Cell isolation is being widely used in the healthcare sector to facilitate the production of biopharmaceuticals and early detection of diseases. Cell separation or isolation techniques are applied in the manufacturing of biopharmaceuticals, such as biosimilars, monoclonal antibodies, and recombinant proteins. Since the cells are derived from plant, human, and animal sources, they need a more scrutinized filtration system to prevent contamination by bacteria and viruses.
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Moreover, a surge in government investment and funding is leading to an advancement in the technologies used for cell isolation and pharmaceutical production. The funding for cell-based research is rising worldwide to come up with better ways to treat and control cancer and other chronic ailments. Due to these developments, the demand for cell separation procedures is escalating, which, in turn, is expected to propel the cell isolation market at a CAGR of 18.8% during 2018–2023.
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The various applications of cell isolation techniques include biomolecule isolation, stem cell research, in-vitro diagnostics, cancer research, tissue regeneration, and therapeutics. Due to the growing focus of pharmaceutical companies on the development of biomolecule-based drugs, which display fewer side-effects than other classes of medicines, the usage of cell separation techniques is rising for biomolecule isolation. As a result, the demand for different consumables, such as kits, sera, beads, reagents, media, and disposables, is increasing faster than for instruments.