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Updated: Jan 24, 2026

Derivation of a Human Brain Organoid with Microglia Development
Published on: January 17, 2025
Genetically induced brain inflammation by Cnp deletion transiently benefits from microglia depletion
Laura Fernandez Garcia-Agudo1, Hana Janova1,2, Lea E Sendler1
1Clinical Neuroscience, Max Planck Institute of Experimental Medicine, Göttingen, Germany.
Abstract:
Reduced expression of 2'-3'-cyclic nucleotide 3'-phosphodiesterase (Cnp) in humans and mice causes white matter inflammation and catatonic signs. These consequences are experimentally alleviated by microglia ablation via colony-stimulating factor 1 receptor (CSF1R) inhibition using PLX5622. Here we address for the first time preclinical topics crucial for translation, most importantly 1) the comparison of 2 long-term PLX5622 applications (prevention and treatment) vs. 1 treatment alone, 2) the correlation of catatonic signs and executive dysfunction, 3) the phenotype of leftover microglia evading depletion, and 4) the role of intercellular interactions for efficient CSF1R inhibition. Based on our Cnp mouse model and in vitro time-lapse imaging, we report the unexpected discovery that microglia surviving under PLX5622 display a highly inflammatory phenotype including aggressive premortal phagocytosis of oligodendrocyte precursor cells. Interestingly, ablating microglia in vitro requires mixed glial cultures, whereas cultured pure microglia withstand PLX5622 application. Importantly, 2 extended rounds of CSF1R inhibition are not superior to 1 treatment regarding any readout investigated (magnetic resonance imaging and magnetic resonance spectroscopy, behavior, immunohistochemistry). Catatonia-related executive dysfunction and brain atrophy of Cnp mice fail to improve under PLX5622. To conclude, even though microglia depletion is temporarily beneficial and worth pursuing, complementary treatment strategies are needed for full and lasting recovery.-Fernandez Garcia-Agudo, L., Janova, H., Sendler, L. E., Arinrad, S., Steixner, A. A., Hassouna, I., Balmuth, E., Ronnenberg, A., Schopf, N., van der Flier, F. J., Begemann, M., Martens, H., Weber, M. S., Boretius, S., Nave, K.-A., Ehrenreich, H. Genetically induced brain inflammation by Cnp deletion transiently benefits from microglia depletion.
Insights
Microglia depletion offers temporary relief for Cnp-deficient mice with white matter inflammation but doesn't fully restore cognitive function. Further treatments are necessary for lasting recovery.
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Reduced 2'-3'-cyclic nucleotide 3'-phosphodiesterase (Cnp) expression causes white matter inflammation and catatonia.
- Microglia ablation via colony-stimulating factor 1 receptor (CSF1R) inhibition with PLX5622 alleviates these symptoms.
- Preclinical translation requires understanding long-term effects, treatment efficacy, and microglia behavior.
Purpose of the Study:
- To compare long-term PLX5622 treatment strategies (prevention vs. treatment) for Cnp-deficient mice.
- To investigate the correlation between catatonia, executive dysfunction, and brain atrophy.
- To characterize surviving microglia and the role of intercellular interactions in CSF1R inhibition.
Main Methods:
- Utilized a Cnp mouse model and in vitro time-lapse imaging.
- Administered PLX5622 for extended periods (prevention and treatment).
- Assessed outcomes using MRI, MRS, behavioral tests, and immunohistochemistry.
Main Results:
- Surviving microglia under PLX5622 exhibited a highly inflammatory phenotype, including phagocytosis of oligodendrocyte precursor cells.
- Two rounds of CSF1R inhibition were not superior to one treatment across all measured readouts.
- Catatonia-related executive dysfunction and brain atrophy in Cnp mice did not improve with PLX5622 treatment.
Conclusions:
- Microglia depletion provides transient benefits but is insufficient for complete recovery in Cnp-deficient mice.
- Inflammatory microglia surviving treatment pose a challenge.
- Complementary therapeutic strategies are essential for achieving full and lasting recovery.
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