Live-cell imaging is the deep study of living cells using time-lapse microscopy, which was first introduced for showing the fertilization and development of the sea urchin egg. It is an important analytical tool in biomedical research disciplines and laboratories studying, such as neurobiology, developmental biology, pharmacology, and cell biology. It usually involves a compromise between obtaining image quality and maintaining healthy cells. Additionally, it plays a vital role in life science research laboratories to study cellular behaviors and pathways to gain a deeper knowledge of disease mechanisms, functions, and responses to treatment and get the maximum information from the precious samples of the cell. Moreover, biological research increasingly focuses on dynamic processes such as intracellular trafficking, migration, and cell development. Since several microscopy methods have been developed to study living cells with less effort and greater detail, researchers can understand living cells” nature much efficiently than any other method. A new type of imaging utilizing quantum dots has been used as they are shown to be more stable. Continual advances in imaging techniques and the design of fluorescent probes improving the power of live cell imaging & become an important tool in biology.
The global live cell imaging market size was growing at a CAGR of 10.05% during the forecast period, 2020-2027. The growing demand for more reliable and relevant live cells is the growing demand than fixed cell microscopy during biological research. Furthermore, some imaging systems are capable of sustaining molecules within live animals. Additionally, the increasing utilization of live cell imaging to predict the 3D imaging of tissues, model organisms, small animals development & structure study will spur the global live cell imaging industry in the future periods. Furthermore, it is becoming a requisite technique in many life sciences and biomedical research fields, such as cell biology, developmental biology, cancer biology, and drug discovery. The growing public-private funding for live Cell Imaging activities and easy discovery of drugs is expected to witness remarkable growth of the Live Cell Imaging industry. Furthermore, the rapid rise in the extensive R&D activities at the academic and industrial level and the increasing scope of cell biology applications fuel the demand for the live cell imaging market.
The Live Cell Imaging technique is used to study angiogenesis with tube formation assays, investigate cell migration in chemotaxis assays or wound healing assays, measure cell proliferation over time, and analyze inter-and intracellular signaling using specific fluorescence staining high-resolution microscopy. Live-cell imaging is a fundamental research tool in a wide range of pharmaceutical industries and cell biology laboratories. It has led to the location of drug targets as well as the molecular mechanisms involved in diseases. Moreover, the live-cell imaging technique is widely used in cancer research. It enables researchers to more easily study the complex and often poorly understood interactions between cancerous cells and their environment and screening of toxic effects of new drugs during the drug development stage.
Furthermore, the process can also be appeal to monitor the molecules in live animals. However, the cost of implementation is high and acts as a restraint of the market. However, it has huge benefits for biological researchers. It can minimize artifacts that can arise from other imaging techniques such as immunostaining and cell fixation and generate qualitative and quantitative data that can’t be gained from other biochemical methods, thus fostering the demand in the global health care market.
The global live cell imaging market is segregated into instruments, consumables, software, and services based on the components. The instrument segment is estimated to the highest growth over the analysis timeframe due to the rise in advanced imaging products, technological advancements related to live-cell imaging software, and rapid expansion in biological research. The Consumables will grow significantly due to the frequent needs of purchase.
Based on the technology, the global live cell imaging market is categorized into fluorescence resonance energy transfer, fluorescence recovery after photobleaching, time-lapse microscopy, high-content analysis, fluorescence in situ hybridization, and others. The high content screening segment is held for a significant market share in 2019 and will gain maximum market revenue by 2027. It is highly used in biological research and drug discovery to identify small molecules or peptides and saves time by performing simultaneous imaging with cell-level quantification and advanced statistics. The Fluorescence Resonance Energy Transfer segment is poised to witness significant growth over the forecast period due to rising genetic targeting peptides.
The global live cell imaging market is classified into drug discovery, cell biology, stem cell, and others based on the application. The cell biology segment is expected to be the highest revenue share for live-cell imaging during the forecast period as it provides more insight. It helps the researchers to understand the biological processes & function with less prone to experimental art crafts.
The drug discovery will witness a lucrative growth rate in the estimated period because live-cell imaging technology helps in the drug discovery stage.
Based on the end-user, the global live cell imaging market is segmented into pharmaceutical and biotechnology companies, research institutes, contract research organizations, etc. The pharmaceutical & biotechnology companies segment will dominate the global live cell imaging market by 2027. It is due to the rapid use of live-cell imaging techniques in clinical trials and drug discovery.
The global live cell imaging market is divided into North America, Europe, Asia Pacific, South America, and Middle East & Africa. The Asia Pacific is estimated to project considerable growth over 2020-2026. It is due to advances in technology, increasing healthcare expenditure, and leading industry players offering innovative products.
Thermo Fischer Scientific, Perkin Elmer, Bruker Corporation, Danaher Corporation, GE Healthcare, BioTek Instruments, Nikon Corporation, Sartorius, cytoSMART Technologies, NanoEnTek, Carl Zeiss, Olympus Corporation, and Petaluma are the key players in the global live cell imaging market.
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Global Live Cell Imaging Market
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