Establishment and Validation of a Model for Fetal Neural Ischemia Using Necrotic Core-Free Human Spinal Cord Organoids

Author:

Shin Aeri1,Ryu Jae Ryun1,Kim Byung Gon2,Sun Woong1ORCID

Affiliation:

1. Department of Anatomy, Korea University College of Medicine , Seoul 02841 , Republic of Korea

2. Department of Brain Science, A-Jou University School of Medicine , Suwon , Republic of Korea

Abstract

Abstract Fetal spinal cord ischemia is a serious medical condition that can result in significant neurological damage and adverse outcomes for the fetus. However, the lack of an appropriate experimental model has hindered the understanding of the pathology and the development of effective treatments. In our study, we established a system for screening drugs that affect fetal spinal cord ischemia using spinal cord organoids. Importantly, we produced necrotic core-free human spinal cord organoids (nf-hSCOs) by reducing the organoid size to avoid potential complications of spontaneous necrosis in large organoids. Exposing nf-hSCOs to CoCl2 as a hypoxia mimetic and hypoglycemic conditions resulted in significant neuronal damage, as assessed by multiple assay batteries. By utilizing this model, we tested chemicals that have been reported to exhibit beneficial effects in brain organoid-based ischemia models. Surprisingly, these chemicals did not provide sufficient benefit, and we discovered that rapamycin is a mild neuroprotective reagent for both axon degeneration and neuronal survival. We propose that nf-hSCO is suitable for large-scale screening of fetal neural ischemia due to its scalability, ease of ischemic induction, implementation of quantifiable assay batteries, and the absence of spontaneous necrosis.

Funder

National University Hospital Child Cancer

National Research Foundation

Korean Ministry of Science

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,General Medicine

Reference45 articles.

1. Fetal hypoxia insults and patterns of brain injury: insights from animal models;Gunn,2009

2. Fetal stress and programming of hypoxic/ischemic-sensitive phenotype in the neonatal brain: mechanisms and possible interventions;Li,2012

3. A role for spinal cord hypoxia in neurodegeneration;Hernandez-Gerez,2019

4. Neural organoids, a versatile model for neuroscience;Lee,2022

5. Current challenges associated with the use of human induced pluripotent stem cell-derived organoids in regenerative medicine;Lee,2021

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