PubMed Health⌕ Search

PubMed · 1912354

Amniocentesis and chorionic villus sampling.

Abstract

Amniocentesis and chorionic villus sampling (CVS) remain the most commonly used invasive prenatal diagnostic procedures. Recent reports on early amniocentesis demonstrate its application to the prenatal detection of certain biochemical disorders. However, its role in the evaluation of open fetal defects of the neural tube or ventral wall is still under investigation. The fact that many reports concerning early amniocentesis include a majority of patients beyond 11 to 12 weeks' gestation, thus placing the procedure outside the first trimester, make comparisons with CVS (usually performed between 9 and 11 weeks) problematic. The role of midtrimester amniocentesis in evaluating elevations of maternal serum alpha-fetoprotein, following a normal ultrasonographic examination performed specifically to detect fetal anomalies, is under scrutiny. It appears that risk adjustment may be appropriate following a normal scan, and prior to invasive procedures, but each center's recommendation to a given patient will depend on the expertise of the individual sonographer, as well as the quality of examination. CVS has gained acceptance as a safe first-trimester means of prenatal diagnosis, with increasing applications in the later stages of pregnancy. Chromosomal mosaicism detected by CVS may represent a phenomenon inherent to placental tissue; questions remain regarding mosaicism as a potential marker for increased pregnancy loss. Comparisons between the transcervical and transabdominal routes are reviewed, with equivalent results regarding safety and efficacy. Recent evaluations of fetomaternal transfusion following CVS are also described.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

K D McGowan, K J Blakemore. 1991. Amniocentesis and chorionic villus sampling.. https://pubmed.ncbi.nlm.nih.gov/1912354/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Amniocentesis for twin pregnancies: is alpha-fetoprotein useful in confirming that the two sacs were sampled?

OBJECTIVE: To assess if amniotic fluid alpha-fetoprotein (AFAFP) could be useful to determine if both sacs are sampled during an amniocentesis for twin pregnancies. METHOD: We reviewed all amniocenteses performed on twin pregnancies over a 5-year period. Inclusion criteria were restricted to pregnancies where both karyotypes and AFAFP were available on each fetus. Pregnancies complicated by fetal anomalies were excluded. The following information was obtained: maternal age, gestational age at the procedure, karyotypes, AFAFP values, pregnancy and neonatal outcome. Placental pathology reports were used to confirm chorionicity. Analysis was performed to evaluate the impact of the fetal gender and chorionicity on the AFAFP values. RESULTS: 260 pregnancies were reviewed. Mean maternal age was 36.9 years (33.6, 40.1). Gestational age at the time of the procedure was 16.2 weeks (14.5, 17.9). Complications included 1.8% of misdiagnosis (discrepancy between karyotype and gender). The difference of AFAFP values between the two fetuses was statistically larger in dichorionic pregnancies than in monochorionic gestations. Fetal gender had no influence on the AFAFP. CONCLUSION: Amniocentesis in twin pregnancies is associated with a 1.8% risk of misdiagnosis. AFAFP can help to assess the chorionicity of a twin pregnancy. When the difference between the two values is <0.2 MoM and the chorionicity was thought to be dichorionic and the two karyotypes are similar, then failure to sample both sacs should be suspected.

Amniocentesis↗

Fetal anomaly scan potentially will replace routine AFAFP assays for the detection of neural tube defects.

OBJECTIVES: Introduction of the second-trimester fetal anomaly scan and the decision to offer this scan to every woman in the 18th-22nd week of pregnancy necessitates a re-evaluation of the diagnostic value of the measurement of alpha-fetoprotein (AFP) concentrations in the amniotic fluid (AF) for the detection of neural tube defects (NTDs). METHODS: In this study of 6501 women who underwent amniocentesis, amniotic fluid AFP (AFAFP) concentrations were measured. The women were divided into three categories: group I, without any increased risk of fetal NTD (N = 6188); group II, with an increased risk of fetal NTD (N = 258); and group III, with a clinically diagnosed fetal NTD with known AFAFP concentrations (N = 55). RESULTS: In 27 women of group I (0.4%), the MoM (multiple of the median) level was > 2.5 times the median AFP concentration for the corresponding gestational age, and in two fetuses this was related to NTD. In two pregnancies of group II (0.8%), an increased AFAFP was related to NTD. In group III, 44 of the 55 (80%) samples had an increased AFAFP. CONCLUSION: In the near future, it is likely that imaging will replace AFAFP assays for the detection of fetal NTDs because high quality ultrasound imaging will detect NTDs accurately.

Amniocentesis↗

Oxidized transthyretin in amniotic fluid as an early marker of preeclampsia.

Preeclampsia is a pregnancy-specific hypertensive syndrome and a major cause of maternal and fetal morbidity and mortality. At the present time, no reliable screening tests to identify women at risk are available. We have compared the amniotic fluids (AF) proteomic maps of five preeclamptic patients with those of five controls. The analysis was carried out by two-dimensional electrophoresis followed by peptide mapping and tandem mass spectrometric analysis. Besides the implementation of the previously published AF proteomic maps, our results show that transthyretin (TTR), the protein responsible for transporting both the thyroid hormone tyroxine and the retinol binding protein, is present in the AF of both preeclamptic and control women as a mixture of dimeric and post-translationally modified monomeric forms. Although the nature of these forms is similar in both groups, the preeclamptic women showed a significant increase in the amount of monomeric proteins with respect to the control group. Since the TTR monomeric forms are the results of different oxidizing reactions, we hypothesize that the higher oxidative stress in preeclampsia is the major destabilizing factor of the TTR functional dimeric form in the preeclamptic women.

Amniocentesis↗