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Paintable Decellularized-ECM Hydrogel for Preventing Cardiac Tissue Damage

  • Jaewoo Lee
  • , Seul Gi Lee
  • , Beom seok Kim
  • , Shinhye Park
  • , M. Nivedhitha Sundaram
  • , Byung gee Kim
  • , C. Yoon Kim*
  • , Nathaniel S. Hwang*
  • *Corresponding author for this work
  • Seoul National University
  • Konkuk University

Research output: Contribution to journalJournal articlepeer-review

Abstract

The tissue-specific heart decellularized extracellular matrix (hdECM) demonstrates a variety of therapeutic advantages, including fibrosis reduction and angiogenesis. Consequently, recent research for myocardial infarction (MI) therapy has utilized hdECM with various delivery techniques, such as injection or patch implantation. In this study, a novel approach for hdECM delivery using a wet adhesive paintable hydrogel is proposed. The hdECM-containing paintable hydrogel (pdHA_t) is simply applied, with no theoretical limit to the size or shape, making it highly beneficial for scale-up. Additionally, pdHA_t exhibits robust adhesion to the epicardium, with a minimal swelling ratio and sufficient adhesion strength for MI treatment when applied to the rat MI model. Moreover, the adhesiveness of pdHA_t can be easily washed off to prevent undesired adhesion with nearby organs, such as the rib cages and lungs, which can result in stenosis. During the 28 days of in vivo analysis, the pdHA_t not only facilitates functional regeneration by reducing ventricular wall thinning but also promotes neo-vascularization in the MI region. In conclusion, the pdHA_t presents a promising strategy for MI treatment and cardiac tissue regeneration, offering the potential for improved patient outcomes and enhanced cardiac function post-MI.

Original languageEnglish
Article number2307353
JournalAdvanced Science
Volume11
Issue number21
DOIs
StatePublished - 2024.06.5

Keywords

  • Painting
  • heart-decellularized extracellular matrix
  • hydrogel
  • myocardial infarction
  • vascularization

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