Biomimetic Disc Implantation

Biomimetic disc implantation is a biological and biomedical approach to replacing damaged intervertebral discs with implants designed to reproduce the structure and mechanical behavior of native spinal tissue. These implants typically mimic the disc’s organized annulus fibrosus and compressible nucleus pulposus, enabling controlled load distribution, shock absorption, and spinal motion while interfacing with adjacent vertebral endplates. In biology and regenerative research, biomimetic disc implantation supports the study of tissue mechanics, implant integration, and cellular responses to engineered environments. Its goal is to relieve pain, preserve natural movement, and guide the development of longer-lasting treatments for disc degeneration.

Biomimetic Disc Implantation - Related Videos

Research

JoVE Journal - Biology
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Surgical Technique for the Implantation of a Biomimetic Artificial Intervertebral Disc in a Goat Animal Model

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2025

This study presents a novel surgical technique for implanting a biomimetic artificial intervertebral disc (BioAID). The method ensures precise placement and stability, aiming to restore cervical spine function using a goat model. This technique shows promise for clinical application in both human and canine patients suffering from cervical spine myelopathy.

Biomimetic Materials to Characterize Bacteria-host Interactions

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Cited by 8 •

2015

Bacterial attachment to host cells is a key step during host colonization and infection. This protocol describes the generation of polymer-coupled recombinant adhesins as biomimetic materials which allow analysis of the contribution of individual adhesins to these processes, independent of other bacterial factors.

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JoVE Journal - Biology
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Generation, Purification, and Characterization of Cell-invasive DISC1 Protein Species

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Cited by 13 •

2012

The generation, purification and cell invasion of intracellular, cytoplasmic full length DISC1 protein aggresomes from cell cultures and of a labeled, multimeric recombinant DISC1 protein fragment in E. coli are described. Cell invasiveness is shown for recipient cells in cell culture and for neurons in vivo after stereotactical brain inoculation.

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JoVE Journal - Medicine
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Combining 3D-Printing and Electrospinning to Manufacture Biomimetic Heart Valve Leaflets

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Cited by 6 •

2022

The presented method offers an innovative way for engineering biomimetic fiber structures in three-dimensional (3D) scaffolds (e.g., heart valve leaflets). 3D-printed, conductive geometries were used to determine shape and dimensions. Fiber orientation and characteristics were individually adjustable for each layer. Multiple samples could be manufactured in one setup.

Microbead Implantation in the Zebrafish Embryo

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Cited by 8 •

2015

The zebrafish is an excellent model system for genetic and developmental studies. Bead implantation is a valuable tissue manipulation technique that can be used to interrogate developmental mechanisms by introducing alterations in local cellular environments. This protocol describes how to perform microbead implantation in the zebrafish embryo.

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