Screening for pre-eclampsia at 11-13 weeks' gestation: use of pregnancy-associated plasma protein-A, placental growth

A Mazer Zumaeta1, A Wright2, A Syngelaki1

  • 1Harris Birthright Research Centre for Fetal Medicine, King's College Hospital, London, UK.

Insights

First-trimester screening for pre-eclampsia (PE) is more effective using placental growth factor (PlGF) compared to pregnancy-associated plasma protein-A (PAPP-A). Using PAPP-A achieves similar detection rates but results in a higher screen-positive rate for PE.

Area of Science:

  • Maternal-fetal medicine
  • Obstetric screening
  • Biomarker analysis

Background:

  • First-trimester screening for pre-eclampsia (PE) is crucial for early intervention with aspirin, significantly reducing preterm PE rates.
  • Previous research identified maternal factors, mean arterial pressure (MAP), uterine artery pulsatility index (UtA-PI), and placental growth factor (PlGF) as optimal for high-risk PE identification.
  • Pregnancy-associated plasma protein-A (PAPP-A) is an alternative biochemical marker, commonly used in early screening for chromosomal abnormalities.

Purpose of the Study:

  • To evaluate the additive value of PlGF and PAPP-A in first-trimester PE screening.
  • To compare the efficacy of PlGF versus PAPP-A when combined with maternal factors, MAP, and UtA-PI.
  • To define optimal risk cut-offs and screen-positive rates for achieving desired detection rates of preterm PE using either PlGF or PAPP-A.

Main Methods:

  • A non-intervention prospective screening study involving 60,875 singleton pregnancies.
  • Risk calculation for PE (< 37 weeks' gestation) using a competing-risks model incorporating maternal characteristics, MAP, UtA-PI, PlGF, and PAPP-A.
  • Comparison of screening performance (detection rate vs. screen-positive rate) using McNemar's test, analyzing subgroups by race.

Main Results:

  • Screening with PlGF (maternal factors, MAP, UtA-PI, PlGF) demonstrated superior performance over PAPP-A (maternal factors, MAP, UtA-PI, PAPP-A), achieving a 7.1% higher detection rate for preterm PE at a 10% screen-positive rate.
  • The addition of serum PAPP-A did not enhance the predictive accuracy of the screening model that included PlGF.
  • Optimal risk cut-offs and screen-positive rates varied by race and the biomarker used (PlGF vs. PAPP-A), impacting the management strategy for achieving target detection rates.

Conclusions:

  • PlGF is the preferred biochemical marker for first-trimester PE screening over PAPP-A.
  • While PAPP-A can achieve similar detection rates for PE, it necessitates a higher screen-positive rate compared to PlGF.
  • Screening protocols should consider the specific biomarker and population demographics to optimize PE detection and management.
Abstract

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