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Research image of SYNGAP protein in the mouse cortex.

Gene replacement therapy normalizes some traits in SYNGAP1 model mice

The first published virus-based gene therapy for SYNGAP1 deletion yields benefits despite the gene’s long length and complexity.

By Charles Q. Choi
20 November 2025 | 5 min read
Illustration of ketamine blocking open ion channels in active NMDA receptors, quieting the cells and disrupting downstream signaling involved in depression.

Ketamine targets lateral habenula, setting off cascade of antidepressant effects

The drug’s affinity for overactive cells in the “anti-reward” region may help explain its rapid and long-lasting results.

By Olivia Gieger
4 September 2024 | 6 min read
A young boy sits alone on a bench in a playground.

Mental health issues emerge with shifts in autism traits across childhood

Anxiety and other challenges autistic children experience may stem from an increase in social-communication issues and a decrease in repetitive behaviors from ages 6 to 11.

By Charles Q. Choi
27 September 2023 | 3 min read
Research image comparing microglia with serotonin receptors to those without.

Serotonin powers pruning of developing brain circuits in mice

Mice with microglia missing receptors for the neurotransmitter serotonin since birth have too many synapses and show social difficulties in adulthood.

By Katie Moisse
28 June 2023 | 5 min read
Research image of zebrafish forebrains.

Autism-related genes converge on microglia and dopamine in zebrafish

The findings add to the growing evidence that genes with disparate functions can play similar roles in brain development.

By Peter Hess
12 May 2023 | 4 min read
Research image shows elevated expression of certain genes, shown in pink and green, along with expected gene expression, shown in blue.

Autism-linked MYT1L mutations prompt ‘identity crisis’ in budding brain cells

Both human and mouse progenitor cells with the alterations struggle to become neurons and instead express genes that are typically active only in muscle or the heart.

By Laura Dattaro
14 February 2023 | 4 min read
Mouse neurons in red and pink on black.

Mouse model reveals root of breathing issues in rare form of autism

Dysfunctional circuits and a rogue sodium channel in the brainstem may explain the disordered breathing pattern seen in children with Pitt-Hopkins syndrome, a form of autism.

By Anna Goshua
5 November 2021 | 4 min read
Two colorful mouse neurons seen side by side on black, one has a mutation.

Precocious neurons may stunt brain growth in rare form of autism

The first animal model of MYT1L syndrome suggests that fast-maturing neurons lead to the unusually small brains, social deficits and other traits seen in people with the condition.

By Peter Hess
5 October 2021 | 5 min read

Stimulant restores cell signaling, eases behavior issues in animals missing autism gene

Worms and zebrafish missing both copies of the gene CHD7 have disrupted cellular signaling, a dearth of inhibitory neurons and behavior changes — all of which are reversed by the stimulant drug ephedrine.

By Peter Hess
28 May 2021 | 4 min read
Neurons in a macaque cortex express parvalbumin in red.

Virus-based method manipulates inhibitory neurons in brains

A new viral tool can selectively control different types of neurons that dampen brain activity in rodents, monkeys and people.

By Jonathan Moens
9 September 2020 | 4 min read

Explore more from The Transmitter

A human silhouette with lines connecting the brain to various organs.

PIEZO channels are opening the study of mechanosensation in unexpected places

The force-activated ion channels underlie the senses of touch and proprioception. Now scientists are using them as a tool to explore molecular mechanisms at work in internal organs, including the heart, bladder, uterus and kidney.

By Calli McMurray
30 January 2026 | 6 min read
US Department of Health and Human Services building.

Latest iteration of U.S. federal autism committee comes under fire

The new panel “represents a radical departure from all past rosters,” says autism researcher Helen Tager-Flusberg.

By Angie Voyles Askham
29 January 2026 | 9 min read
Progenitors cells in the medial ganglionic eminence become increasingly organized during development as rows of brain imaging progress from top to bottom.

‘Tour de force’ study flags fount of interneurons in human brain

The newly discovered cell type might point to the origins of the inhibitory imbalance linked to autism and other conditions.

By Holly Barker
29 January 2026 | 4 min read

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