Illustration of a pregnant woman with DNA and genetic research elements representing a study on hyperemesis gravidarum.
Illustration of a pregnant woman with DNA and genetic research elements representing a study on hyperemesis gravidarum.
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Genetic study links six new risk loci to hyperemesis gravidarum, expanding understanding of severe pregnancy nausea

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Researchers analyzing genetic data from more than 10,000 people with hyperemesis gravidarum have identified six additional genomic regions associated with the condition, confirming several previously known links and pointing to biological pathways involved in appetite, insulin signaling and brain function.

A large multi-ancestry genetic study has identified additional genetic risk loci for hyperemesis gravidarum (HG), the severe form of nausea and vomiting in pregnancy that can lead to dehydration and hospitalization.

In the study, researchers performed a genome-wide association analysis involving 10,974 HG cases and 461,461 controls drawn from multiple ancestry groups. The research was published in Nature Genetics.

The analysis found ten genome-wide significant associations in total. Four risk genes had been implicated previously—GDF15, IGFBP7, PGR, and GFRAL—and the study reported six additional loci: SLITRK1, SYN3, IGSF11, FSHB, TCF7L2, and CDH9. Several of these signals point to pathways related to appetite regulation and metabolism (including insulin signaling) as well as brain-related processes.

The study also reinforced the central role of GDF15, a pregnancy-associated hormone that rises during gestation and has been tied in prior research to nausea and vomiting risk.

Separately, a clinical trial registered on ClinicalTrials.gov describes plans to evaluate whether metformin extended-release, taken before pregnancy, can reduce the risk and severity of HG in people who previously experienced the condition and are trying to conceive. The trial rationale is based on evidence that metformin can increase circulating GDF15, potentially reducing sensitivity to the hormone’s sharp rise during pregnancy.

Makala yanayohusiana

Doctor reviewing PAM gene DNA model next to diabetes patient using Ozempic, showing genetic resistance to the drug
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Study links PAM gene variants to weaker blood-sugar response to GLP-1 drugs such as Ozempic

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Researchers say genetic variants in the PAM gene may help explain why some people with Type 2 diabetes get less blood-sugar benefit from GLP-1 receptor agonist drugs such as Ozempic, a phenomenon they describe as “GLP-1 resistance.”

A major analysis of data from more than a million women has identified hundreds of genes tied to endometriosis. The research also connects the condition to inflammation, cholesterol regulation and gut bacteria changes.

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Researchers have identified a rare genetic mutation that may help people from long-lived families stay healthier longer by reducing harmful inflammation. The findings were presented at the European Society of Human Genetics conference in Gothenburg.

A single mRNA injection can halve the rate of chromosome errors in human eggs from older women, according to new research presented at a London conference. The treatment targets a protein deficiency that contributes to aneuploidy, a common cause of IVF failure and miscarriage. Researchers say the approach shows promise for improving fertility outcomes.

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A year-long observational study in Japan suggests that people with type 2 diabetes who tend to overeat in response to tempting food cues such as sight and smell may see greater weight loss—and possibly better blood-sugar improvement—after starting GLP-1 receptor agonists, while those with primarily emotional eating patterns show less consistent links to long-term outcomes.

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