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Regeneration and experimental orthotopic transplantation of a bioengineered kidney

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TLDR
To regenerate functional tissue, rat kidney scaffolds are seeded with epithelial and endothelial cells and perfused these cell-seeded constructs in a whole-organ bioreactor, resulting in grafts that produced rudimentary urine in vitro when perfused through their intrinsic vascular bed.
Abstract
Approximately 100,000 individuals in the United States currently await kidney transplantation, and 400,000 individuals live with end-stage kidney disease requiring hemodialysis. The creation of a transplantable graft to permanently replace kidney function would address donor organ shortage and the morbidity associated with immunosuppression. Such a bioengineered graft must have the kidney's architecture and function and permit perfusion, filtration, secretion, absorption and drainage of urine. We decellularized rat, porcine and human kidneys by detergent perfusion, yielding acellular scaffolds with vascular, cortical and medullary architecture, a collecting system and ureters. To regenerate functional tissue, we seeded rat kidney scaffolds with epithelial and endothelial cells and perfused these cell-seeded constructs in a whole-organ bioreactor. The resulting grafts produced rudimentary urine in vitro when perfused through their intrinsic vascular bed. When transplanted in an orthotopic position in rat, the grafts were perfused by the recipient's circulation and produced urine through the ureteral conduit in vivo.

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Biomechanics of Additively Manufactured Metallic Scaffolds-A Review

TL;DR: In this paper, a review of the biomechanics of additively manufactured (AM) metallic scaffolds, in particular titanium alloy Ti6Al4V scaffolds is presented.
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Decellularization of porcine kidney with submicellar concentrations of SDS results in the retention of ECM proteins required for the adhesion and maintenance of human adult renal epithelial cells.

TL;DR: It is demonstrated that using submicellar concentrations of SDS results in a greater retention of structural proteins, GAGs, growth factors, and cytokines, indicating that mature cells are unable to migrate to specific locations on ECM scaffolds.

Tissue and Whole Organ Decellularization: An Evaluation of Cytocompatibility and Mechanics

TL;DR: Results show that Triton™ X-100 adequately decellularized bladder tissue but not myocardium during whole organ perfusion and that CHAPS and SDS resulted in a loss of ECM constituents such as GAGs and denatured the collagen fiber network, unaffected by detergent choice.
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Decellularized gastric matrix as a mesh for gastric perforation repair.

TL;DR: PDGM is a nontoxic biocompatible biological mesh that may be useful for repairing relatively large gastric defects that was used to repair a rat gastric perforation model and had good histocompatibility.
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Extracellular Matrix by Design: Native Biomaterial Fabrication and Functionalization to Boost Tissue Regeneration

TL;DR: The extracellular matrix (ECM) is a "nest" established by cells in their surroundings, which is a microenvironment that supports cellular function and survival, as well as their collaboration with one another.
References
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Journal ArticleDOI

Perfusion-decellularized matrix: using nature's platform to engineer a bioartificial heart

TL;DR: Eight constructs decellularized hearts by coronary perfusion with detergents, preserved the underlying extracellular matrix, and produced an acellular, perfusable vascular architecture, competent a cellular valves and intact chamber geometry that could generate pump function in a modified working heart preparation.
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Tissue-engineered autologous bladders for patients needing cystoplasty

TL;DR: Engineered bladder tissues, created with autologous cells seeded on collagen-polyglycolic acid scaffolds, and wrapped in omentum after implantation, can be used in patients who need cystoplasty.
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Regeneration and orthotopic transplantation of a bioartificial lung

TL;DR: Creation of a bioartificial lung requires engineering of viable lung architecture enabling ventilation, perfusion and gas exchange, and regenerated lungs into orthotopic position showed in vivo function.
Journal ArticleDOI

HLA-Mismatched Renal Transplantation without Maintenance Immunosuppression

TL;DR: Five patients with end-stage renal disease received combined bone marrow and kidney transplants from HLA single-haplotype mismatched living related donors, with the use of a nonmyeloablative preparative regimen, and it was possible to discontinue all immunosuppressive therapy 9 to 14 months after the transplantation.
Journal ArticleDOI

Organ engineering based on decellularized matrix scaffolds

TL;DR: A review summarizes achievements to date and discusses the role of native ECM scaffolds in organ regeneration, which provides a promising alternative to synthetic scaffolds and a foundation for regenerative efforts.
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