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Unveiling extracellular matrix assembly: Insights and approaches through bioorthogonal chemistry

  • Shima Tavakoli
  • , Austin Evans
  • , Oommen P. Oommen
  • , Laura Creemers
  • , Jharna Barman Nandi
  • , Jöns Hilborn
  • , Oommen P. Varghese*
  • *Tämän työn vastaava kirjoittaja

    Tutkimustuotos: Katsausartikkelivertaisarvioitu

    10 Sitaatiot (Scopus)
    61 Lataukset (Pure)

    Abstrakti

    Visualizing cells, tissues, and their components specifically without interference with cellular functions, such as biochemical reactions, and cellular viability remains important for biomedical researchers worldwide. For an improved understanding of disease progression, tissue formation during development, and tissue regeneration, labeling extracellular matrix (ECM) components secreted by cells persists is required. Bioorthogonal chemistry approaches offer solutions to visualizing and labeling ECM constituents without interfering with other chemical or biological events. Although biorthogonal chemistry has been studied extensively for several applications, this review summarizes the recent advancements in using biorthogonal chemistry specifically for metabolic labeling and visualization of ECM proteins and glycosaminoglycans that are secreted by cells and living tissues. Challenges, limitations, and future directions surrounding biorthogonal chemistry involved in the labeling of ECM components are discussed. Finally, potential solutions for improvements to biorthogonal chemical approaches are suggested. This would provide theoretical guidance for labeling and visualization of de novo proteins and polysaccharides present in ECM that are cell-secreted for example during tissue remodeling or in vitro differentiation of stem cells.

    AlkuperäiskieliEnglanti
    Artikkeli100768
    JulkaisuMaterials Today Bio
    Vuosikerta22
    DOI - pysyväislinkit
    TilaJulkaistu - lokak. 2023
    OKM-julkaisutyyppiA2 Katsausartikkeli tieteellisessä aikakauslehdessä

    Rahoitus

    Financial assistance for this review was provided by the Swedish Strategic Research ‘StemTherapy’ (Dnr 2009–1035 ), the Swedish Research Council (Dnr 2020–04025 ), European Union's EUREKA/Eurostars-2 (nr. 2020–03601 ), and European Union's Horizon 2020 Marie Sklodowska-Curie H2020-MSCA-ITN-ETN-2020 (nr. 955335 ) and the Dutch Arthritis Foundation ( LLP12 ). Financial assistance for this review was provided by the Swedish Strategic Research ‘StemTherapy’ (Dnr 2009–1035), the Swedish Research Council (Dnr 2020–04025), European Union's EUREKA/Eurostars-2 (nr. 2020–03601), and European Union's Horizon 2020 Marie Sklodowska-Curie H2020-MSCA-ITN-ETN-2020 (nr. 955335) and the Dutch Arthritis Foundation (LLP12).

    Julkaisufoorumi-taso

    • Jufo-taso 1

    !!ASJC Scopus subject areas

    • Biotechnology
    • Bioengineering
    • Biomaterials
    • Biomedical Engineering
    • Molecular Biology
    • Cell Biology

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