Literature DB >> 22692231

Mouse stem cells seeded into decellularized rat kidney scaffolds endothelialize and remodel basement membranes.

Edward A Ross1, Dale R Abrahamson, Patricia St John, William L Clapp, Matthew J Williams, Naohiro Terada, Takashi Hamazaki, Gary W Ellison, Christopher D Batich.   

Abstract

INTRODUCTION: To address transplant organ shortage, a promising strategy is to decellularize kidneys in a manner that the scaffold retains signals for seeded pluripotent precursor cells to differentiate and recapitulate native structures: matrix-to-cell signaling followed by cell-cell and cell-matrix interactions, thereby remodeling and replacing the original matrix. This would reduce scaffold antigenicity and enable xeno-allografts.
RESULTS: DAPI-labeled cells in arterial vessels and glomeruli were positive for both endothelial lineage markers, BsLB4 and VEGFR2. Rat scaffold's basement membrane demonstrated immunolabeling with anti-mouse laminin β1. Labeling intensified over time with 14 day incubations.
CONCLUSION: We provide new evidence for matrix-to-cell signaling in acellular whole organ scaffolds that induces differentiation of pluripotent precursor cells to endothelial lineage. Production of mouse basement membrane supports remodeling of host (rat)-derived scaffolds and thereby warrants further investigation as a promising approach for xenotransplantation.
METHODS: We previously showed that murine embryonic stem cells arterially seeded into acellular rat whole kidney scaffolds multiply and demonstrate morphologic, immunohistochemical and gene expression evidence for differentiation. Vascular cell endothelialization was now further tested by endothelial specific BsLB4 lectin and anti-VEGFR2 (Flk1) antibodies. Remodeling of the matrix basement membranes from rat to mouse ("murinization") was assessed by a monoclonal antibody specific for mouse laminin β1 chain.

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Year:  2012        PMID: 22692231      PMCID: PMC3429512          DOI: 10.4161/org.20209

Source DB:  PubMed          Journal:  Organogenesis        ISSN: 1547-6278            Impact factor:   2.500


  48 in total

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Review 3.  Laminins: structure and genetic regulation.

Authors:  P Tunggal; N Smyth; M Paulsson; M C Ott
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6.  Glomerular endothelial cells and podocytes jointly synthesize laminin-1 and -11 chains.

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7.  Complex extracellular matrices promote tissue-specific stem cell differentiation.

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  34 in total

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Review 5.  Amniotic fluid cells: current progress and emerging challenges in renal regeneration.

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6.  Fabricating a Kidney Cortex Extracellular Matrix-Derived Hydrogel.

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Review 7.  Induced Pluripotent Stem Cell-Derived Endothelial Cells: Overview, Current Advances, Applications, and Future Directions.

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8.  A step towards clinical application of acellular matrix: A clue from macrophage polarization.

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9.  Epithelial Cell Repopulation and Preparation of Rodent Extracellular Matrix Scaffolds for Renal Tissue Development.

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Review 10.  Tissue-engineered kidney disease models.

Authors:  Teresa M Desrochers; Erica Palma; David L Kaplan
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