth.
■ Evaluation of the potential of new products and applications in the market, and analysis of the investment opportunities for market participants.
Table of Contents with Major Points:
Executive Summary
- Introduction
- Key Findings
- Recommendations
- Definitions and Assumptions
Executive Summary
Market Overview
- Definition of Automated Liquid Handling Systems Market
- Market Dynamics
- Drivers
- Restraints
- Opportunities
- Trends and Developments
Key Insights
- Key Emerging Trends
- Key Developments Mergers and Acquisition
- New Product Launches and Collaboration
- Partnership and Joint Venture
- Latest Technological Advancements
- Insights on Regulatory Scenario
- Porters Five Forces Analysis
Qualitative Insights Impact of COVID-19 on Global Automated Liquid Handling Systems Market
- Supply Chain Challenges
- Steps taken by Government/Companies to overcome this impact
- Potential opportunities due to COVID-19 outbreak
Conclusion
Appendix
- Data Sources
- Abbreviations
- Disclaimer
TOC Continued…!
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