Cell separation technologies include devices and technologies that provide high yields of pure, viable and functional cell isolates. The principles of cell separation have not increased over the years but primarily include magnetic separation to a very large extent today. The market for cell separation technologies is driven primarily by increasing demand from research, considering the rise of cell therapy in recent years. Foremost usage of these technologies lie in the research of immunology, neuroscience, oncology and stem cell applications. The technology consists primarily of centrifuge devices with several added capabilities for cell separation from various types of tissues.
Magnetic activated cell sorting (MACS) is the largest applied technology and Miltenyi Biotech is a leading manufacturer of the technology along with Life Technologies’sDynaBeads. Rigid and stern regulations challenge the growth of the market along with technological challenges such as separation of stem cells from fatty tissue. In such instances a combination of centrifugation, magnetic bead separation, and flow cytometry is used to develop cell therapies. GMP manufacturing practices have to be adhered to strictly by manufacturers to garner sustainability and assure sale of their technology. The market for cell separation technologies is concentrated in developed countries due to a considerably higher research activity, yet the trend is already shifting towards emerging markets such as the BRICS and Middle-East region, where increasing medical research facilities and investment by governments has begun shaping an excellent opportunity.
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Some of the key players in this area include Life Technologies, GE Healthcare, Miltenyi Biotech, STEMCELL Technologies, Baxter among several others. The market is quite fragmented due to large number of players vying in the increasing stem cell and cell therapy markets.
Several recent developments such as Terumo’s acquisition of CaridianBCT have been observed which has indicated strong market potential in the coming years. Other technological variations such as the use of micro and nano-fluidics has also gathered momentum wherein feasibility studies by developers such as Owl Biomedical, have been promising for use of microfluidics chips that sort cells via microscopic channels and gates which will speed up the process considerably.
This research report analyzes this market depending on its market segments, major geographies, and current market trends. Geographies analyzed under this research report include
• North America
• Asia Pacific
• Rest of the World
This report provides comprehensive analysis of
• Market growth drivers
• Factors limiting market growth
• Current market trends
• Market structure
• Market projections for upcoming years
This report is a complete study of current trends in the market, industry growth drivers, and restraints. It provides market projections for the coming years. It includes analysis of recent developments in technology, Porter’s five force model analysis and detailed profiles of top industry players. The report also includes a review of micro and macro factors essential for the existing market players and new entrants along with detailed value chain analysis.
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