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Cold Spring Harbor Laboratory

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Placental Immune Failure in Males Linked to Autism Risk in New Mouse Study
science16 days ago

Placental Immune Failure in Males Linked to Autism Risk in New Mouse Study

A new study from Cold Spring Harbor Laboratory identifies a specific placental mechanism that may explain why autism spectrum disorder (ASD) disproportionately affects males. Researchers found that maternal immune activation during a critical 24-hour window at embryonic day 12.5 in mice causes developmental abnormalities exclusively in male fetuses. This vulnerability stems from damage to spongiotrophoblasts, specialized placental cells that maintain immune tolerance between mother and fetus. The findings suggest that male embryos may express unique proteins that trigger adverse maternal immune responses, while female fetuses possess intrinsic protective mechanisms that preserve placental integrity. This research shifts the focus from the brain to the placental interface as a primary gateway for neurodevelopmental risk.

Uncovering a 125-Million-Year Evolutionary Mystery in Plant Genomes
science2 years ago

Uncovering a 125-Million-Year Evolutionary Mystery in Plant Genomes

Cold Spring Harbor Laboratory researchers have discovered that tomato and Arabidopsis thaliana plants use different regulatory systems to control the same gene, linked to genetic makeovers over 125 million years of evolution. Mutations in the CLV3 gene can dramatically increase fruit size, but the specific areas of the gene that need to be disrupted differ between the two plants, indicating divergent evolution. Understanding these genetic differences could make crop genome engineering more predictable and beneficial for farmers and plant breeders.

"Senolytic CAR T Cells: The Promising Fountain of Youth Elixir"
health-and-science2 years ago

"Senolytic CAR T Cells: The Promising Fountain of Youth Elixir"

Researchers at Cold Spring Harbor Laboratory have reprogrammed T cells to fight aging by targeting senescent cells, which are linked to age-related diseases. Using CAR T cells, the team found that a single treatment in mice led to lifelong effects, including improved metabolism and physical activity without tissue damage or toxicity. This breakthrough could potentially offer a one-time treatment for chronic conditions like obesity and diabetes, with implications for human longevity.