Scientific article
OA Policy
English

Enhancing fetal outcomes in GCK-MODY pregnancies : a precision medicine approach via non-invasive prenatal GCK mutation detection

Published inFrontiers in medicine, vol. 11, 1347290
Publication date2024
First online date2024-04-30
Abstract

Background: Mutations in theGCKgene cause Maturity Onset Diabetes of the Young (GCK-MODY) by impairing glucose-sensing in pancreatic beta cells. During pregnancy, managing this type of diabetes varies based on fetal genotype. Fetuses carrying aGCKmutation can derive benefit from moderate maternal hyperglycemia, stimulating insulin secretion in fetal islets, whereas this may cause macrosomia in wild-type fetuses. Modulating maternal glycemia can thus be viewed as a form of personalized prenatal therapy, highly beneficial but not justifying the risk of invasive testing. We therefore developed a monogenic non-invasive prenatal diagnostic (NIPD-M) test to reliably detect the transmission of a known maternalGCKmutation to the fetus.

Methods: A small amount of fetal circulating cell-free DNA is present in maternal plasma but cannot be distinguished from maternal cell-free DNA. Determining transmission of a maternal mutation to the fetus thus implies sequencing adjacent polymorphisms to determine the balance of maternal haplotypes, the transmitted haplotype being over-represented in maternal plasma.

Results: Here we present a series of such tests in which fetal genotype was successfully determined and show that it can be used to guide therapeutic decisions during pregnancy and improve the outcome for the offspring. We discuss several potential hurdles inherent to the technique, and strategies to overcome these.

Conclusion: Our NIPD-M test allows reliable determination of the presence of a maternalGCKmutation in the fetus, thereby allowing personalizedin uterotherapy by modulating maternal glycemia, without incurring the risk of miscarriage inherent to invasive testing.

Keywords
  • GCK-MODY
  • Non-invasive prenatal diagnosis
  • Cell-free circulating DNA
  • Fetal DNA
  • Glucokinase
  • In utero therapy
  • Monogenic diabetes
  • Personalized medicine
Citation (ISO format)
SCHWITZGEBEL LUSCHER, Valérie et al. Enhancing fetal outcomes in GCK-MODY pregnancies : a precision medicine approach via non-invasive prenatal GCK mutation detection. In: Frontiers in medicine, 2024, vol. 11, p. 1347290. doi: 10.3389/fmed.2024.1347290
Main files (1)
Article (Published version)
Secondary files (1)
Supplemental data
accessLevelPublic
Identifiers
Journal ISSN2296-858X
116views
158downloads

Technical informations

Creation03/09/2024 07:52:54
First validation23/09/2024 12:43:22
Update23/09/2024 12:43:22
Status update23/09/2024 12:43:22
Last indexation01/11/2024 11:08:10
All rights reserved by Archive ouverte UNIGE and the University of GenevaunigeBlack