4.7 Article

Fibrin Hydrogels for Endothelialized Liver Tissue Engineering with a Predesigned Vascular Network

Journal

POLYMERS
Volume 10, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/polym10101048

Keywords

fibrin hydrogel; artificial livers; rotational combined mold; branched vascular network; adipose-derived stem cells (ADSCs)

Funding

  1. the National Natural Science Foundation of China (NSFC) [81571832 & 81271665] Funding Source: Medline

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The design and manufacture of a branched vascular network is essential for bioartificial organ implantation, which provides nutrients and removes metabolites for multi-cellular tissues. In the present study, we present a technology to manufacture endothelialized liver tissues using a fibrin hydrogel and a rotational combined mold. Both hepatocytes and adipose-derived stem cells (ADSCs) encapsulated in a fibrin hydrogel were assembled into a spindle construct with a predesigned multi-branched vascular network. An external overcoat of poly(DL-lactic-co-glycolic acid) was used to increase the mechanical properties of the construct as well as to act as an impervious and isolating membrane around the construct. Cell survivability reached 100% in the construct after 6 days of in vitro culture. ADSCs in the spindle construct were engaged into endothelial cells/tissues using a cocktail growth factor engagement approach. Mechanical property comparison and permeability evaluation tests all indicated that this was a viable complex organ containing more than two heterogeneous tissue types and a functional vascular network. It is, therefore, the first time an implantable bioartificial liver, i.e., endothelialized liver tissue, along with a hierarchical vascular network, has been created.

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