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Printing three-dimensional tissue analogues with decellularized extracellular matrix bioink

Nature Communications · 2014 · Vol. 5(1) · pp. 3935–3935
Falguni PatiJinah JangDong-Heon HaSung Won KimJong‐Won RhieJin‐Hyung ShimDeok‐Ho KimDong‐Woo Cho

Abstract

The ability to print and pattern all the components that make up a tissue (cells and matrix materials) in three dimensions to generate structures similar to tissues is an exciting prospect of bioprinting. However, the majority of the matrix materials used so far for bioprinting cannot represent the complexity of natural extracellular matrix (ECM) and thus are unable to reconstitute the intrinsic cellular morphologies and functions. Here, we develop a method for the bioprinting of cell-laden constructs with novel decellularized extracellular matrix (dECM) bioink capable of providing an optimized microenvironment conducive to the growth of three-dimensional structured tissue. We show the versatility and flexibility of the developed bioprinting process using tissue-specific dECM bioinks, including adipose, cartilage and heart tissues, capable of providing crucial cues for cells engraftment, survival and long-term function. We achieve high cell viability and functionality of the printed dECM structures using our bioprinting method.

3D Printing in Biomedical ResearchPluripotent Stem Cells ResearchTissue Engineering and Regenerative MedicineDecellularizationExtracellular matrix3D bioprintingMatrix (chemical analysis)Cell biologyTissue engineeringProcess (computing)Regenerative medicineFlexibility (engineering)Function (biology)

MeSH terms

Adipose TissueAnimalsCartilageExtracellular MatrixHeartHumansInkStem CellsSwineTissue EngineeringHyaline CartilageTissue ScaffoldsMesenchymal Stem CellsBioprintingPrinting, Three-Dimensional

Funding

  • National Research Foundation
  • Ministry of Science, ICT and Future Planning
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