Liquid Handling Market - Global Industry Size, Share, Trends, Competition, Opportunities and Forecast, 2018-2028, Segmented by Type (Manual Liquid Handling, Automated Liquid Handling, Semi-Automated Liquid Handling), Product (Automated Workstations, Pipettes, Dispensers, Burettes, Others), Application (Drug Discovery, Cancer and Genomics Research, Clinical Diagnostics, Others), End-User (Pharmaceu

Published Date: November - 2024 | Publisher: MIR | No of Pages: 320 | Industry: Healthcare | Format: Report available in PDF / Excel Format

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Liquid Handling Market - Global Industry Size, Share, Trends, Competition, Opportunities and Forecast, 2018-2028, Segmented by Type (Manual Liquid Handling, Automated Liquid Handling, Semi-Automated Liquid Handling), Product (Automated Workstations, Pipettes, Dispensers, Burettes, Others), Application (Drug Discovery, Cancer and Genomics Research, Clinical Diagnostics, Others), End-User (Pharmaceu

Liquid Handling Market is estimated to grow during the forecast year owing to the advancement in the liquid handling systems. Li

Many different types of liquid handlers can be used as a stand-alone part by operating separately from any other machinery. These liquid handling devices are typically built into bigger stations, which simplify regular activities, minimize human involvement, and enable multitasking in a single run. These liquid handling systems can be a small workstation with specialized functions or completely automated robotic decks with the ability to carry out an endless variety of operations. In recent years, academic research in the United States has become significantly more interested in high-throughput screening technology. The Society for Biomolecular Sciences in the US maintains an extensive listing of academic screening facilities. It not only gives the academic community high-throughput screening (HTS) materials, but also aids in the search of probes and leads for drug discovery.

In the pharmaceutical sector, high-throughput screening techniques are widely employed to quickly examine the biological or biochemical activity of many compounds, typically pharmaceuticals. The liquid handling techniques make use of robotics and automation because they speed up target analysis since vast compound libraries can be swiftly and affordably screened. High-throughput screening (HTS) is a helpful tool for evaluating things like pharmacological targets, agonists, antagonists' receptors (such as GPCRs) and enzymes.

Liquid Handling in Clinical Research and Drug Development

Basically, the use of liquid handling technology is done to precisely dispense small volumes for miniaturized drug screens. A simple pipet to a sophisticated workstation is an example of liquid handling equipment used in the development of pharmaceuticals. Micropipettes, pipets, dispensers, and burettes are among the more suitable and efficient liquid handling tools for drug research. These are essential because instruments used for handling liquids are very flexible. They can help in the movement of cells, proteins, oligonucleotides, or other biological components and are utilized for a range of purposes, including pipetting, transferring, diluting, dosing, and dispensing. The equipment's high throughput, capacity, and dynamic volume range enable this tremendous flexibility.

Earlier, liquid handling equipment was proven inefficient at lowering the cost of quality control procedures due to the lack of appropriate technology. But now the high precision capabilities of liquid handling instruments is helping in ensuring the reliability of clinical research results’ accuracy.

Automated Liquid Handling with Integration of Artificial Intelligence

The implementation of artificial intelligence to manage various phases of the procedure and to fully utilise internet connectivity to communicate with users remotely are the next steps for liquid handling systems. The majority of the sampling, combining, and mixing of liquid samples can be done automatically with the help of multipurpose liquid handling automated workstations. The in-built software’s in the automated liquid handling system is able to provide high degrees of error management and adapt instrument’s activity to novel conditions that may arise during sample processing by relying on machine learning (e.g., compensate for nozzle clogging or react to a defect in a disposable tip). These workstations are self-managed and represent efficient walk-away solutions for the optimization of laboratory resources by reporting problems in real time to remote operators and outlining their reaction to the issue. Some of the widely used software u in liquid handling systems includes Biomek Software in Biomek Automated Workstations and Echo Software Applications which can create liquid handling protocols for specific applications with minimum requirement of training.

The creation of self-learning software will also make it easier to integrate various components, enabling labs to add or delete particularly functional components from an automated workflow. Modularity will, thus, boost the system's overall versatility and enable a wider range of applications for automated liquid handling equipment in biomedical laboratories.

Increasing Investments in the Drug Development by Companies

Liquid handlers are used to put pharmacological substances through ADMET assays, which are useful for determining features of absorption, distribution, metabolism, excretion, and toxicity. In-depth knowledge about how drugs interact with the human body is provided by ADMET testing, and this data profile is crucial in the decision-making process to carry out or halt any future medication research.

Companies like Tecan Group AG has been in the business of manufacturing liquid handling systems since 1980s which is now also enhancing in its technology by providing new modified liquid handling system which has a

Growing Adoption of Liquid Handling by Industry and Academics

It may be easier to conduct experiments if liquid handling devices are more widely used. The method was initially embraced by companies and industry-based laboratories, but it has since spread to academic settings where a wide range of unconventional/unusual experiments can be conducted. According to current procedures or laboratory tests, researchers transfer liquids for the purpose of dilution, mixing, or inoculation to carry out the experimentation further. By operating the liquid handling systems remotely operations can be performed more robustly and in a resilient way against outside influences which can hamper the work or can increase the chances of contamination, it can also help in carrying out more test at a time which was seen during the time of COVID-19 pandemic for rapid antigen testing thus, liquid handling system can make laboratories more efficient.

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MIR Segment1

Market Segmentation

The Global Liquid Handling Market is segmented

Company Profiles

Agilent Technologies, Aurora Biomed, Inc., AUTOGEN, INC., Danaher Corporation, BioTek Instruments, Inc., Analytik Jena AG, Corning Incorporated, Eppendorf AG, Formulatrix, Inc., Gilson, Inc.

Attribute

Details

Base Year

2022

Historical Years

2018 â€“ 2022

Estimated Year

2023

Forecast Period

2024 – 2028

Quantitative Units

Revenue in USD Million, and CAGR for 2018-2022 and 2023-2028

Report Coverage

Revenue forecast, company share, competitive landscape, growth factors, and trends

Segments Covered

Type

Product

Application

End User

Regional Scope

North America; Europe; Asia Pacific; South America; Middle East & Africa

Country Scope

United States; Canada; Mexico; Germany; France; United Kingdom; Italy; Spain; China; Japan; India; South Korea; Australia; Brazil; Argentina; Colombia; UAE; Saudi Arabia; South Africa

Key Companies Profiled

Agilent Technologies, Aurora Biomed, Inc., AUTOGEN, INC., Danaher Corporation, BioTek Instruments, Inc.

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