Decellularized Nerve Grafts

Decellularized nerve grafts are biological scaffolds made by removing cells from donor peripheral nerves while preserving the extracellular matrix and native three-dimensional pathways that can support nerve repair. Chemical, enzymatic, or physical treatments disrupt and wash out cellular membranes, nuclei, and other immunogenic components, leaving structural proteins and aligned conduits that guide regenerating axons. In bioengineering, these grafts can bridge nerve gaps or be combined with Schwann cells, stem cells, or biomaterials to improve regeneration. Their tissue-derived architecture offers a clinically relevant alternative to synthetic conduits, although processing must balance cell removal with preservation of mechanical and guidance properties.

Decellularized Nerve Grafts - Related Videos

Research

JoVE Journal - Bioengineering

Decellularization and Recellularization of Whole Livers

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Cited by 39 •

2011

Perfusion decellularization is a novel technique to produce whole liver scaffolds that retains the organ's extracellular matrix composition and microarchitecture. Herein, the method of preparing whole organ scaffolds using perfusion decellularization and subsequent repopulation with hepatocytes is described. Functional and transplantable liver grafts can be generated using this technique.

Combining Peripheral Nerve Grafting and Matrix Modulation to Repair the Injured Rat Spinal Cord

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Cited by 21 •

2009

Traumatic injury to the spinal cord disrupts communication with the brain. To restore lost connectivity we utilize a peripheral nerve graft to provide a substratum for regenerating fibers in combination with neurotrophic factors and matrix-modulating enzymes to remove inhibitory molecules to promote long distance growth.

Low-Dose Gamma Radiation Sterilization for Decellularized Tracheal Grafts

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Cited by 1 •

2023

Obtaining sterilization is essential for tracheal tissue transplant. Herein, we present a sterilization protocol using low-dose gamma irradiation that is fully tolerated by organs.

Generation and Grafting of Tissue-engineered Vessels in a Mouse Model

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Cited by 13 •

2015

Here, we present a protocol to generate tissue engineered vessel grafts that are functional for grafting into mice by double seeding partially induced pluripotent stem cell (PiPSC) - derived smooth muscle cells and PiPSC - derived endothelial cells on a decellularized vessel scaffold bioreactor.

Cardiopulmonary Complex Decellularization: A Technique for Decellularizing Heart and Lungs from Murine Model

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2025

This video demonstrates a method of producing decellularized extracellular matrix or ECM scaffolds by applying antegrade perfusion of detergents through the vasculature. The structural ECM scaffolds can then be used to analyze ECM remodeling associated with cardiopulmonary disease.

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