A simple and effective approach for detecting maternal cell contamination in molecular prenatal diagnosis

T Antoniadi1, C Yapijakis, P Kaminopetros

  • 1Laboratory of Molecular Biology, Department of Genetics and Molecular Biology, Mitera Maternity and Surgical Center, Athens, Greece. thantoniadi@yahoo.com

Prenatal Diagnosis
|May 10, 2002
PubMed

Insights

Maternal cell contamination (MCC) can cause prenatal misdiagnosis. This study presents a simple, low-cost method using polymorphic loci to detect MCC in prenatal samples, ensuring accurate genetic testing for monogenic disorders.

Area of Science:

  • Genetics
  • Prenatal Diagnostics
  • Molecular Biology

Background:

  • Maternal cell contamination (MCC) in fetal samples poses a significant risk for inaccurate prenatal diagnosis of monogenic disorders.
  • Accurate genetic testing is crucial for timely intervention and management of inherited conditions.

Purpose of the Study:

  • To develop and validate a simple, low-cost method for detecting maternal cell contamination (MCC) in prenatal diagnostic samples.
  • To ensure the reliability of genetic testing for eight monogenic disorders across different inheritance patterns.

Main Methods:

  • Utilized polymorphic loci (3'-HVR/APO B, D1S80, THO1, vWf) for MCC detection in prenatal samples undergoing diagnosis for various monogenic disorders.
  • Applied MCC testing to cases with potential maternal mutation presence, dominant inheritance, and multiple gestations.
  • Analyzed DNA from chorionic villi samples (CVS) and amniotic fluid (AF).

Main Results:

  • Out of 135 prenatal diagnoses, 44 (32.6%) required MCC testing.
  • MCC was identified in four cases using CVS and one case using AF.
  • A single polymorphic locus test was sufficient for MCC detection in nearly 90% of cases.

Conclusions:

  • The developed method effectively detects maternal cell contamination in prenatal samples.
  • Accurate selection of polymorphic loci and parental screening are crucial for reliable MCC assessment.
  • This approach enhances the accuracy of prenatal diagnosis for monogenic disorders.

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