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    Multiomics integration in skin diseases with alterations in notch signaling pathway: PlatOMICs phase 1 deployment

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    Date
    2021-02-02
    Author
    Brandão, Lucas André Cavalcanti
    Tricarico, Paola Maura
    Gratton, Rossella
    Agrelli, Almerinda
    Zupin, Luisa
    Abou-Saleh, Haissam
    Moura, Ronald
    Crovella, Sergio
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    Abstract
    The high volume of information produced in the age of omics was and still is an important step to understanding several pathological processes, providing the enlightenment of complex molecular networks and the identification of molecular targets associated with many diseases. Despite these remarkable scientific advances, the majority of the results are disconnected and divergent, making their use limited. Skin diseases with alterations in the Notch signaling pathway were extensively studied during the omics era. In the GWAS Catalog, considering only studies on genomics association (GWAS), several works were deposited, some of which with divergent results. In addition, there are thousands of scientific articles available about these skin diseases. In our study, we focused our attention on skin diseases characterized by the impairment of Notch signaling, this pathway being of pivotal importance in the context of epithelial disorders. We considered the pathologies of five human skin diseases, Hidradenitis Suppurativa, Dowling Degos Disease, Adams-Oliver Syndrome, Psoriasis, and Atopic Dermatitis, in which the molecular alterations in the Notch signaling pathway have been reported. To this end, we started developing a new multiomics platform, PlatOMICs, to integrate and re-analyze omics information, searching for the molecular interactions involved in the pathogenesis of skin diseases with alterations in the Notch signaling pathway.
    URI
    https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85100829214&origin=inward
    DOI/handle
    http://dx.doi.org/10.3390/ijms22041523
    http://hdl.handle.net/10576/25905
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    • Biological & Environmental Sciences [‎933‎ items ]

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