Although the first finding that fetal cells can enter the maternal circulation was made more than a century ago, it is still unclear if this finding will be translated into a clinically useful diagnostic tool in the foreseeable future. However, significant progress has been made via the analysis of cell-free fetal DNA in maternal plasma/serum and clinical services are now already being offered for the determination of fetal rhesus D status and sex. Currently, however, this technology is really only suited for the analysis of fetal genetic loci completely absent from the maternal genome. The detection of more subtle fetal genetic traits, such as point mutations involved in Mendelian disorders (thalassaemia, cystic fibrosis), is considerably ...
The discovery of cell-free fetal (cff) DNA and RNA in the maternal circulation has driven developmen...
The discovery of cell-free fetal nucleic acids in maternal plasma has opened up new possibilities fo...
Prenatal testing is important for the early detection and diagnosis of rare genetic conditions with ...
The results presented in this thesis indicate that cell-free fetal DNA is a reliably analyte for pre...
Prenatal diagnosis for genetic diseases nowadays is still carried out by invasive procedures such as...
Non-invasive prenatal diagnosis (NIPD) offers the opportunity to eliminate completely the risky proc...
Recent advances in molecular genetic technologies have facilitated non-invasive prenatal testing (NI...
Non-invasive prenatal diagnosis (NIPD) is based on fetal DNA analysis starting from a simple periphe...
Since the presence of large amounts of circulating fetal DNA in maternal plasma and serum samples wa...
Prenatal diagnosis is now part of established obstetric practice in many countries. However, convent...
The analysis of cell-free fetal nucleic acids in maternal blood for prenatal diagnosis has been tran...
In 1997, Prof. Dennis Lo discovered the presence of cell-free fetal DNA (cffDNA) in the maternal pla...
Since the identification of fetal lymphocytes in mater-nal blood in 1969, investigators have endeavo...
Current prenatal diagnostics is mainly based on obtaining fetal DNA through invasive procedures such...
The detection of cell-free fetal DNA from maternal plasma and serum by Dennis Lo and colleagues at O...
The discovery of cell-free fetal (cff) DNA and RNA in the maternal circulation has driven developmen...
The discovery of cell-free fetal nucleic acids in maternal plasma has opened up new possibilities fo...
Prenatal testing is important for the early detection and diagnosis of rare genetic conditions with ...
The results presented in this thesis indicate that cell-free fetal DNA is a reliably analyte for pre...
Prenatal diagnosis for genetic diseases nowadays is still carried out by invasive procedures such as...
Non-invasive prenatal diagnosis (NIPD) offers the opportunity to eliminate completely the risky proc...
Recent advances in molecular genetic technologies have facilitated non-invasive prenatal testing (NI...
Non-invasive prenatal diagnosis (NIPD) is based on fetal DNA analysis starting from a simple periphe...
Since the presence of large amounts of circulating fetal DNA in maternal plasma and serum samples wa...
Prenatal diagnosis is now part of established obstetric practice in many countries. However, convent...
The analysis of cell-free fetal nucleic acids in maternal blood for prenatal diagnosis has been tran...
In 1997, Prof. Dennis Lo discovered the presence of cell-free fetal DNA (cffDNA) in the maternal pla...
Since the identification of fetal lymphocytes in mater-nal blood in 1969, investigators have endeavo...
Current prenatal diagnostics is mainly based on obtaining fetal DNA through invasive procedures such...
The detection of cell-free fetal DNA from maternal plasma and serum by Dennis Lo and colleagues at O...
The discovery of cell-free fetal (cff) DNA and RNA in the maternal circulation has driven developmen...
The discovery of cell-free fetal nucleic acids in maternal plasma has opened up new possibilities fo...
Prenatal testing is important for the early detection and diagnosis of rare genetic conditions with ...