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Biology subjects

Oh, W. C.

Publications and source records attributed to Oh, W. C..

3 recordsLinked to original sources

Early developmental neuronal activity inhibits oligodendrocyte differentiation through AMPA receptor activation

Oligodendrocytes produce myelin, a lipid-rich membrane that wraps neuronal axons in the central nervous system to provide metabolic and trophic support and allow for saltatory conduction. Developmental myelination requires precisely timed and localized neuron-oligodendrocyte communication. In the mature brain, neuronal activity promotes oligodendrocyte precursor cell (OPC) proliferation and differentiation, but how OPCs respond to neuronal activity in early brain development, prior to the onset of myelination, is less well characterized. Here, we investigate how sensory-evoked and chemogenetically altered neuronal activity affect oligodendrocyte maturation in the olfactory system, somatosensory cortex, and corpus callosum in mice. We find that early neuronal activity inhibits oligodendrocyte differentiation and that reduced neuronal activity relieves this inhibition, thereby increasing OPC differentiation. Additionally, single-cell RNA sequencing revealed transcriptional changes in oligodendrocytes when neuronal activity was reduced, including upregulation of glutamate receptor gene expression. Finally, we identify AMPAR signaling as a critical regulator of oligodendrocyte differentiation ex vivo.

neuroscience↗

Consumption of clinically relevant cannabidiol doses during pregnancy alters postnatal behavior in offspring

Pregnant people use cannabidiol (CBD), a non-psychoactive cannabinoid of cannabis, due to its perceived safety and to treat side-effects such as nausea, insomnia, pain, and anxiety. However, CBD crosses the placenta and accumulates in the fetal brain, where it can activate or repress the function of several molecular targets that are important for brain development. While consumption of high doses of CBD during pregnancy have been shown to disrupt offspring neurodevelopment and postnatal behavior, lower, more clinically relevant doses have not been assessed. Here, we show that oral consumption of 10 mg/kg/day CBD during pregnancy increases thermal pain sensitivity in exposed male mouse offspring. Additionally, we find that the same dose impairs cognition and reduces excitability of the prefrontal cortex in exposed female mouse offspring. These data show that lower doses of CBD consumption during pregnancy can impair fetal brain development and postnatal behavior.

pharmacology and toxicology↗

Fetal cannabidiol (CBD) exposure alters thermal pain sensitivity, cognition, and prefrontal cortex excitability

Thousands of people suffer from nausea with pregnancy each year. Nausea can be alleviated with cannabidiol (CBD), a primary component of cannabis that is widely available. However, is it unknown how fetal CBD exposure affects embryonic development and postnatal outcomes. CBD binds and activates receptors that are important for fetal development and are expressed in the fetal brain, including serotonin receptors (5HT1A), voltage-gated potassium (Kv)7 receptors, and the transient potential vanilloid 1 receptor (TRPV1). Excessive activation of each of these receptors during fetal development can disrupt neurodevelopment. Here, we test the hypothesis that intrauterine CBD exposure alters offspring neurodevelopment and postnatal behavior. We show that fetal CBD exposure sensitizes male offspring to thermal pain in a TRPV1 dependent manner. We show that fetal CBD exposure decreases cognitive function in female CBD-exposed offspring. We demonstrate that fetal CBD exposure increases the minimum current required to elicit action potentials and decreases the number of action potentials in female offspring layer 2/3 prefrontal cortex (PFC) pyramidal neurons. Fetal CBD exposure reduces the amplitude of glutamate uncaging-evoked excitatory post-synaptic currents. Combined, these data show that fetal CBD exposure disrupts neurodevelopment and postnatal behavior in a sex-dependent manner. One Sentence SummaryCannabidiol (CBD) consumption during pregnancy alters offspring behavior and neuronal excitability in a sex dependent manner in mice.

animal behavior and cognition↗