Extracellular matrix scaffold and hydrogel derived from decellularized and delipidized human pancreas

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Sara Dutton Sackett
Daniel M. Tremmel
Fengfei Ma
Austin K. Feeney
Rachel M. Maguire
Matthew E. Brown
Ying Zhou
Xiang Li
Cori O’Brien
Lingjun Li
William J. Burlingham
Jon S. Odorico
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[1] University of Wisconsin-Madison School of Medicine and Public Health,Division of Transplantation, Department of Surgery
[2] University of Wisconsin,School of Pharmacy
[3] University of Wisconsin,Department of Chemistry
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Extracellular matrix (ECM) plays an important developmental role by regulating cell behaviour through structural and biochemical stimulation. Tissue-specific ECM, attained through decellularization, has been proposed in several strategies for tissue and organ replacement. Decellularization of animal pancreata has been reported, but the same methods applied to human pancreas are less effective due to higher lipid content. Moreover, ECM-derived hydrogels can be obtained from many decellularized tissues, but methods have not been reported to obtain human pancreas-derived hydrogel. Using novel decellularization methods with human pancreas we produced an acellular, 3D biological scaffold (hP-ECM) and hydrogel (hP-HG) amenable to tissue culture, transplantation and proteomic applications. The inclusion of a homogenization step in the decellularization protocol significantly improved lipid removal and gelation capability of the resulting ECM, which was capable of gelation at 37 °C in vitro and in vivo, and is cytocompatible with a variety of cell types and islet-like tissues in vitro. Overall, this study demonstrates the characterisation of a novel protocol for the decellularization and delipidization of human pancreatic tissue for the production of acellular ECM and ECM hydrogel suitable for cell culture and transplantation applications. We also report a list of 120 proteins present within the human pancreatic matrisome.
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