Global Electrochemical Biosensors Market Highlights
Electrochemical biosensors have diverse applications in engineering and medicine. Some of the key benefits of biosensors include rapid and continuous measurement, high specificity, very less usage of reagents required for calibration, fast response time, and the ability to measure non-polar molecules that cannot be estimated by other conventional devices.
These biosensors used in electrochemical medical devices offer greater sensitivity and accuracy with the help of nanomaterials incorporated in electrodes used in the sensor. Due to the various advantages, electrochemical biosensors are used in a number of applications such as in the devices to monitor glucose level in diabetes patients and devices used in the food analysis, Environmental applications, Wastewater treatment, and Protein engineering and drug discovery applications.
The extensive applications of electrochemical biosensors lead to increase its uptake and hence, its market size. Moreover, additional applications of electrochemical biosensors in the field of point of care testing, diagnostics centers, and research laboratories among various others escalate the market on the global platform.
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Considering the phenomenal growth market is witnessing currently; Market Research Future (MRFR) in its recently published study report asserts that global electrochemical biosensors market will aggrandize to USD 23707.2 MN by 2022 registering a CAGR of 9.7% throughout the forecast period (2018 to2022).
Additional factors boosting the growth of the electrochemical biosensors market include the growing prevalence of chronic diseases such as diabetic and lifestyle-induced disease. Factors such as the increasing demand for POCT are fostering the market growth, increasing application of biosensors in various industries.
On the other hand, factors such as strict regulatory requirements, reimbursement policies issues in healthcare systems are impeding the growth of the market. Nevertheless, the proliferation of nanotechnology and its integration with the electrochemical biosensors will boost the market growth over the assessment period.
Leading Key Players
Some of the players leading the market and profiled in the analysis are Medtronics, F. Hoffmann-La Roche AG, Bayer AG, I-SENS, Abbott Laboratories, Inc, and Siemens Healthcare GmbH among others.
Global Electrochemical Biosensors Market Segmentations
The analysis can be segmented into three key dynamics;
By Application : Diagnosis and Monitoring among others.
By End-user : Point of Care Testing, Diagnostics Center, and Research Laboratories among others.
By Regions : Europe, North America, APAC and the Rest-of-the-World.
Globally, well-developed regions such as North America and Europe account for the leading markets for electrochemical biosensors. The North American market is projected to grow at the CAGR of 9.4% throughout the forecast period, accounting for the largest market share. Whereas, the European electrochemical biosensors market is expected to register 9.8% CAGR throughout the forecast period.
Some of the significant factors driving the growth of the electrochemical biosensors market in these regions include the well-spread health awareness technological developments in healthcare applications and appropriate insurance coverage. Moreover, the growing prevalence of chronic and lifestyle diseases alongside the well-proliferated healthcare sector and the high per capita healthcare sector fosters the market growth in these regions.
Furthermore, the extensive uptake of the biosensor devices in these regions to gain accurate, reliable, and quick results for early detection and prevention of diseases, impacts the market growth positively.
The Asia Pacific region, on the other hand, is rapidly emerging as a lucrative market for electrochemical biosensors, globally. Factors such as the increasing awareness towards the clinical outcomes and technological advancement in medical devices & equipment alongside the increasing population, growing geriatric populaces, and increase in patients with the diabetic conditions foster the growth of the electrochemical biosensors market in the region.
The well-established electrochemical biosensors market appears fragmented owing to a number of matured players illustrating the space as highly competitive, accounting for a substantial share in the market. The key strategies traced from the analysis of recent developments of the key players include agreement & partnership, product launch, acquisition, and expansion.
Market players are focusing on developing their product portfolio with the help of advanced technologies. They are substantially investing in internal R&D activities to bring novelties to their existing products as well. Increasing government funding is also expected to motivate key companies to develop new biosensors that match the changing trends and needs of the patrons.
January 10, 2019 --- A team of researchers at the College of Chemistry and Chemical Engineering, Hainan Normal University (China) published the report of the study they carried out Application of nanosized LiFePO4 in the magazine - Current Analytical Chemistry.
The report stated that the application of nanosized LiFePO4 modified electrode to electrochemical sensor and biosensor. According to the scientists who tested electrodes modified with Lithium Iron Phosphate (LFP) for biochemical analysis and hemoglobin, LFP is a promising candidate to develop the new modified electrodes.
LFP is a low-cost component abundantly available in the environment. Owing to its additional advantages such as its long cycle life and environmental compatibility, hence, high safety, non-toxicity it can be used for the cost-effective development of electrochemical sensor and biosensor.
October 02, 2018 --- Archer Exploration Limited (Australia), a company involved in the discovery, development, and commercialization of mineral deposits announced entering into a legally binding Material Transfer Agreement (“MTA”) with a leading German biotechnology company for the development of its graphene-based biosensor.
The Agreement involves the development of electrochemical biosensors for the semi-quantitative detection of disease state markers.
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