Biochemistry Analyzers Market to Witness Robust Expansion by 2025 – QY Research, Inc.

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This report studies the global market size of Biochemistry Analyzers in key regions like North America, Europe, Asia Pacific, Central & South America and Middle East & Africa, focuses on the consumption of Biochemistry Analyzers in these regions.

This research report categorizes the global Biochemistry Analyzers market by top players/brands, region, type and end user. This report also studies the global Biochemistry Analyzers market status, competition landscape, market share, growth rate, future trends, market drivers, opportunities and challenges, sales channels and distributors.

Biochemistry analyzer is used in laboratories to measure chemicals in biological samples. It focuses on analytes such as drugs of abuse, specific proteins, electrolytes, and enzyme, and metabolite tests for liver, cardiac, and renal function. Biochemical analyzer is made of an optical engine that comprises detectors, light sources, and other optical elements, sample movement, automation control and processing, environmental monitoring, power management, and control for humidity, pressure, and temperature. Highly automated biochemical analyzers, which include automated sample loading, mechanical control, data processing and tube cleaning have greater efficiency. Fully automatic analyzer, which is a high performance biochemistry analyzer, is used to measure various blood biochemical parameters such as urea, glucose, and bilirubin that are associated with various disorders such as kidney diseases, diabetes, liver failures, and other metabolic imbalances. Some analyzers are also used to detect DNA molecules in the samples.

Conventional biochemistry analyzers that are used for repetitive analysis require large amount of reagents and time. However, the technologically advanced analyzers are capable of automating the process of repetitive sample analysis that were earlier done by lab technicians. Industry players are developing biochemistry analyzers with feature of positive identification that decreases the process of repeated pathogen testing. This feature is important for samples with low volume such as neonatal units. Fully automated biochemistry analyzers can perform functions such as recognition of sample and reagent bottles, cap piercing, tube sampling, dilution, and automatic re-run, which reduces human effort and time, and require lesser volumes of reagent and sample. These analyzers aid scientists in measuring the concentration of any substance in a reaction mixture. Therefore, the implementation of IT and automation in these analyzers is expected to drive the global biochemistry analyzers market growth. Furthermore, integrated systems that combine immunochemistry and biochemistry tests are gaining huge attention. It increases the workflow efficiency and deliver fast turnaround and high throughput. It also helps in achieving increased instrument capacity by connecting different analyzer units with a single sample presentation mechanism. These systems are offered by manufacturers such as Roche, Siemens, Abbott, and Beckman Coulter.

Increasing number of samples to be analyzed is increasing the demand for faster analytical methods that are capable of providing better information for decision making. The need for automated analyzers for environmental and industrial samples has increased the research for new and cost-effective strategies of automation and control of analytical systems. The widespread availability of open-source hardware along with novel analytical methods have opened the possibility of implementing standalone automated analytical systems at low cost. For instance, in 2011, Horiba Medical Ltd, Japan, received the Food and Drug Administration approval for Pentra C200, a fully automated bench-top analyzer that was designed as an economical option for smaller laboratories. However, new regulatory requirements such as RoHS have added complexity to instrument designing. High cost of tests and shortage of highly qualified and trained personnel are other factors restraining growth of the biochemistry analyzers market.

The following manufacturers are covered in this report, with sales, revenue, market share for each company:

Abbott

Danaher

Roche Diagnostics

Siemens

Market size by Product

Semi-Automatic

Fully Automatic

Market size by End User

Hospital and Diagnostic Laboratories

Home Care, and Academic

Research Institutes

The study objectives of this report are:

To study and analyze the global Biochemistry Analyzers market size (value & volume) by company, key regions, products and end user, breakdown data from 2013 to 2017, and forecast to 2025.

To understand the structure of Biochemistry Analyzers market by identifying its various subsegments.

To share detailed information about the key factors influencing the growth of the market (growth potential, opportunities, drivers, industry-specific challenges and risks).

Focuses on the key global Biochemistry Analyzers companies, to define, describe and analyze the sales volume, value, market share, market competition landscape and recent development.

To project the value and sales volume of Biochemistry Analyzers submarkets, with respect to key regions.

To analyze competitive developments such as expansions, agreements, new product launches, and acquisitions in the market.

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