Personalized medicine is at cusp of making rapid strides in the global pharmaceuticals market. This novel treatment method would potentially benefit a large population affected by chronic diseases such as diabetes, cancer, respiratory disorders, and neurological disorders. Developing personalized therapy requires understanding the patient’s genetic composition, identifying a biomarker, and multiplication of cells or tissues. Cell culture is the prominent method for cell growth. Moreover, advancements in cell culture techniques, such as the 3D cell culture, has further encouraged extensive use of this technique in medical research.
Researchers monitor cell growth at regular intervals and terminate cell growth when desired growth or number of cells (cell density) is achieved. Manual monitoring of cell culture is time consuming and is associated with high human error risk. Therefore, a device or analyzer that can continuously monitor the cell culture without requiring manual intervention could help reduce error and save time. Electrochemical biosensors and fiber optic biosensors are deployed in cell culture monitoring analyzers, enabling various parameters such as temperature, cell density, and cell growth. Awareness about such automated cell culture monitoring devices and analyzers will spur growth of the cell culture monitoring biosensors market.
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The growing cell culture application in research and product development, Application of cell culture is quite significant and pronounced in every research and product development in the food, pharmaceutical, biotechnology, and other sectors. Cell culture technique has enabled quick manufacturing of vaccines and biotechnology products. Moreover, a spike in growth is expected in the biosimilars market which will further propel the demand for cell culture monitoring and hence, the need for biosensors. Personalized medicines is the new trend in the market. Cell culture technique used for identifying potential biomarkers and develop a targeted drug therapy requires accurate and continuous monitoring of critical cell culture parameters at regular time interval. All these factors are expected to fuel the demand for cell culture monitoring biosensors during the forecast period
According to Hindawi Publishing Corporation and BioMed Research International, the thermometric, magnetic, and piezoelectric transducers were not exert a practical impact in the applications of tissue engineering and regenerative medicine. The gradual success of optical-fiber sensors is attributed to their application in tackling difficult measurement situations where conventional sensors do not provide the required accuracy. Furthermore, these sensors are usually compact, lightweight with effectively multiplexed on a single fiber network along being with minimally invasive. Electromagnetic interference do not affect the results, as they do not have electrical current flowing at the sensing point, which could interfere with the reading. Fiber optic biosensors can also survive in difficult environments and are compatible with wide range of physical situations such as high doses of radiation, which favors its market revenue growth in the nuclear medicine industry.
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Cell culture finds applications for research and product development across a wide range of sectors, including food, pharmaceuticals, and biotechnology, among others. Cell culture technique allows for quick manufacturing of vaccines and biotechnology products. The growing biosimilars industry, is further expected to increase demand for cell culture monitoring for biosensors.
Growing preference for personalized medicines is also fueling growth of the cell culture monitoring biosensors market, as culture technique is used for identifying potential biomarkers and developing a targeted drug therapy with accurate and continuous monitoring of critical cell culture parameters at regular time intervals. These factors are expected to fuel the demand for cell culture monitoring biosensors during the forecast period. Devices need to ensure accuracy and security of data generated. For this, sensors in the devices need to be very sensitive to changes in the cell size, count, temperature, and other parameters. Furthermore, demand for portable devices in turn is fuelling demand for micro- and nano-sized sensors with high sensitivity and accuracy.
Some of the major players involved in global cell culture monitoring biosensors market are C-CIT Sensors AG, Sarissa Biomedical Ltd, Lonza, Lifeonics, Nova Biomedical, Conductive Technologies Inc., Nanomedical Diagnostics and Sierra Sensors GmbH.
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