Neural Transplantation

Neural transplantation is a biomedical approach that places neural cells, tissue, or engineered neural grafts into the nervous system to replace damaged components or restore function. After implantation, transplanted cells must survive, extend processes, form synaptic connections, and interact with host neurons and glial cells, while the surrounding tissue influences integration and immune responses. In biology and regenerative medicine, researchers use neural transplantation to study neural development, circuit repair, and neurological disease, including models of Parkinson’s disease and spinal cord injury. The technique also supports investigation of cell-based therapies, although graft survival, functional connectivity, and safety remain important challenges.

Neural Transplantation - Related Videos

Research

JoVE Journal - Neuroscience

Analysis of Neural Crest Migration and Differentiation by Cross-species Transplantation

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Cited by 10 •

2012

An approach for analyzing migration and eventual fate of avian neural crest cells in quail-chick chimeric embryos is described. This method is a simple and straightforward technique for tracing neural crest cells during migration and differentiation that are otherwise difficult to distinguish within an unmanipulated chick embryo.

Transplantation of Human Neural Progenitor Cells in the Mouse Brain

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2025

Source: Weber, R. Z., et al. Intracerebral Transplantation and In Vivo Bioluminescence Tracking of Human Neural Progenitor Cells in the Mouse Brain. J. Vis. Exp. (2022)This video demonstrates the stereotaxic transplantation of genetically modified human neural progenitor cells (NPCs) into the mouse brain. Researchers inject NPCs expressing luciferase and fluorescent proteins, enabling in vivo bioluminescence imaging and post-mortem fluorescence microscopy to study cell survival, migration, and...

Stereotaxic Transplantation of Neural Cell Suspension into a Mouse with Traumatic Brain Injury

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2025

Source: Furmanski, O., et al. Controlled Cortical Impact Model of Mouse Brain Injury with Therapeutic Transplantation of Human Induced Pluripotent Stem Cell-Derived Neural Cells. J. Vis. Exp. (2019)In this video, human-induced pluripotent stem cell-derived neural cells are stereotaxically injected into the gray matter-white matter border of the deep cortex in a mouse model of traumatic brain injury. The transplanted cells integrate into the tissue, promoting functional recovery and circuit...

Injection of Fluorescent Neural Progenitor Cells into Human Cerebral Organoids for Transplantation Modeling

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2025

Source: Ibanez-Rios, M.I., et al., A Human Cerebral Organoid Model of Neural Cell Transplantation. J. Vis. Exp. (2023)This video demonstrates the injection of fluorescently labeled neural progenitor cells (NPCs) into human cerebral organoids using a cell-matrix mixture. The method is reproducible and animal-free, enabling transplantation with minimal organoid disruption. It offers a valuable platform for modeling neural transplants and central nervous system (CNS) diseases.

Education

JoVE Science Education - Advanced Biology

Transplantation Studies

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2023

Many developmental biologists are interested in the molecular signals and cellular interactions that induce a group of cells to develop into a particular tissue. To investigate this, scientists can use a classic technique known as transplantation, which involves tissue from a donor embryo being excised and grafted into a host embryo. By observing how transplanted tissues develop in host environments, scientists have started to dissect the molecular pathways underlying development. In this...

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