Hemocompatibility improvement of perfusion-decellularized clinical-scale liver scaffold through heparin immobilization.
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ABSTRACT: Whole-liver perfusion-decellularization is an attractive scaffold-preparation technique for producing clinical transplantable liver tissue. However, the scaffold's poor hemocompatibility poses a major obstacle. This study was intended to improve the hemocompatibility of perfusion-decellularized porcine liver scaffold via immobilization of heparin. Heparin was immobilized on decellularized liver scaffolds (DLSs) by electrostatic binding using a layer-by-layer self-assembly technique (/h-LBL scaffold), covalent binding via multi-point attachment (/h-MPA scaffold), or end-point attachment (/h-EPA scaffold). The effect of heparinization on anticoagulant ability and cytocompatibility were investigated. The result of heparin content and release tests revealed EPA technique performed higher effic
SUBMITTER: Bao J
PROVIDER: S-EPMC5377232 | biostudies-literature | 2015 Jun
REPOSITORIES: biostudies-literature
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