Molecular Prenatal Diagnosis of Monogenic Diseases, Towards Non-invasive Procedures.
In this narrative review, we outline the historical progression of, and modern advancements in, prenatal diagnosis for monogenic diseases. Initially dependent on invasive sampling procedures, prenatal diagnosis has evolved through the integration of high-throughput molecular techniques, such as next-generation sequencing. These techniques now allow for the comprehensive detection of pathogenic variants across the genome. A major breakthrough occurred with the discovery of cell-free fetal DNA (cfDNA) in maternal plasma, originating from the placenta. This discovery enabled the development of non-invasive prenatal testing (NIPT), which is now widely used. However, non-invasive prenatal diagnosis (NIPD) for monogenic diseases took longer to develop, mainly due to the need for highly sensitive sequencing methods and sophisticated statistical analysis to determine maternal transmission. Currently, only a few countries have implemented NIPD in clinical settings. The multitude of available technologies and protocols can complicate the information provided during antenatal consultations. However, mastery of the knowledge and ethical issues surrounding NIPD will ensure optimal service and better care for pregnancies at risk of monogenic disease transmission.