scholarly journals The impact of preimplantation genetic testing on maternal serum analytes in IVF singleton pregnancies

2022 ◽  
Vol 226 (1) ◽  
pp. S436
Author(s):  
Moti Gulersen ◽  
David Krantz ◽  
Xueying Li ◽  
Alexandra Peyser ◽  
Randi Goldman ◽  
...  
2022 ◽  
Vol 226 (1) ◽  
pp. S260-S261
Author(s):  
Moti Gulersen ◽  
David Krantz ◽  
Xueying Li ◽  
Alexandra Peyser ◽  
Randi Goldman ◽  
...  

2021 ◽  
Vol 0 (0) ◽  
Author(s):  
Moti Gulersen ◽  
Alexandra Peyser ◽  
Jiyoung Kim ◽  
Amanda Ferraro ◽  
Randi Goldman ◽  
...  

Abstract Objectives To determine whether preimplantation genetic testing for aneuploidy (PGT-A) is associated with a reduced risk of abnormal conventional prenatal screening results in singleton pregnancies conceived using in vitro fertilization (IVF). Methods This was a retrospective cohort study of singleton IVF pregnancies conceived from a single tertiary care center between January 2014 and September 2019. Exclusion criteria included mosaic embryo transfers, vanishing twin pregnancies, and cycles with missing outcome data. Two cases of prenatally diagnosed aneuploidy that resulted in early voluntary terminations were also excluded. The primary outcome of abnormal first or second-trimester combined screening results was compared between two groups: pregnancy conceived after transfer of a euploid embryo by PGT-A vs. transfer of an untested embryo. Multivariable backwards-stepwise logistic regression with Firth method was used to adjust for potential confounders. Results Of the 419 pregnancies included, 208 (49.6%) were conceived after transfer of a euploid embryo by PGT-A, and 211 (50.4%) were conceived after transfer of an untested embryo. PGT-A was not associated with a lower likelihood of abnormal first-trimester (adjusted OR 1.64, 95% CI 0.82–3.39) or second-trimester screening results (adjusted OR 0.96, 95% CI 0.56–1.64). The incidences of cell-free DNA testing, fetal sonographic abnormalities, genetic counseling, and invasive prenatal diagnostic testing were similar between the two groups. Conclusions Our data suggest that PGT-A is not associated with a change in the likelihood of abnormal prenatal screening results or utilization of invasive prenatal diagnostic testing. Counseling this patient population regarding the importance of prenatal screening and prenatal diagnostic testing, where appropriate, remains essential.


2019 ◽  
Vol 26 (1) ◽  
pp. 16-42 ◽  
Author(s):  
Megan Leaver ◽  
Dagan Wells

Abstract BACKGROUND Preimplantation genetic testing (PGT) encompasses methods that allow embryos to be tested for severe inherited conditions or for chromosome abnormalities, relevant to embryo health and viability. In order to obtain embryonic genetic material for analysis, a biopsy is required, involving the removal of one or more cells. This invasive procedure greatly increases the costs of PGT and there have been concerns that embryo viability could be compromised in some cases. The recent discovery of DNA within the blastocoele fluid (BF) of blastocysts and in spent embryo culture media (SCM) has led to interest in the development of non-invasive methods of PGT (niPGT). OBJECTIVE AND RATIONALE This review evaluates the current scientific evidence regarding non-invasive genetic assessment of preimplantation embryos. The success of different PGT methodologies in collecting and analysing extra-embryonic DNA is evaluated, and consideration is given to the potential biological and technical hindrances to obtaining a reliable clinical diagnosis. SEARCH METHODS Original research and review papers concerning niPGT were sourced by searching PubMed and Google Scholar databases until July 2019. Searches comprised the keywords: ‘non-invasive’; ‘cell-free DNA’; ‘blastocentesis’; ‘blastocoel fluid’; ‘spent culture media’; ‘embryo culture medium’; ‘preimplantation genetic testing’; ‘preimplantation genetic diagnosis’; ‘preimplantation genetic screening’; and ‘aneuploidy’. OUTCOMES Embryonic DNA is frequently detectable in BF and SCM of embryos produced during IVF treatment. Initial studies have achieved some success when performing cytogenetic and molecular genetic analysis. However, in many cases, the efficiency has been restricted by technical complications associated with the low quantity and quality of the DNA. Reported levels of ploidy agreement between SCM/BF samples and biopsied embryonic cells vary widely. In some cases, a discrepancy with respect to cytogenetic data obtained after trophectoderm biopsy may be attributable to embryonic mosaicism or DNA contamination (usually of maternal origin). Some research indicates that aneuploid cells are preferentially eliminated from the embryo, suggesting that their DNA might be over-represented in SCM and BF samples; this hypothesis requires further investigation. WIDER IMPLICATIONS Available data suggest that BF and SCM samples frequently provide DNA templates suitable for genetic analyses, offering a potential means of PGT that is less expensive than traditional methods, requires less micromanipulation skill and poses a lower risk to embryos. Critically, DNA isolation and amplification protocols must be optimised to reproducibly obtain an accurate clinical diagnosis, whilst minimising the impact of confounding factors such as contamination. Further investigations are required to understand the mechanisms underlying the release of embryonic DNA and to determine the extent to which this material reflects the true genetic status of the corresponding embryo. Currently, the clinic al potential of niPGT remains unknown.


2019 ◽  
Vol 36 (8) ◽  
pp. 1561-1569 ◽  
Author(s):  
Dana Kimelman ◽  
Rafael Confino ◽  
Ijeoma Okeigwe ◽  
Jaclyn Lambe-Steinmiller ◽  
Edmond Confino ◽  
...  

2018 ◽  
Vol 110 (4) ◽  
pp. e143-e144
Author(s):  
A. Bartoli ◽  
A. King ◽  
K. Hornberger ◽  
D. Klepacka ◽  
D. Young ◽  
...  

2021 ◽  
Vol 224 (2) ◽  
pp. S570-S571
Author(s):  
Moti Gulersen ◽  
Alexandra Peyser ◽  
Jiyoung Kim ◽  
Amanda Ferraro ◽  
Randi Goldman ◽  
...  

Author(s):  
Moti Gulersen ◽  
Stephanie Baum ◽  
Eran Bornstein ◽  
David Krantz ◽  
Tomer Singer ◽  
...  

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