Maybridge HitFinder™ Screening Compound Collection Helps to Develop Anti-Inflammatory Drugs

30 Sept 2010
Sarah Sarah
Marketing / Sales

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The Maybridge HitFinder™ screening compound collection from Thermo Fisher Scientific has helped scientists at the University of Minnesota identify and characterize a small-molecule inhibitor that holds promise for the development of anti-inflammatory drugs.

Professor David Bernlohr, Distinguished McKnight University Professor and Head of the Department of Biochemistry, Molecular Biology and Biophysics at the University of Minnesota, and his team used the HitFinder collection in studies of fatty-acid-binding protein (FABP) inhibitors. The collection was an invaluable tool in helping the team identify several strong leads – compounds that hold the potential for blocking FABP – which is part of the body’s inflammatory and metabolic response pathways. Ultimately, from this library they identified HTS01037, a pan-specific FABP inhibitor with broad anti-inflammatory properties. This study was recently published by Prof. Bernlohr and his team1.

“Molecular disruption of the lipid carrier AFABP/ap2 in mice has been found to result in improved insulin sensitivity, protection from atherosclerosis, as well as reduction in LPS-stimulated inflammation,” explained Prof. Bernlohr. “We were therefore interested in investigating the efficacy of small-molecule inhibitors in defining the mechanisms of AFABP/aP2 action that could ultimately deliver a pharmacologically beneficial compound. To achieve this we required a good quality chemical screening library as an essential starting point.”

Before beginning this research, Prof. Bernlohr evaluated several available screening libraries and selected the Maybridge HitFinder™ collection because of its ease of use, broad chemical coverage, high chemical and structural diversity, as well as simplicity of format and organization in 384 well formats.

“Upon using the HitFinder collection to deliver HTS01037, we also were very pleased with the reproducibility of the collection, the ability to rapidly evaluate a variety of chemical space and the organization and handling of the samples,” Prof. Bernlohr said.

From this initial study, the Bernlohr group has been able to expand its analysis of FABP inhibitors and use them to probe FABP function in a variety of cells and systems. “If we had to start over from scratch, I am confident that we would follow the same path and utilize the HitFinder™ collection again due to the excellent results and data that it has delivered, whilst being highly economical and easy to use,” Prof. Bernlohr said.

The Maybridge HitFinder collection is a premier offering of drug-like screening compounds which maintains the superior structural diversity of the Maybridge Screening Collection by using an industry standard clustering algorithm to select a statistically representative sample of the full collection. All compounds fit Lipinski guidelines for "drug-likeness" and have purity greater than 90 percent. Additionally, they have been selected to be non-reactive, ensuring fewer false positives and higher quality results.

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High-Throughput ScreeningHigh-throughput screening (HTS) is an automated drug discovery technique for identification of active compounds against a compound library. Use HTS readers and integrated assay preparation / analysis workstations to screen your compounds. Identify active compounds against various HTS libraries, including membranes, proteins and peptides and HTS cell lines. Find the best high-throughput screening products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Process ChemistryProcess chemistry is an important stage of drug development for scaling-up drug production or chemical synthesis reactions. It is useful for optimizing economical and efficient drug production. Process chemistry uses reactors and pump systems as well as reagents, standards and buffers.High-Content ScreeningHigh-content screening (HCS), also known as high-content analysis (HCA), is a high-throughput technique used in drug discovery to identify substances that alter the phenotype of cells. HCS uses fluorescent microscopic imaging and automated image analysis to investigate cellular events such as apoptosis, cell viability, GPCR activation, oxide production, neurite outgrowth, and cell signaling. Find the best fluorescent labeling reagents, cellular assays, and high-content imaging systems in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Biopharmaceutical AdvancesBiopharmaceutical advances follow the development of pharmaceuticals derived from biotechnology, also known as biotechnology medicines. Biopharmaceuticals may be produced from cell lines, plants, or microbial cells. Important considerations of biopharmaceutical use include application, cost, production process and purification.