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Generation of Standardized and Reproducible Forebrain-type Cerebral Organoids from Human Induced Pluripotent Stem Cells
Published on: January 23, 2018
Cerebral Organoids Repair Ischemic Stroke Brain Injury
Shu-Na Wang1, Zhi Wang1, Tian-Ying Xu1
1Department of Pharmacology, Second Military Medical University / Naval Medical University, 325 Guo He Road, Shanghai, 200433, China.
Abstract:
Stroke is the second leading cause of death and main cause of disability worldwide, but with few effective therapies. Although stem cell-based therapy has been proposed as an exciting regenerative medicine strategy for brain injury, there are limitations. The developed cerebral organoids (COs) represent a promising transplantation source for stroke that remains to be answered. Here, we transplanted COs at 55 days and explored the feasibility in the rat middle cerebral artery occlusion (MCAO) model of stroke. COs transplantation at 6 h or even 24 h after MCAO significantly reduces brain infarct volume and improves neurological motor function. Transplanted COs show the potential of multilineage differentiation to mimic in vivo cortical development, support motor cortex region-specific reconstruction, form neurotransmitter-related neurons, and achieve synaptic connection with host brain via in situ differentiation and cell replacement in stroke. Cells from transplanted COs show extensive migration into different brain regions along corpus callosum. The mechanisms underlying COs transplantation therapy are also associated with enhanced neurogenesis, synaptic reconstruction, axonal regeneration and angiogenesis, and decreased neural apoptosis with more survival neurons after stroke. Moreover, COs transplantation promotes predominantly exogenous neurogenesis in the transplantation periphery of ipsilateral cortex and predominantly endogenous neurogenesis in the hippocampus and subventricular zone. Together, we demonstrate the efficacy and underlying mechanisms of COs transplantation in stroke. This preliminary but promising study provides first-hand preclinical evidence for COs transplantation as a potential and effective intervention for stroke treatment.
Insights
Cerebral organoid transplantation effectively treats stroke by reducing brain damage and improving motor function. This regenerative therapy promotes neural repair and survival, offering a promising new stroke intervention.
Area of Science:
- Neuroscience
- Regenerative Medicine
- Stem Cell Biology
Background:
- Stroke is a leading cause of death and disability with limited effective treatments.
- Stem cell therapy shows promise for brain injury but faces challenges.
- Cerebral organoids (COs) are a potential source for regenerative stroke therapy.
Purpose of the Study:
- To investigate the feasibility and efficacy of COs transplantation in a rat model of stroke.
- To explore the mechanisms underlying COs transplantation for stroke treatment.
Main Methods:
- Transplantation of 55-day-old COs into rats 6 or 24 hours after middle cerebral artery occlusion (MCAO).
- Assessment of infarct volume, neurological motor function, and histological analysis of transplanted cells.
- Evaluation of neurogenesis, synaptic reconstruction, axonal regeneration, angiogenesis, and apoptosis.
Main Results:
- COs transplantation significantly reduced infarct volume and improved motor function post-MCAO.
- Transplanted COs differentiated into various neural lineages, integrated into the host brain, and formed synaptic connections.
- Mechanisms included enhanced neurogenesis (exogenous and endogenous), axonal regeneration, angiogenesis, and reduced apoptosis.
Conclusions:
- COs transplantation is a feasible and effective preclinical strategy for stroke treatment.
- This therapy promotes significant neural repair and functional recovery through multiple mechanisms.
- COs represent a promising source for regenerative medicine in stroke intervention.

