TGViewer
NeuroInk Lab NeuroInk Lab @neuroinklab · 498 subscribers
Post #365 93
Developmental xenocortication using human-derived organoids in mice

Abstract
The inaccessibility of human brain tissue limits the study of human development and function, a challenge that human stem-cell-derived neural models are beginning to address1,2. Transplantation of neural organoids into rodent hosts enables the in vivo study of aspects of human neurodevelopment and circuit function, alongside behavioural phenotyping of the host animals. However, spatial limitations and competition with host circuits constrain the integration of neural organoids, which is critical for studying disease. Here we establish a transplantation platform using a genetic strategy to effectively deplete glutamatergic neurons from mouse neocortex and hippocampus (apallial) and neonatally engraft the cortical cavity with human stem-cell-derived cortical organoids (hCO) to generate xenocortical mice. This leads to robust graft growth with hCOs occupying most of the cortical volume and generating a diversity of human cortical cell types, including layer 5 extratelencephalic projection neurons. Human cortical neurons integrate with the mouse nervous system, and in vivo cortical graft-wide calcium imaging and electrophysiological analyses revealed patterns of organized activity resembling developing circuits. Behavioural analyses of apallial and xenocortical mice revealed broadly preserved locomotion alongside selective differences in limb coordination and altered organization of spontaneous behaviour. Lastly, this platform enabled behavioural readouts in a model of injury to developing human cortical cells. We envision that xenocortication will be useful for obtaining circuit- and behaviour-level readouts using human neurons to study neurodevelopment, model disease and develop therapeutics.

#Karl_Deisseroth
#Sergiu_Pasca
#Felicity_Gore
Nature Developmental xenocortication using human-derived organoids in mice Nature - Xenocortication with human neurons enables circuit- and behaviour-level analysis of neurodevelopment in mice.
More from @neuroinklab
  1. Sep 29, 2026این مدل ارائه شده توسط آقای Monuz در سال 2002، نمای کلی شبکه‌ تولید ساکاد را نشان می ‌دهد.…
  2. Sep 28, 2026‏مطالعات قدیمی نشان داده بودند که پس از آسیب دائمی به FEF یا SC، توانایی ایجاد ساکاد ب…
  3. Sep 28, 2026Human brain cells transplanted into mice in ‘most extensive’ integration ever Human brain…
  4. Sep 28, 2026🔬🧠 دانشگاه فردوسی مشهد کنگره ملی مهندسی پزشکی، هوش مصنوعی و علوم شناختی National Congres…
  5. Sep 24, 2026چرا وقتی بخشی از SC راست را غیرفعال می‌کنیم، چشم به سمت راست جا به ‌جا می‌شود اما همچنان م…
  6. Sep 23, 2026Competition between saccade goals in the superior colliculus produces saccade curvature Ab…
Threads Profile ViewerView any public Threads profile without an account.Open ThreadLook →Writing with AI? Make it sound human.Metric37 rewrites AI drafts so they read naturally. Free AI detector, 1,500 words free.Try Metric37 →