Wilmington, Delaware, United States, Transparency Market Research, Inc. , Oct. 29, 2024 (GLOBE NEWSWIRE) -- As per the report published by Transparency Market Research, the fragment based drug discovery market (단편 기반 신약 발견 시장) was worth US$ 795.4 Mn in 2022 and is expected to reach US$ 2.1 Billion by the year 2031 at a CAGR of 11.5 % between 2023 and 2031.
Fragment-Based Drug Discovery (FBDD) is an innovative and increasingly popular approach in early-stage drug development. Unlike traditional high-throughput screening (HTS), which focuses on large and complex molecules, FBDD involves screening small, low molecular weight fragments as the starting point for drug discovery. These fragments interact with target proteins, offering crucial insights into binding characteristics and serving as the foundation for lead optimization.
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FBDD presents several key advantages over conventional methods, including enhanced chemical diversity, higher hit rates, and the ability to target challenging proteins that are often difficult to address through traditional approaches. This method is particularly valuable in drugging targets with shallow binding sites or novel allosteric sites, making it a promising tool for tackling diseases with limited therapeutic options. As a result, FBDD is gaining traction within the pharmaceutical industry as a preferred strategy for generating novel drug candidates.
Key Players in Fragment Based Drug Discovery Market
Alveus Pharmaceuticals Pvt. Ltd., Astex Pharmaceuticals, Charles River Laboratories International, Inc., Beactica AB, Emerald BioStructures, Inc., Crown Bioscience, Inc., Evotec AG, Proteros Fragments GmbH, Kinetic Discovery Limited, Sprint Bioscience, Sygnature Discovery AND Structure Based Design, Inc. are some of the leading players.
Fragment Based Drug Discovery Market: A Sneak Peek
The Fragment-Based Drug Discovery (FBDD) market is witnessing robust growth, driven by its increasing adoption in pharmaceutical and biotechnology companies for early-stage drug development. FBDD's ability to efficiently identify starting points for drug design by screening small, low-molecular-weight fragments has made it a preferred alternative to traditional high-throughput screening (HTS).
Its versatility in addressing challenging biological targets, such as proteins with shallow binding pockets or allosteric sites, has further positioned FBDD as a valuable tool in drug discovery, especially in areas like cancer, infectious diseases, and neurodegenerative disorders. One of the primary growth drivers of the FBDD market is the growing need for innovative and efficient drug discovery approaches. Traditional methods, including HTS, often face challenges such as low hit rates, limited chemical diversity, and the inability to target difficult-to-drug proteins. FBDD offers a more efficient exploration of chemical space, using smaller libraries of fragments while still covering a wide range of chemical diversity. The method’s ability to rapidly generate hit compounds with better drug-like properties, such as solubility and bioavailability, has fueled its adoption across the pharmaceutical industry, where time and cost efficiency are critical in drug development.
The successful development of fragment-derived drugs reaching late-stage clinical trials and regulatory approvals is another key driver of fragment based drug discovery market growth. For instance, Vemurafenib used to treat melanoma, and Venetoclax, for leukemia, are both - derived from fragment-based discovery and have demonstrated the method's effectiveness in producing viable therapeutic agents.
These successes have encouraged further investment in FBDD platforms, leading to expanded use in drug discovery pipelines. Pharmaceutical companies are recognizing the potential of FBDD to address previously undruggable targets, creating a positive outlook for market growth.
The FBDD market is expected to grow significantly in the upcoming period, driven by advances in screening technologies, such as X-Ray crystallography, NMR, and molecular modeling, which enhance fragment identification and optimization. Additionally, the increasing demand for precision medicine and the focus on tackling complex diseases will further propel the adoption of FBDD in the drug discovery process. As the method continues to demonstrate its potential in delivering successful therapeutic candidates, more companies are expected to integrate FBDD into their R&D processes, bolstering the market's expansion.
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Fragment-Based Drug Discovery Market Regional Insights
• North America dominated the market share in 2022
The Fragment-Based Drug Discovery (FBDD) market in North America is experiencing substantial growth, driven by multiple factors, including the region’s advanced research infrastructure, strong presence of pharmaceutical and biotechnology companies, and increased focus on innovative drug discovery techniques. North America, particularly the United States, is a global leader in drug discovery and development, making it a key region for the adoption of cutting-edge approaches like FBDD.
One of the key factors driving the FBDD market in North America is the significant investment in research and development (R&D) by pharmaceutical companies, academic institutions, and research organizations. The region's commitment to innovation is supported by the availability of advanced technologies, such as X-Ray crystallography, nuclear magnetic resonance (NMR), and surface plasmon resonance (SPR), which are crucial for fragment screening and optimization.
These tools enable more accurate identification of fragment hits and provide detailed structural information for the development of highly selective drug candidates. The continuous investment in high-end infrastructure and drug discovery platforms enhances the region’s capacity to adopt and expand FBDD practices.
Fragment Based Drug Discovery Market Segmentation
- Component
- Fragment Screening
- Biophysical Techniques
- NMR Spectroscopy
- Differential Scanning Fluorimetry (DSF) Assay
- Fluorescence Polarization
- Isothermal Titration Calorimetry
- X-ray Crystallography
- Surface Plasmon Resonance (SPR)
- Bilayer Interferometry
- Mass Spectrometry (MS)
- Capillary Electrophoresis
- Weak Affinity Chromatography (WAC - HPLC-UV/MS)
- Other assays (biochemical)
- Non-biophysical Techniques
- Biophysical Techniques
- Fragment Optimization
- Fragment Screening
- Application
- Oncology
- Central Nervous System (CNS) Disorders
- Infectious Diseases
- Cardiovascular Diseases
- Metabolic Disorders
- Inflammation & Autoimmune Diseases
- End-user
- Academic & Research Institutions
- Pharmaceutical & Biotechnology Companies
- Contract Research Organizations (CROs)
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