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      A Sensitization-Free Dimethyl Fumarate Prodrug, Isosorbide Di-(Methyl Fumarate), Provides a Topical Treatment Candidate for Psoriasis

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          Abstract

          Dimethyl fumarate (DMF) is an effective oral treatment for psoriasis administered in Europe for nearly 60 years. However, its potential has been limited by contact dermatitis that prohibits topical application. This paper characterizes a DMF derivative, isosorbide DMF (IDMF), which was designed to have antipsoriatic effects without skin-sensitizing properties. We show that IDMF exhibits neither genotoxicity nor radiation sensitivity in skin fibroblasts and is nonirritating and nonsensitizing in animal models (rat, rabbit, guinea pig). Microarray analysis of cytokine-stimulated keratinocytes showed that IDMF represses the expression of genes specifically upregulated in psoriatic skin lesions but not those of other skin diseases. IDMF also downregulated genes induced by IL-17A and TNF in keratinocytes as well as predicted targets of NF-κB and the antidifferentiation noncoding RNA (i.e., ANCR). IDMF further stimulated the transcription of oxidative stress response genes ( NQO1, GPX2, GSR) with stronger NRF2/ARE activation compared to DMF. Finally, IDMF reduced erythema and scaling while repressing the expression of immune response genes in psoriasiform lesions elicited by topical application of imiquimod in mice. These data show that IDMF exhibits antipsoriatic activity that is similar or improved compared with that exhibited by DMF, without the harsh skin-sensitizing effects that have prevented topical delivery of the parent molecule.

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          Most cited references73

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          Controlling the False Discovery Rate: A Practical and Powerful Approach to Multiple Testing

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            Cutadapt removes adapter sequences from high-throughput sequencing reads

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              HTSeq—a Python framework to work with high-throughput sequencing data

              Motivation: A large choice of tools exists for many standard tasks in the analysis of high-throughput sequencing (HTS) data. However, once a project deviates from standard workflows, custom scripts are needed. Results: We present HTSeq, a Python library to facilitate the rapid development of such scripts. HTSeq offers parsers for many common data formats in HTS projects, as well as classes to represent data, such as genomic coordinates, sequences, sequencing reads, alignments, gene model information and variant calls, and provides data structures that allow for querying via genomic coordinates. We also present htseq-count, a tool developed with HTSeq that preprocesses RNA-Seq data for differential expression analysis by counting the overlap of reads with genes. Availability and implementation: HTSeq is released as an open-source software under the GNU General Public Licence and available from http://www-huber.embl.de/HTSeq or from the Python Package Index at https://pypi.python.org/pypi/HTSeq. Contact: sanders@fs.tum.de
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                Author and article information

                Contributors
                Journal
                JID Innov
                JID Innov
                JID Innovations
                Elsevier
                2667-0267
                08 July 2021
                December 2021
                08 July 2021
                : 1
                : 4
                : 100040
                Affiliations
                [1 ]Sunny BioDiscovery, Inc, Santa Paula, California, USA
                [2 ]Symbionyx Pharmaceuticals Inc, Boonton, New Jersey, USA
                [3 ]Department of Pure and Industrial Chemistry, Faculty of Physical Sciences, University of Nigeria, Nsukka, Nigeria
                [4 ]School of Chemistry & Physics, University of KwaZulu-Natal, Durban, South Africa
                [5 ]Department of Internal Medicine, The Jewish Hospital, Cincinnati, Ohio, USA
                [6 ]Sytheon Ltd, Boonton, New Jersey, USA
                Author notes
                []Correspondence: William R. Swindell, Department of Internal Medicine, The Jewish Hospital, 4777 East Galbraith Road, Cincinnati, Ohio 45236-2725, USA. ws277814@ 123456ohio.edu
                Article
                S2667-0267(21)00040-0 100040
                10.1016/j.xjidi.2021.100040
                8659395
                34909741
                1d1ef38d-ecc5-4d4a-9d18-5f014ec1cbee
                © 2021 The Authors

                This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

                History
                : 12 April 2021
                : 28 May 2021
                : 7 June 2021
                Categories
                Original Article

                are, antioxidant response element,ces2, carboxylesterase 2,cpd, cyclobutane pyrimidine dimer,ctrl, control,deg, differentially expressed gene,dmf, dimethyl fumarate,fc, fold change,fdr, false discovery rate,gsh, glutathione,idmf, isosorbide di-(methyl fumarate),imq, imiquimod,kc, keratinocyte,mmf, monomethyl fumarate,pn, uninvolved skin from psoriasis patient,pp, lesional skin from psoriasis patient,rna-seq, rna sequencing,veh, vehicle

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