Sialic acid biosynthesis pathway blockade disturbs neuronal network formation in human iPSC‐derived excitatory neurons

Author:

Mijdam Rachel1ORCID,Bijnagte‐Schoenmaker Chantal2ORCID,Dyke Emma2ORCID,Moons Sam J.3ORCID,Boltje Thomas J.4ORCID,Nadif Kasri Nael25ORCID,Lefeber Dirk J.12ORCID

Affiliation:

1. Department of Neurology Donders Institute for Brain, Cognition and Behavior, Radboudumc Nijmegen the Netherlands

2. Department of Human Genetics Donders Institute for Brain, Cognition and Behavior, Radboudumc Nijmegen the Netherlands

3. Synvenio B.V. Mercator 2 Nijmegen the Netherlands

4. Synthetic Organic Chemistry Institute for Molecules and Materials, Radboud University Nijmegen the Netherlands

5. Department of Cognitive Neuroscience Donders Institute for Brain, Cognition and Behavior, Radboudumc Nijmegen the Netherlands

Abstract

AbstractN‐acetylneuraminic acid (sialic acid) is present in large quantities in the brain and plays a crucial role in brain development, learning, and memory formation. How sialic acid contributes to brain development is not fully understood. The purpose of this study was to determine the effects of reduced sialylation on network formation in human iPSC‐derived neurons (iNeurons). Using targeted mass spectrometry and antibody binding, we observed an increase in free sialic acid and polysialic acid during neuronal development, which was disrupted by treatment of iNeurons with a synthetic inhibitor of sialic acid biosynthesis. Sialic acid inhibition disturbed synapse formation and network formation on microelectrode array (MEA), showing short but frequent (network) bursts and an overall lower firing rate, and higher percentage of random spikes. This study shows that sialic acid is necessary for neuronal network formation during human neuronal development and provides a physiologically relevant model to study the role of sialic acid in patient‐derived iNeurons.image

Publisher

Wiley

Subject

Cellular and Molecular Neuroscience,Biochemistry

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