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© Uwe Maskos
Tranche d'hippocampe de souris colorée avec deux toxines spécifiques de sous-types de récepteur nicotinique, en rouge (grains), et en vert (corps cellulaires). L'hippocampe est la zone du cerveau qui gère la mémoire spatiale.
Publication :

Humanized Chimeric Mouse Models to Study Human Neural Development and Pathogenesis of Brain Diseases

Scientific Fields
Diseases
Organisms
Applications
Technique

Published in - 30 Sep 2022

Camille Thiberge, Maria Llach Pou, Aline Vitrac, Uwe Maskos, Isabelle Cloëz-Tayarani

Link to HAL – pasteur-03845354

Link to DOI – 10.1007/978-1-0716-2569-9_8

Translational Research Methods in Neurodevelopmental Disorders, 185, Springer US, pp.135-158, 2022, Neuromethods, 978-1-0716-2569-9. ⟨10.1007/978-1-0716-2569-9_8⟩

The development of humanized neural chimeric mouse models consists in grafting human neuronal progenitor cells (NPC) or differentiated neurons derived from induced pluripotent stem cells (iPSC) into the mouse brain at different timepoints. As the main features of cortical networks and their alterations during brain development cannot be reproduced in vitro, these in vivo models have been used to investigate the mechanisms by which reprogrammed human neurons and non-neuronal cells integrate and migrate into the mouse brain at early stages of brain development and display functional activities several months after their grafting. Here, we describe the neonatal grafting technique of human NPC which we use in our laboratory. We also present a new method based on the grafting of human NPC into the brain of mouse embryos, in utero. A third method consists in the stereotaxic grafting of human NPC into selected brain regions of adult mice. The iPSC technology combined with the use of chimeric mouse models offers numerous possibilities to study human neural development within wellcontrolled and defined temporal windows and to model neuropathological disorders.