The Global Microcarrier Market is forecasted to value over USD 3.4 billion by 2028 end at a CAGR of over 10.7% during the forecast period 2022 to 2028.
Microcarriers allow adherent cells to grow in bioreactors. Commercial production of biologics (proteins) and vaccines uses microcarriers to produce protein-producing or virus-producing adherent cell populations. In addition to spinner flasks, other vessels may also be used to support microcarrier-based cultures, such as rotating wall microgravity bioreactors and fluidized bed bioreactors. In the vaccine industry, the benefits of microcarrier technology include ease of scale-up, the ability to accurately control cell growth conditions in sophisticated, computer-controlled bioreactors, the reduction of floor space and the number of incubators required for a given-sized production process, and a drastic reduction in technician labor. Microcarriers are structures that support the growth and expansion of cells. Plastic, dextran, and glass are commonly used as microcarrier materials. There are usually no toxic chemicals in microcarriers, and they are very fine particulates. Additionally, they are made from natural materials such as gelatin, cellulose, and collagen. During the bioprinting process, microcarriers are used to reinforce the blocks. Microcarriers have a particular shape and are interconnected by pores in a spherical shape that assists cells in growing and attaching to surfaces. The monolayer habitat provided by microcarriers is extensive. Compared to 2D culture, the transfer of gases and nutrients between cells and media is very efficient. Bioprinting in hydrogels and extrusion based bioprinting (EBB) use microcarriers to load microcarriers. During the process of producing vaccines on a large scale, microcarriers are usually grown in protein-producing adherent and virus-producing cell populations. Microcarriers are supports that allow adherent cells to grow in bioreactors. It is possible to multiply the expansion capacity several times over by cultivating cells on the surface of spherical microcarriers instead of on a flat surface. Culture systems can be scaled up for industrial production of cell-based or protein-based therapies, or for research purposes. In order to allow sufficient surface area while retaining adequate cell adhesion and support, these solid or porous spherical matrixes range in diameter from 100 to 300 um, and their density is minimally above water (1 g/ml) in order to stay suspended. Depending on their composition, they can be made from synthetic materials such as acrylamide or natural materials such as gelatin. A few of the advantages of microcarrier technology in biotech include its ease of scale-up, the ability to precisely control cell growth conditions in sophisticated, computer-controlled bioreactors, a drastic reduction in technician labor, a more natural environment for cell culture that promotes differentiation, and a reduction in floor space and incubator volume required for a given-sized manufacturing operation.
The astute research report on Microcarrier market provides intricate details for analyzing appropriate parameters and valuable insights. The report offers extensive information about this business to help bring forth the growth potential of the market across various segments and provides the clients with a comprehensive analysis of factors like market size, market growth trends, competitive landscape, product utilization, regional growth prospects, and application potential, etc. The data provided in the report has been gathered from a wide variety of sources by using primary and secondary research. This Microcarrier research report also provides crucial insights into consumer behaviour, brand positioning, pricing analysis, and key player strategies. The market overview included in the Microcarrier research report incorporates critical factors procured from industry analysts, prominent players as well as trade and industrial organizations.
The report on Microcarrier market offers up-to-date information on the factors impeding the market growth which shall provide vendors with crucial insights into understanding the market dynamics thereby aiding the clients to sketch out a better business strategy. These factors will help them identify market growth opportunities. Furthermore, FutureWise research analysts provide timely assistance to their customers in understanding eccentric market parameters more effectively thereby leading to better decision-making.
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The Microcarrier market research report is segmented – by product, by application, by end user, and by region. It also consists of insights regarding the revenue value and sales volume during the forecasted timeframe of 2022 to 2028.
Microcarrier Market Segmentation:
By Product
Consumables
Equipment
By Application
Biopharmaceutical Production
Cell and Gene Therapy
Tissue Engineering and Regenerative Medicine
Other Applications
By End User
Pharmaceutical & Biotechnology Companies
Contract Research Organizations & Contract Manufacturing Organizations
Academic and Research Institutes
Cell Banks
By Region
North America
Europe
Asia-Pacific
Latin America
Middle East and Africa
Microcarrier Market Regional Analysis:
The report provides a complete evaluation of the potential amplification of the Microcarrier Market in pivotal geographic regions such as North America, Asia Pacific, Europe, Latin America and Middle East & Africa.
Competitive Landscape:
Some of the key market players are
Thermo Fisher Scientific
Corning
Merck
Sartorius
Danaher Corporation
Becton, Dickinson And Company
Eppendorf Ag
Lonza Group
Getinge Ab
Chemometec
Cesco Bioengineering
Himedia Laboratories
Esco Vaccixcell
Stemcell Technologies
Solida Biotech
Stobbe Pharma
Distek
Celltainer Biotech
G&G Technologies
Tantti
FutureWise Key Takeaways:
Growth prospects
SWOT analysis
Key market trends
Key data-points affecting market growth
Objectives of the Study:
To provide an extensive analysis of the global Microcarrier market by product, by application, by end user, and by region
To carter complex data and information on the characteristics influencing the market growth (drivers, restraints, opportunities, and industry-specific restraints)
To predict and assess micro-markets and the overall market
To anticipate the market size, in key geographical regions (along with countries)— North America, Europe, Asia Pacific, Latin America and the Middle East and Africa
To estimate and inspect competitive landscape mapping- technological advancements, product launches, mergers and expansions
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