Chromatography Reagents Market Size, Share, Scope, Growth, Trends and Global Forecast to 2026

August, 2021

Chromatography Reagents Market by Type, Technology, Separation Mechanism, Application, Region, Region, Trends, Competitive Analysis, and Growth Opportunities, Key Insights.

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Executive Summary

The global chromatography reagents market size is expected to grow from USD 5.28 billion in 2020 to USD 8.05 billion by 2026 at a CAGR of 7.3%.

Market growth is largely driven by factors, such as rising R&D funding in the pharmaceutical and biotechnology industry, and the increasing importance of chromatography testing for drug approval. In addition, the increasing use of chromatography in proteomics in developing countries is expected to reflect the growth paths of market players.

The COVID-19 epidemic has intensified drug discovery efforts and research efforts while adding to the pressure on pharma and clinical labs. Although the COVID-19 epidemic continues to reverse the growth of various industries, the impact of the outbreak remains variable. While a few industries will register declining demand, many others will continue to stabilize and show promising growth opportunities. The market for reagents in the chromatography market has seen significant growth over the years; however, due to the unexpected outbreak of COVID-19, the market is expected to see further growth in 2020, due to the increasing use of chromatography techniques in the adoption of various drugs. In addition, technological advances and the increasing importance of chromatography in hospital laboratories, laboratory laboratories, and pharmaceutical companies will enhance market growth over the forecast period.

Chromatography is a multidisciplinary method used in many industries, such as biopharmaceutical and pharmaceutical, food and beverage, petrochemical, and agribio. Pharmaceutical and biotechnology companies are investing heavily in research to find protein-related products to meet the growing needs of the healthcare industry. Chromatography, spectroscopy, PCR, flow cytometry, and NGS, among other techniques, are commonly used in proteomic research. Currently, pharmaceutical and biotechnology companies are increasingly adopting this technology for protein classification and identification during drug discovery and development. The growing public and private investment in medical and health research is driving the adoption and implementation of chromatography programs. This, in turn, increases the demand for and use of chromatography reagents worldwide.

Proper use of analytical technologies, such as chromatography, PCR, and NGS, requires expert knowledge and relevant knowledge. The various technologies in the market of chromatography reagents increase the need for skilled professionals who can effectively operate chromatography machines. For example, inconsistent column packing can lead to lower levels of purity and lesser production, which can affect the quality of the final product. In addition, the selection of the appropriate chromatography method (specific for a given task) plays a very important role in the purification process. Lack of information regarding the proper selection of strategies incurs several direct and indirect costs and increases the time to market drugs.

In recent years, chromatography has become the preferred method of differentiation in the field of proteomics. Chromatography has replaced 2D gel electrophoresis as an option, as electrophoresis has limited efficiency with the ability to clean only a small amount of protein. The proteomics market is expected to see significant growth in the coming years as it is considered an effective tool to close the gap between genetic sequencing and cellular behavior. In addition, the rising cost of R&D in proteomics and the increasing purchasing power of large research institutions due to the availability of funds from various organizations are expected to stimulate the growth of this market. In this field, chromatography is used for a variety of systems such as proteomic probe analysis, high strength / high chromatographic protein fragmentation, and proteome analysis. Therefore, growth in the proteomics market and the increasing use of chromatography in proteomics is expected to provide potential growth opportunities for market players in the coming years.

Pharmaceutical manufacturers and related testing service providers are among the major users of chromatography reagents. They use analytical tools during the various phases of drug discovery, drug research and development, pharmacokinetics, toxicology, and medical studies, as well as during mass drug and biological products, drug resistance testing, and quality and quantitative analysis of drugs. Increasing R&D in areas of treatment, such as cancer, HIV/AIDS, and immunodeficiency disorders, technological advances in biotechnology research, increasing the focus of pharmaceutical and biotechnology companies on expanding their product pipeline, a growing number of drug discovery and clinical trial projects, and the expiration of copyright Blockbuster drugs and biomolecule are some of the key factors contributing to the growth of this category. In addition, the availability of government and corporate funding for biotechnology research and pharmaceuticals, the growth of the pharmaceutical industry, and the existence of robust drug and safety management guidelines are some of the factors contributing to the growth of this sector.

Adsorption chromatography is a type of liquid chromatography in which chemicals are stored based on their advertising and depletion of desorption on the surface of the support, which acts as a standing phase. This method is sometimes called solid-liquid chromatography. Preservation in this way is based on the competition of the analyst with the cellular category molecules as they both bind in the face of the sponsor. The degree of chemical retention in adsorption chromatography will depend on the binding force of the chemical in the support, the surface of the support, the amount of the mobile phase removed from the chemical support, and the strength of the cellular phase in the support. Various applications and high acceptance of adsorption as a means of differentiation in various industries is an important factor contributing to the growth of this market.

North America has a well-established and diverse R&D infrastructure and has a high adoption rate of chromatography techniques among end-user industries. North America had the largest share of chromatography reagents in 2019. Many factors, such as enhancing drug manufacturing activities, the availability of government R&D funding for health sciences, high acceptance of advanced technology solutions, and a large number of ongoing clinical research studies drive the market growth of reagents in the North American market.

The major players in the chromatography reagents market Thermo Fisher Scientific (US), Agilent Technologies (US), Sigma-Aldrich (US), Waters Corporation (US), Avantor Performance Materials (US), Bio-Rad Laboratories (US), Merk Group (Germany), GE Healthcare (UK), Santa Cruz Biotechnology (US), Regis Technologies (US), and Loba Chemie (India).

Global Chromatography Reagents Market Size, 2017-2026 (USD Billion)
Global Chromatography Reagents Market Size, By Region, 2017-2026 (USD Billion)
Global Chromatography Reagents Market Revenue Share (%), By Type (2020)
Global Chromatography Reagents Market Revenue Share (%), By Technology (2020)
Global Chromatography Reagents Market Revenue Share (%), By Separation Mechanism (2020)
Global Chromatography Reagents Market Revenue Share (%), By Application (2020)
Global Chromatography Reagents Market Revenue Share (%), By Region (2020)

Market Overview

Definition & Scope

Chromatography reagents are used in a wide range of applications that includes HPLC, flash chromatography, ion chromatography, and complexometric titration amongst others. These products include a selection of stains, gels, buffers, solvents, indicators and standards for purification, isolation, and analytical needs.

Currency, Year & Forecasts Overview

For companies reporting their revenues in other currencies, the average annual currency conversion rates were used for a particular year to convert the value to USD.
For companies reporting their revenues in USD, the revenues were taken from their respective annual reports/SEC filings.
The currency used in this report is USD, with the market size indicated in terms of USD million/billion.

Industry Analysis

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Market Analysis

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By Type

Solvents Market Size, 2017 vs 2020 vs 2026 (USD Billion
Buffers Market Size, 2017 vs 2020 vs 2026 (USD Billion
Derivatization Reagents Market Size, 2017 vs 2020 vs 2026 (USD Billion
Ion-Pair Reagents Market Size, 2017 vs 2020 vs 2026 (USD Billion
Other Reagents Market Size, 2017 vs 2020 vs 2026 (USD Billion

By Technology

Global Chromatography Reagents Market Size, By Technology, 2017-2026 (USD Billion)
GC Reagents Market Size, 2017 vs 2020 vs 2026 (USD Billion
LC Reagents Market Size, 2017 vs 2020 vs 2026 (USD Billion
SFC Reagents Market Size, 2017 vs 2020 vs 2026 (USD Billion)
TLC Reagents Market Size, 2017 vs 2020 vs 2026 (USD Billion)
Paper Chromatography Reagents Market Size, 2017 vs 2020 vs 2026 (USD Billion)
Other Chromatography Technologies Market Size, 2017 vs 2020 vs 2026 (USD Billion)

By Separation Mechanism

Global Chromatography Reagents Market Size, By Separation Mechanism, 2017-2026 (USD Billion)
Adsorption Chromatography Market Size, 2017 vs 2020 vs 2026 (USD Billion
Partition Chromatography Market Size, 2017 vs 2020 vs 2026 (USD Billion
Ion-Exchange Chromatography Market Size, 2017 vs 2020 vs 2026 (USD Billion)
Size-Exclusion Chromatography Market Size, 2017 vs 2020 vs 2026 (USD Billion)
Affinity Chromatography Market Size, 2017 vs 2020 vs 2026 (USD Billion)
Other Separation Mechanisms Market Size, 2017 vs 2020 vs 2026 (USD Billion)

By Application

Global Chromatography Reagents Market Size, By Application, 2017-2026 (USD Billion)
Pharmaceutical Testing Market Size, 2017 vs 2020 vs 2026 (USD Billion)
Biopharma-Biotech Applications Market Size, 2017 vs 2020 vs 2026 (USD Billion)
Research & Academic Applications Market Size, 2017 vs 2020 vs 2026 (USD Billion)
Food & Beverage Testing Market Size, 2017 vs 2020 vs 2026 (USD Billion)
Clinical Testing Market Size, 2017 vs 2020 vs 2026 (USD Billion)
Environmental Testing Market Size, 2017 vs 2020 vs 2026 (USD Billion)
Cosmeceutical Applications Market Size, 2017 vs 2020 vs 2026 (USD Billion)
Forensic Testing Market Size, 2017 vs 2020 vs 2026 (USD Billion)
Petrochemical Analysis Market Size, 2017 vs 2020 vs 2026 (USD Billion)

North America

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Europe

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Asia Pacific

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Middle East & Africa

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Latin America

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Company Analysis

Thermo Fisher Scientific, Inc.

Thermo Fisher Scientific was founded in 1956 and is headquartered in Massachusetts, US. Its employee strength is 80,000. The company has direct presence across the regions of North America, Europe, Asia Pacific, Middle East and Africa, and South America. It is a leading global supplier of life sciences technologies and solutions. Thermo Fisher Scientific enables its customers to make the world cleaner, safer, and healthier. Thermo Fisher Scientific serves over 400,000 customers from the fields of pharmaceuticals, biotech, hospitals, clinics, diagnostic labs, universities, research institutes, and government.

Chromatography Reagents: HPLC Derivatization and Visualization Reagents; HPLC Ion Pair Reagents; HPLC Spectrophotometric Grade Solvents; HPLC Amino Acid Reagents and Standards; HPLC Peptide Standards

Competitive Analysis

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Analyst Insights For Success

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Research Methodology

This research study involved the usage of extensive secondary sources, directories, and databases such a Hoovers, Bloomberg Business, Factiva, and Avention, in order to identify and collect information useful for this technical, market-oriented, and commercial study of the global chromatography reagents market. The primary sources were mainly industry experts from the core and related industries. These include service providers, technology developers, standards and certification organizations, and organizations related to all segments of the value chain.

In-depth interviews were conducted with various primary respondents, which include key industry participants, subject-matter experts (SMEs), C-level executives of key market players, and industry consultants, to obtain and verify critical qualitative and quantitative information as well as to assess future prospects.

Various secondary sources were referred to for the identification and collection of information for this study. Secondary sources include annual reports, press releases, and investor presentations of companies, white papers, medical journals, certified publications, articles from recognized authors, gold standard and silver standard websites, directories, and databases.

Secondary research was mainly used to obtain key information about the industry’s supply chain, market’s monetary chain, the total pool of key players, market classification and segmentation according to industry trends to the bottom-most level, geographical markets, and key developments from both market-and technology-oriented perspectives.

After the market engineering process (which includes calculations for market statistics, market breakdown, market size estimations, market forecasting, and data triangulation) was completed, extensive primary research was conducted to verify and validate the critical numbers arrived at. Primary research was also conducted to identify the segmentation types; industry trends; key players; the competitive landscape of global chromatography reagents market; and key market dynamics such as drivers, restraints, opportunities, challenges, and key industry trends.

In the complete market engineering process, both top-down and bottom-up approaches were extensively used along with several data triangulation methods to perform market estimation and market forecasting for the overall market segments and sub segments listed in this report.

Appendix

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