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Cortico-motor assembloids: a human 3D multi-cellular platform to study spinal cord development and disease

EVENT: 
Weekly Seminar | Not Open to the Public
Who Should Attend: 
Researchers
Event Flyer: 
PDF icon andersen_11-11-25.pdf

Speakers

Assistant Professor
Department of Human Genetics

Abstract

Research in the Andersen lab leverages the use of region-specific organoids and assembloids as windows into unique aspects of human biology.

Specifically, we are interested in understanding cell-cell interactions underlying the development and degeneration of motor neurons in the spinal cord.

Publications

Lisa Mapelli, Danila Di Domenico, Giacomo Sciacca, Francesco Mainardi, Alessandra Ottaviani, Anita Monteverdi, Mariateresa Tedesco, Chiara Rosa Battaglia, Simona Tritto, Mauro Gandolfo, Kilian Imfeld, Stefanie Kiderlen, Lukas Krainer, Chiara Cervetto, Manuela Marcoli, Anson Sing, Jimena Andersen, Fikri Birey, Steven A. Sloan, Alessandro Maccione, Egidio D'Angelo
Enhanced electrophysiological recordings in acute brain slices, spheroids, and organoids using 3D high-density multielectrode arrays
PLOS ONE, 20(9):e0328903, 2025.
Ji-Il Kim, Yuki Miura, Min-Yin Li, Omer Revah, Sridhar Selvaraj, Fikri Birey, Xiangling Meng, Mayuri Vijay Thete, Sergey D. Pavlov, Jimena Andersen, Anca M. Pașca, Matthew H. Porteus, John R. Huguenard, Sergiu P. Pașca
Human assembloids reveal the consequences of CACNA1G gene variants in the thalamocortical pathway.
Neuron 112, 4048-4059, 2024

When

Tuesday, November 11, 2025 - 12:30pm

Where

Conference Room: 
Billings Building – Rosedale

More Information

Darlene White