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Market Research Report
Product code
1086164
Flow Cytometry Market, by Technology, by Product Type, by Application, by End User, and by Region - Size, Share, Outlook, and Opportunity Analysis, 2022 - 2028 |
Flow Cytometry Market, by Technology, by Product Type, by Application, by End User, and by Region - Size, Share, Outlook, and Opportunity Analysis, 2022 - 2028 |
Published: May 5, 2022
Coherent Market Insights
Content info: 145 Pages
Delivery time: 2-3 business days
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Flow cytometry is a laser-based or impedance-based biophysical technology employed in cell counting, cell sorting, biomarker detection, and protein engineering. The process is conducted by suspending cells in a stream of fluid and passing them through an electronic detection apparatus. The simultaneous multiparametric analysis of the physical and chemical characteristics of particles is facilitated by a flow cytometer at a speed of up to thousands of particles per second. The process is used in the diagnosis of health disorders such as blood cancers along with several applications in basic research, clinical practice, and clinical trials. Flow cytometry facilitates study of the expression of cell surface and intracellular molecules along with characterization of different cell types in a heterogeneous cell population. Moreover, flow cytometry also allows simultaneous multi-parameter analysis of single cells. The combination of technological improvements, growing research activities in life science, and increasing clinical application of flow cytometry in diagnosis of HIV and cancer are some of the major factors that are expected to drive growth of the flow cytometry market over the forecast period.
Flow cytometry is continuously going through new developments with availability of robust photodetectors and new laser emitters, use of LED lamps as emitter, and changes in analytical capacity (multidimensional analysis software). Furthermore, new approaches combining existing technologies with routine laboratory procedures, such as imaging, which capture of images of cells possible in real time as they pass by the interrogation point are some of the major advancements in flow cytometry. The process also finds application in cytology, hematology, immunology, and microbiology, among other research fields. For instance, in June 2019, Agilent Technologies, Inc. introduced its Agilent NovoCyte Advanteon flow cytometer, developed by the ACEA Biosciences. The product enhanced the limitations of benchtop flow cytometry by providing better performance than other flow cytometers.
Flow cytometry is quite an unexplored field, which is rapidly advancing due to technological advancements in the recent past. The increasing FDA approval for various clinical test favors the growth of flow cytometry market in near future. For instance, in 2017 the use of flow cytometer in detection of leukemia & lymphoma cancers was approved by U.S. Food Drug & Administration (FDA). Therefore, rising prevalence of HIV and cancer are expected to drive growth of the market over the forecast period. For instance, according to the Leukemia & Lymphoma Society (LLS), in 2019, there were around 76,200 people in the U.S. who are expected to be diagnosed with leukemia, lymphoma or myeloma cancers.
Market players are focused on launching technologically advanced products in the market, which is expected to fuel the market growth over the forecast period. For instance, in March 2019, BD (Becton, Dickinson and Company) launched BD FACSDuet, an automated flow cytometry system. The product is CE-IVD certified which enables clinical laboratories to improve their efficiency by reducing errors and limiting the manual user interactions required to run assays on the BD FACSLyric clinical flow cytometer.
? By Technology:
? Cell Based
? Bead Based
? By Product Type:
? Analyzer
? Sorter
? Reagents & Consumables
? By Application:
? Research
? Clinical
? Industrial
? By End User:
? Hospital
? Clinical Testing Laboratories
? Research laboratories
? By Country:
? U.S.
? Canada
? By Technology:
? Cell Based
? Bead Based
? By Product Type:
? Analyzer
? Sorter
? Reagents & Consumables
? By Application:
? Research
? Clinical
? Industrial
? By End User:
? Hospital
? Clinical Testing Laboratories
? Research laboratories
? By Country:
? Brazil
? Mexico
? Argentina
? Rest of Latin America
? By Technology:
? Cell Based
? Bead Based
? By Product Type:
? Analyzer
? Sorter
? Reagents & Consumables
? By Application:
? Research
? Clinical
? Industrial
? By End User:
? Hospital
? Clinical Testing Laboratories
? Research laboratories
? By Country:
? U.K.
? Germany
? Italy
? France
? Spain
? Russia
? Rest of Europe
? By Technology:
? Cell Based
? Bead Based
? By Product Type:
? Analyzer
? Sorter
? Reagents & Consumables
? By Application:
? Research
? Clinical
? Industrial
? By End User:
? Hospital
? Clinical Testing Laboratories
? Research laboratories
? By Country:
? China
? India
? Japan
? ASEAN
? Australia
? South Korea
? Rest of Asia Pacific
? By Technology:
? Cell Based
? Bead Based
? By Product Type:
? Analyzer
? Sorter
? Reagents & Consumables
? By Application:
? Research
? Clinical
? Industrial
? By End User:
? Hospital
? Clinical Testing Laboratories
? Research laboratories
? By Country:
? GCC
? Israel
? Rest of Middle East
? By Technology:
? Cell Based
? Bead Based
? By Product Type:
? Analyzer
? Sorter
? Reagents & Consumables
? By Application:
? Research
? Clinical
? Industrial
? By End User:
? Hospital
? Clinical Testing Laboratories
? Research laboratories
? By Country/Region:
? North Africa
? Central Africa
? South Africa
? Company Highlights
? Products Portfolio
? Key Highlights
? Financial Performance
? Market Strategies
"*" marked represents similar segmentation in other categories in the respective section.