Fragment-Based Drug Discovery Market - Pin-Point Analyses of Market Competition Dynamics to Offer You a Competitive Edge

Fragment-based drug discovery has been recognized as a potential method to design novel molecules as this technique discovery utilizes comparatively small libraries of ‘fragments or ligands’ that are of low-molecular weights. Factors such as less time-consumption and easy access to biophysical fragment screening techniques are driving the growth of the global fragment-based drug discovery market.

 

Albany, NY -- (SBWIRE) -- 07/01/2016 -- The increasing search for new drugs to treat complicated medical problems has led to a surge in the global fragment-based drug discovery market. Furthermore, the growth of the global fragment-based drug discovery market has also led to dominance of biopharmaceutical companies, as the market requires a system for identification of lead compounds in the process of drug discovery.

The report published by Transparency Market Research on the global fragment-based drug discovery market gives a comprehensive overview of the important dynamics and trends. The report assesses the threat from new entrants, threat of substitute products or services, bargaining power of customers, bargaining power of suppliers, and the intensity of competitive rivalry with the help of a Porter's five forces analysis. Furthermore, it also evaluates the strengths, weaknesses, opportunities, and threats of the market with the help of a SWOT analysis. The report gives a clear understanding of the competitive landscape and segmentation of the market and an overview of the global fragment-based drug discovery market to enable its readers to make well-informed business decisions.

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Overview of Global Fragment-Based Drug Discovery Market

The drivers for the global fragment-based drug discovery market are its time-saving attributes and quick access to biophysical fragment screening techniques. Fragment-based drug discovery has become a method of designing unique molecules. This technique uses smaller 'fragments or ligands', which have lower molecular weights. The main restraint on the global fragment-based drug discovery market is the weak potency of a few compounds that are derived from fragment screening. The other conspicuous restraint on this market is the need for special 'fragment libraries' for conducting research.

The global fragment-based drug discovery market has been segmented into fragment screening and fragment optimization. The fragment screening segment is further sub-segmented into biophysical techniques and non-biophysical techniques. Biophysical techniques include isothermal titration calorimetry (ITC), nuclear magnetic resonance (NMR) spectroscopy, fluorescence polarization (FP), differential scanning fluorimetry (DSF), surface plasmon resonance, X-ray crystallography, assay (thermal shift), biolayer interferometry, capillary electrophoresis, mass spectrometry, and others (biochemical assays). The end-use applications encouraging the growth of this market are CROs, biopharmaceutical companies, and academic and research institutions. Geographically, the global fragment-based drug discovery market is divided into regions such as North America, Asia Pacific, Europe, Latin America, and Rest of the World.

North America dominated the global fragment-based drug discovery market due to growing awareness about this sector and the high level of its adoption by pharmaceutical companies. However, in the coming years, the Asia Pacific fragment-based drug discovery market will witness phenomenal growth due to the growing number of research and development activities.

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Companies Mentioned in the Global Fragment-Based Drug Discovery Market Report

The important players in the global fragment-based drug discovery market are Astex Pharmaceuticals, Beactica AB, Structure Based Design, Inc., Alveus Pharmaceuticals Pvt. Ltd., Emerald BioStructures, Inc., Evotec AG, Crown Bioscience, Inc., Kinetic Discovery Limited, Sprint Bioscience, Proteros Fragments GmbH, Charles River Laboratories International, Inc., and Sygnature Discovery.

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