Uncovering the Latest Trends in the Chromatography Reagents Market by 2025


Posted February 6, 2023 by Prachi001

Chromatography Reagents Market is expected to grow from an estimated USD 5.5 billion in 2020 to USD 7.8 billion by 2025, at a CAGR of 7.1% during the forecast period.
 
The chromatography reagents market is expected to witness significant growth in the coming years. This is due to the increasing demand for efficient and cost-effective chromatography reagents in various industries. Chromatography reagents are widely used in the pharmaceutical, biotechnology, environmental, and food industries. These reagents are used to separate, analyze, and purify various types of compounds. Chromatography reagents are also used in forensic science, medical diagnostics, and drug development.

The increasing demand for chromatography reagents is mainly driven by the growing pharmaceutical, biotechnology, and environmental industries. The increasing demand for these reagents is also driven by the need for more efficient and cost-effective analysis of complex compounds. The rising demand for chromatography reagents is also being driven by the increasing number of drug discovery initiatives and the growing awareness of the importance of chromatography reagents in the diagnosis and treatment of various diseases.

Currently, Chromatography Reagents Market is expected to grow from an estimated USD 5.5 billion in 2020 to USD 7.8 billion by 2025, at a CAGR of 7.1% during the forecast period. The increasing R&D investments in the pharmaceutical and biotechnology industry as well as increasing importance of chromatography tests for drug approvals are high growth prospects for the chromatography reagents market during the forecast period.

A few major players that have an extensive geographic presence dominate the chromatography reagents market industry globally. The leading players in the chromatography reagents market include Agilent Technologies (US), Thermo Fisher Scientific (US), Merk Group (Germany), Sigma-Aldrich (US), Avantor Performance Materials (US), Waters Corporation (US), Bio-Rad Laboratories (US), GE Healthcare (UK), Regis Technologies (US), Santa Cruz Biotechnology (US), and Loba Chemie (India).

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The pharmaceutical testing, application segment is expected to grow at the highest CAGR from 2020 to 2025.

Pharmaceutical manufacturers and related testing service providers are among the key end users of chromatography reagents. They use analytical instrumentation during various stages of drug discovery, drug research and development, pharmacokinetics, toxicology, and clinical studies, as well as during the manufacturing of bulk drugs and biological products, drug stability testing, and in qualitative and quantitative pharmaceutical analysis. Increasing R&D for therapeutic areas, such as cancer, HIV/AIDS, and immunodeficiency disorders, technological innovations in biotechnology research, increasing focus of pharmaceutical and biotechnology companies on extending their product pipeline, rising number of drug discovery and clinical trial projects, and patent expiry of blockbuster drugs and biomolecules are some of the key factors driving the growth of this segment. Additionally, the availability of government and corporate funding for biotechnology and pharmaceutical research, growth of the pharmaceutical industry, and presence of stringent regulatory guidelines for drug development and safety are the other key factors driving the growth of this segment.

The adsorption chromatography segment is expected to grow at the highest CAGR in the chromatography reagents market during the forecast period.

Adsorption chromatography is a type of liquid chromatography in which chemicals are retained based on their adsorption and desorption at the surface of the support, which also acts as the stationary phase. This method is also sometimes referred to as liquid-solid chromatography. Retention in this method is based on the competition of the analyte with molecules of the mobile phase as both bind to the surface of the support. The degree of a chemicals retention in adsorption chromatography will depend on the binding strength of this chemical to the support, surface area of the support, amount of mobile phase displaced from the support by the chemical, and binding strength of the mobile phase to the support. A wide range of applications and higher adoption of adsorption as a separation mechanism in various industries is a key factor driving the growth of this market.

The LC reagent is expected to grow at the highest CAGR during the forecast period.

LC is the most widely used form of chromatography due to its flexibility and functionality. LC is used for the separation of macromolecules and ionic species of biomedical interest, labile natural products, and a wide variety of high-molecular-weight and less-stable compounds such as proteins, polysaccharides, synthetic polymers, nucleic acids, plant pigments, and surfactants. In this technique, the mobile phase is a liquid. HPLC is one of the most powerful analytical tools in chemical, biomedical, and pharmaceutical sciences. It has the ability to separate, identify, quantitate, and purify individual components present in any sample that can be dissolved in a liquid. Using HPLC, compounds in trace concentrations as low as parts per trillion (ppt) can easily be identified. HPLC is used for the analysis of samples used in forensic institutes and industries such as pharmaceuticals, food, nutraceuticals, cosmetics, and environmental testing.

Various types of chromatography reagents are available in the market, such as column chromatography reagents, gel filtration chromatography reagents, ion exchange chromatography reagents, and affinity chromatography reagents. Column chromatography reagents are used for the separation of compounds based on the size and hydrophobicity of the molecules. Gel filtration chromatography reagents are used to separate compounds based on their molecular weight and shape. Ion exchange chromatography reagents are used to separate molecules based on their charge, while affinity chromatography reagents are used to separate molecules based on their affinity for a specific molecule or ligand.

The growing demand for chromatography reagents is expected to drive the growth of the global chromatography reagents market during the forecast period. The increasing demand for efficient and cost-effective chromatography reagents is expected to boost the growth of the market. The growing pharmaceutical and biotechnology industries are expected to drive the growth of the chromatography reagents market. In addition, the increasing number of drug discovery initiatives and the growing awareness of the importance of chromatography reagents in the diagnosis and treatment of various diseases are expected to boost the growth of the chromatography reagents market.

The increasing demand for chromatography reagents is expected to drive the growth of the global chromatography reagents market. The rising demand for chromatography reagents is being driven by the need for more efficient and cost-effective analysis of complex compounds in various industries. The increasing number of drug discovery initiatives is also expected to drive the growth of the chromatography reagents market. Moreover, the increasing awareness of the importance of chromatography reagents in the diagnosis and treatment of various diseases is expected to further drive the growth of the chromatography reagents market.

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Recent Developments

In May 2020, Thermo Fisher Scientific announced that it is expanding its capacity for viral vector development and manufacturing services with the construction of a new commercial manufacturing site in Plainville.
In March 2017, Avantor acquired VWR Corporation to achieve high-growth in the biopharma, industrial, and applied research sectors.
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Tags chromatography reagents market , chromatography reagents market growth , chromatography reagents market share
Last Updated February 6, 2023