Wednesday, September 02, 2026

Cell-Free DNA May Predict Pregnancy Complications

Key Summary:

  • First-trimester cfDNA patterns could reveal pregnancy risks before clinical warning signs emerge.
  • Detection of adverse outcomes ranged from 38% to 90% across immune-mediated disease groups.
  • Fragmentomics added predictive information beyond established clinical risk factors and fetal fraction.

CELL-FREE DNA patterns detectable during the first trimester could help identify patients at increased risk of pregnancy complications before clinical warning signs emerge, according to new research. 

The study suggests that information already contained within prenatal blood samples could provide a new way to stratify high-risk pregnancies and potentially allow clinicians to intensify monitoring and care earlier. 

DNA Fragmentation Reveals Pregnancy Risk 

Researchers in Belgium analysed 1,910 first-trimester blood samples from pregnant individuals, including low-risk pregnancies and those considered at higher risk of adverse pregnancy outcomes because of twin pregnancy, pre-existing immune-mediated disease, or cytomegalovirus infection. 

Rather than focusing only on the genetic sequence of cell-free DNA (cfDNA), the researchers examined its fragmentome: characteristics of how DNA molecules circulating in the blood have been fragmented.  

Their analysis incorporated multiple features, including DNA fragment length profiles, frequencies of sequences found at fragment ends, and estimates of the cell types contributing cfDNA. 

Using these features, the team developed models capable of distinguishing the high-risk pregnancy groups from low-risk controls, with the exception of diabetes. 

Hidden Risk in Immune-Mediated Disease 

One of the most striking findings emerged among patients with immune-mediated diseases. The researchers identified a distinct cfDNA fragmentomic profile associated with adverse pregnancy outcomes, even among patients whose disease was clinically quiescent and serologically inactive during early pregnancy. 

At a fixed 10% false-positive rate, fragmentomic analysis correctly identified 54% of patients with systemic immune-mediated disease who subsequently experienced an adverse pregnancy outcome. Detection reached 38% for thyroid-related immune disease, 73% for Crohn’s disease, and 90% for psoriasis. 

Importantly, the researchers validated their findings in an independent cohort of pregnant patients with immune-mediated diseases from an external centre, strengthening evidence that the observed signal was not restricted to the original study population. 

Potential for Earlier Pregnancy Triage 

The fragmentomic information also provided predictive value independent of, and additional to, established clinical risk factors and fetal fraction measurements, indicating that it may capture biological information that conventional assessments miss. 

Cell-free DNA testing is already widely used during pregnancy for non-invasive prenatal screening. These findings raise the possibility that the same type of blood sample could eventually provide information not only about fetal chromosomal abnormalities, but also about the wider biological state of the pregnancy and risk of later complications. 

Further prospective research will be needed to establish how fragmentomic testing performs across larger and more diverse populations and whether using these predictions to guide clinical management improves maternal and fetal outcomes.  

However, the researchers suggest that cfDNA fragmentomics could ultimately provide a new tool for early triage of high-risk pregnancies, allowing enhanced surveillance and care to begin before complications become clinically apparent. 

 

 

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Sunday, March 03, 2019

New Blood Test May Help Predict Pre-term Birth

Researchers are working on a blood test that could be able to detect risk of spontaneous pre-term delivery.
According to a study,  five micro particle proteins found in first-trimester blood samples may give clues about the risk of spontaneous pre-term birth.


"Our goal is to develop prognostic markers for patients to help make predictions and offer highly personalised care to woman from early stages of pregnancy," said co-author.
 
According to researchers, nearly 10 per cent births are taking place before 37-week gestation against the normal 40 weeks. Pre-term birth can result in several conditions, including pre-term labour, early rupture of the placental membrane or preeclampsia.

Mothers with history of pre-term deliveries face higher risks. But predicting spontaneous pre-term birth is challenging, particularly in the case of first-time mothers, the team said.

For the study, researchers studied blood samples, collected toward the end of the first trimester of pregnancy, from three established bio-banks.

The team compared samples from 87 women who delivered at or before 35 weeks with samples from 174 women who delivered at term and were of the same age and at the same week of pregnancy at the time giving blood.

They analysed multiple circulating micro particles associated proteins and found that a subset of these proteins could help predict risks, both for the first-time mothers as well as those who had previously given birth. 


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Sunday, March 19, 2017

Maternal Vitamin D levels may prevent autism in kids

Intake of Vitamin D supplements during the first trimester of pregnancy is can prevent the development of autism traits in children.

 Intake of Vitamin D supplements during the first trimester of pregnancy is likely to prevent the development of autism traits in children, researchers found in a study on mice. Autism — or autism spectrum disorder — describes lifelong developmental disabilities including difficulty or inability to communicate with others and interact socially. The discovery provides further evidence of the crucial role Vitamin D plays in brain development, said lead researcher Darryl Eyles, Professor at University of Queensland. “We found that pregnant females treated with active vitamin D in the equivalent of the first trimester of pregnancy produced offspring that did not develop these deficits,” Eyles added. Further, recent human studies also showed a link between pregnant women with low Vitamin D levels — also crucial for maintaining healthy bones — and the increased likelihood of having a child with autistic traits, the researchers said.

For the study, appearing in journal the Molecular Autism, the team used the most widely accepted developmental model of autism in which affected mice behave abnormally and show deficits in social interaction, basic learning and stereotyped behaviours. The researchers also revealed that the active hormonal form of Vitamin D cannot be given to pregnant women because it may affect the skeleton of the developing foetus. New studies are needed to determine how much cholecalciferol — the supplement form that is safe for pregnant women — is needed to achieve the same levels of active hormonal Vitamin D in the bloodstream, the researchers said.  Sun exposure is the major source of Vitamin D — which skin cells manufacture in response to ultraviolet rays — but it is also found in some foods such as in fatty fish like salmon and tuna, diary products, and cereals. 

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