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PubMed · 7787118

Chorionic villus sampling.

Abstract

Chorionic villus sampling (CVS) has the great advantage over mid-trimester amniocentesis of producing early results. Moreover, rapid analytic techniques have significantly reduced the waiting time between sampling and diagnosis, whereas progress in recombinant DNA technology and human gene mapping has led to an increase in the range of conditions it can detect. The role of CVS in twin pregnancy has been investigated and compared with amniocentesis. Although these techniques are equally safe, CVS should be considered the approach of choice because of a number of technical advantages, and in relation to selective fetal reduction in discordant twins. Confined placental mosaicism has been investigated and a list of chromosomes related to adverse pregnancy outcome has been compiled. Recent reports have substantially contributed to solving the controversy on the hypothetical relationship between limb reduction defects and CVS. Analysis of limb reduction defects among more than 130,000 cases reported to the World Health Organization CVS registry has been unable to find any relationship between sampling and fetal malformations, including limb reduction defects.

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BibTeXRIS

B Brambati. 1995. Chorionic villus sampling.. https://doi.org/10.1097/00001703-199504000-00006

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Fetal cell detection in maternal blood: a study in 236 samples using erythroblast morphology, DAB and HbF staining, and FISH analysis.

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Chorionic Villi Sampling

Two-colour immunocytochemical staining of gamma (gamma) and epsilon (epsilon) type haemoglobin in fetal red cells.

We have developed a two-colour immunocytochemical staining method for the detection of fetal and embryonic haemoglobin in erythroid cells. The method was applied to study these haemoglobin types in fetal red cells. Specimens from fetal blood (10 weeks), cord blood and fetal liver (14 weeks) as well as chorionic villus samples (10-13 weeks) were stained for gamma and epsilon chains using CY3 and FITC labelled antibodies. Morphometric analysis was applied to determine cell size. Samples from organs involved in early embryonic development contained relatively large erythroblasts expressing the epsilon globin chain (megaloblasts); later in gestation the gamma chain was co-expressed by the same cells which ultimately became smaller and contained HbF (alpha 2 gamma 2) only. This phenomenon was confirmed in CVS samples in which all cell types were abundantly present. Since fetal erythroblasts are considered candidate cells for non-invasive prenatal diagnosis using FISH, we studied the phenotype of erythroblasts circulating in the maternal blood. The majority of erythroblasts in maternal blood appeared to be of the relatively small gamma globin-containing cell type. However, careful screening of the same maternal blood samples also revealed erythroblasts expressing epsilon or epsilon and gamma globins simultaneously, although at low frequency. Control specimens from non-pregnant women did not show nucleated red cells expressing either of the haemoglobin types. These observations may contribute to the better recognition of fetal cells in the maternal blood for prenatal diagnosis.

Chorionic Villi Sampling