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Biomedical subjects

Paul Watts

Publications and source records attributed to Paul Watts.

4 recordsLinked to original sources

Continuous flow reactors for drug discovery.

To develop a new generation of drugs, pharmaceutical companies need to be able to synthesize and screen novel chemicals with enhanced speed. New technology that would enable a cost-neutral increase in the number of potential drug candidates would provide a distinct competitive advantage. The miniaturisation of chemical reactors offers many fundamental and practical advantages of relevance to the pharmaceutical industry, which is constantly searching for controllable, information-rich, high-throughput and environmentally friendly methods of producing compounds with a high degree of chemical selectivity. This article reviews the current and future applications of micro reactors that could enhance the drug discovery process.

Chemistry, Pharmaceutical↗

X-ray crystallographic and kinetic studies of human sorbitol dehydrogenase.

Sorbitol dehydrogenase (hSDH) and aldose reductase form the polyol pathway that interconverts glucose and fructose. Redox changes from overproduction of the coenzyme NADH by SDH may play a role in diabetes-induced dysfunction in sensitive tissues, making SDH a therapeutic target for diabetic complications. We have purified and determined the crystal structures of human SDH alone, SDH with NAD(+), and SDH with NADH and an inhibitor that is competitive with fructose. hSDH is a tetramer of identical, catalytically active subunits. In the apo and NAD(+) complex, the catalytic zinc is coordinated by His69, Cys44, Glu70, and a water molecule. The inhibitor coordinates the zinc through an oxygen and a nitrogen atom with the concomitant dissociation of Glu70. The inhibitor forms hydrophobic interactions to NADH and likely sterically occludes substrate binding. The structure of the inhibitor complex provides a framework for developing more potent inhibitors of hSDH.

Binding Sites↗

Microfluidic combinatorial chemistry.

Microreactors are finding increasing application in the field of combinatorial chemistry. In the past few years, microreactor chemistry has shown great promise as a novel method on which to build new chemical technology and processes. It has been conclusively demonstrated that reactions performed within microreactors invariably generate relatively pure products in high yield. One of the immediate and obvious applications is therefore in combinatorial chemistry and drug discovery.

Combinatorial Chemistry Techniques↗