High-Performance Acellular Tissue Scaffold Combined with Hydrogel Polymers for Regenerative Medicine.

ACS Biomater Sci Eng

Department of Anatomy and Division of Brain Korea 21 Plus Program for Biomedical Science, Korea University College of Medicine, 73, Inchon-ro, Seongbuk-gu, Seoul 02841, Republic of Korea.

Published: July 2019

AI Article Synopsis

  • Decellularization offers ECM scaffolds for tissue regeneration but often weakens the structure, limiting its use in soft organs.
  • The CASPER technique enhances decellularization by using hydrogels to protect ECM integrity, preserving its complex structures and functions.
  • CASPERized tissues can be recellularized and successfully implanted without causing inflammation, making them suitable for studying cell-ECM interactions and potential organ transplantation.

Article Abstract

Decellularization of tissues provides extracellular matrix (ECM) scaffolds for regeneration therapy and an experimental model to understand ECM and cellular interactions. However, decellularization often causes microstructure disintegration and reduction of physical strength, which greatly limits the use of this technique in soft organs or in applications that require maintenance of physical strength. Here, we present a new tissue decellularization procedure, namely CASPER (linically and Experimentally pplicable Acellular Tissue caffold roduction for Tissue ngineering and egenerative Medicine), which includes infusion and hydrogel polymerization steps prior to robust chemical decellularization treatments. Polymerized hydrogels serve to prevent excessive damage to the ECM while maintaining the sophisticated structures and biological activities of ECM components in various organs, including soft tissues such as brains and embryos. CASPERized tissues were successfully recellularized to stimulate a tissue-regeneration-like process after implantation without signs of pathological inflammation or fibrosis in vivo, suggesting that CASPERized tissues can be used for monitoring cell-ECM interactions and for surrogate organ transplantation.

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Source
http://dx.doi.org/10.1021/acsbiomaterials.9b00219DOI Listing

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