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      Continuous‐Flow Photocatalysis for the Direct C‐H Trifluoromethylation of Heterocycles with an Organic Photoredox Catalyst

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          Is Open Access

          DrugBank 5.0: a major update to the DrugBank database for 2018

          Abstract DrugBank (www.drugbank.ca) is a web-enabled database containing comprehensive molecular information about drugs, their mechanisms, their interactions and their targets. First described in 2006, DrugBank has continued to evolve over the past 12 years in response to marked improvements to web standards and changing needs for drug research and development. This year’s update, DrugBank 5.0, represents the most significant upgrade to the database in more than 10 years. In many cases, existing data content has grown by 100% or more over the last update. For instance, the total number of investigational drugs in the database has grown by almost 300%, the number of drug-drug interactions has grown by nearly 600% and the number of SNP-associated drug effects has grown more than 3000%. Significant improvements have been made to the quantity, quality and consistency of drug indications, drug binding data as well as drug-drug and drug-food interactions. A great deal of brand new data have also been added to DrugBank 5.0. This includes information on the influence of hundreds of drugs on metabolite levels (pharmacometabolomics), gene expression levels (pharmacotranscriptomics) and protein expression levels (pharmacoprotoemics). New data have also been added on the status of hundreds of new drug clinical trials and existing drug repurposing trials. Many other important improvements in the content, interface and performance of the DrugBank website have been made and these should greatly enhance its ease of use, utility and potential applications in many areas of pharmacological research, pharmaceutical science and drug education.
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            Fluorine in medicinal chemistry.

            It has become evident that fluorinated compounds have a remarkable record in medicinal chemistry and will play a continuing role in providing lead compounds for therapeutic applications. This tutorial review provides a sampling of renowned fluorinated drugs and their mode of action with a discussion clarifying the role and impact of fluorine substitution on drug potency.
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              Catalysis for fluorination and trifluoromethylation.

              Recent advances in catalysis have made the incorporation of fluorine into complex organic molecules easier than ever before, but selective, general and practical fluorination reactions remain sought after. Fluorination of molecules often imparts desirable properties, such as metabolic and thermal stability, and fluorinated molecules are therefore frequently used as pharmaceuticals or materials. But the formation of carbon-fluorine bonds in complex molecules is a significant challenge. Here we discuss reactions to make organofluorides that have emerged within the past few years and which exemplify how to overcome some of the intricate challenges associated with fluorination.
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                Author and article information

                Contributors
                Journal
                European Journal of Organic Chemistry
                Eur J Org Chem
                Wiley
                1434-193X
                1099-0690
                January 10 2023
                December 23 2022
                January 10 2023
                : 26
                : 2
                Affiliations
                [1 ]Center for Intelligent Microprocess of Pharmaceutical Synthesis Department of Chemical Engineering Pohang University of Science and Technology (POSTECH) Pohang 37673 South Korea
                [2 ]College of Chemistry and Chemical Engineering Shenyang Normal University Shenyang Liaoning 110034 P. R. China
                Article
                10.1002/ejoc.202201287
                3404e009-6a05-427b-ac82-e880e6a54701
                © 2023

                http://onlinelibrary.wiley.com/termsAndConditions#vor

                http://doi.wiley.com/10.1002/tdm_license_1.1

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