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1.
Hum Reprod ; 38(1): 180-188, 2023 01 05.
Article in English | MEDLINE | ID: mdl-36350568

ABSTRACT

STUDY QUESTION: Are chromosome abnormalities detected at Day 3 post-fertilization predominantly retained in structures of the blastocyst other than the inner cell mass (ICM), where chromosomally normal cells are preferentially retained? SUMMARY ANSWER: In human embryos, aneuploid cells are sequestered away from the ICM, partly to the trophectoderm (TE) but more significantly to the blastocoel fluid within the blastocoel cavity (Bc) and to peripheral cells (PCs) surrounding the blastocyst during Day 3 to Day 5 progression. WHAT IS KNOWN ALREADY: A commonly held dogma in all diploid eukaryotes is that two gametes, each with 'n' chromosomes (23 in humans), fuse to form a '2n' zygote (46 in humans); a state that remains in perpetuity for all somatic cell divisions. Human embryos, however, display high levels of chromosomal aneuploidy in early stages that reportedly declines from Day 3 (cleavage stage) to Day 5 (blastocyst) post-fertilization. While this observation may be partly because of aneuploid embryonic arrest before blastulation, it could also be due to embryo 'normalization' to a euploid state during blastulation. If and how this normalization occurs requires further investigation. STUDY DESIGN, SIZE, DURATION: A total of 964 cleavage-stage (Day 3) embryos underwent single-cell biopsy and diagnosis for chromosome constitution. All were maintained in culture, assessing blastulation rate, both for those assessed euploid and aneuploid. Pregnancy rate was assessed for those determined euploid, blastulated and subsequently transferred. For those determined aneuploid and blastulated (174 embryos), ICM (all 174 embryos), TE (all 174), Bc (47 embryos) and PC (38 embryos) were analyzed for chromosome constitution. Specifically, concordance with the original Day 3 diagnosis and determination if any 'normalized' to euploid karyotypes within all four structures was assessed. PARTICIPANTS/MATERIALS, SETTING, METHODS: All patients (144 couples) were undergoing routine preimplantation genetic testing for aneuploidy in three IVF clinical settings. Cleavage-stage biopsy preceded chromosome analysis by next-generation sequencing. All patients provided informed consent. Additional molecular testing was carried out on blastocyst embryos and was analyzed for up to four embryonic structures (ICM, TE, Bc and PC). MAIN RESULTS AND THE ROLE OF CHANCE: Of 463/964 embryos (48%) diagnosed as euploid at Day 3, 70% blastulated (leading to a 59% pregnancy rate) and 30% degenerated. Conversely, of the 501 (52%) diagnosed as aneuploid, 65% degenerated and 35% (174) blastulated, a highly significant difference (P < 0.0001). Of the 174 that blastulated, the ratio of '(semi)concordant-aneuploid' versus 'normalized-euploid' versus 'other-aneuploid' embryos was, respectively, 39%/57%/3% in the ICM; 49%/48%/3% in the TE; 78%/21%/0% in the PC; and 83%/10%/5% in the Bc. The TE karyotype therefore has a positive predictive value of 86.7% in determining that of the ICM, albeit with marginally higher aneuploid rates of abnormalities (P = .071). Levels of abnormality in Bc/PC were significantly higher (P < 0.0001) versus the ploidy of the ICM and TE and nearly all chromosome abnormalities were (at least partially) concordant with Day 3 diagnoses. LIMITATIONS, REASONS FOR CAUTION: The results only pertain to human IVF embryos so extrapolation to the in vivo situation and to other species is not certain. We acknowledge (rather than lineage-specific survival, as we suggest here) the possibility of other mechanisms, such as lineage-specific movement of cells, during blastulation. Ethical considerations, however, make investigating this mechanism difficult on human embryos. WIDER IMPLICATIONS OF THE FINDINGS: Mosaic human cleavage-stage embryos can differentiate into a euploid ICM where euploid cell populations predominate. Sequestering of aneuploid cells/nuclei to structures no longer involved in fetal development has important implications for preimplantation and prenatal genetic testing. These results also challenge previous fundamental understandings of mitotic fidelity in early human development and indicate a complex and fluid nature of the human embryonic genome. STUDY FUNDING/COMPETING INTEREST(S): This research was funded by Organon Pharmaceuticals and Merck Serono by grants to W.G.K. W.G.K. is also an employee of AdvaGenix, who could, potentially, indirectly benefit financially from publication of this manuscript. R.C.M. is supported by the National Institute of General Medical Sciences of the National Institutes of Health under award number R35GM133747. The content is solely the responsibility of the authors and does not necessarily represent the official views of the National Institutes of Health. D.K.G. provides paid consultancy services for Care Fertility. TRIAL REGISTRATION NUMBER: : N/A.


Subject(s)
Preimplantation Diagnosis , Pregnancy , Female , Humans , Preimplantation Diagnosis/methods , Blastocyst , Chromosome Aberrations , Aneuploidy , Karyotype , Fetus
2.
Hum Reprod ; 30(5): 1122-36, 2015 May.
Article in English | MEDLINE | ID: mdl-25750104

ABSTRACT

STUDY QUESTION: Do full term singletons born after preimplantation genetic diagnosis (PGD) differ in their psychosocial functioning from children born after intracytoplasmic sperm injection (ICSI) and spontaneous conceived controls (SC)? SUMMARY ANSWER: The psychosocial maturation process of 5-6-year-old PGD children is comparable between the three conception groups (PGD, ICSI and SC). WHAT IS ALREADY KNOWN: In general, a lot of research has been published regarding follow-up of children born after artificial reproductive technologies (ART), which mainly is reassuring. But the ART population itself is marked by broad diversity [IVF, ICSI, gamete donation, preimplantation genetic screening (PGS) or PGD] which complicates comparisons. Some literature concerning the socio-emotional development of PGD/PGS children is available and it suggests a normal maturation process. However, the complex reality of PGD families (e.g. safety of the technique and psychological burden of genetic histories) asks for an exclusive PGD sample with matched control groups and a multi-informant approach. STUDY DESIGN, SIZE, DURATION: Between April 2011 and May 2013, the psychosocial wellbeing of preschoolers and their families born after PGD was assessed in a prospective case-controlled, matched follow-up study, with a multi-informant approach. PARTICIPANTS/MATERIALS, SETTING, METHODS: A group of 47 PGD, 50 ICSI and 55 SC 5-6-year-old children participated in a follow-up study performed at the Centre for Medical Genetics of the Universitair Ziekenhuis Brussel (UZ Brussel). Assessments took place in the hospital and in kindergartens. Children performed the Bene-Anthony family relations test (FRT), yielding their perceptions upon family relationships. Parents and teachers completed the child behaviour checklist (CBCL) and Caregiver Teacher Report Form (C-/TRF), respectively. Parental and family functioning were measured by the NEO-FFi, the parenting stress index (PSI), the Greenberger Work-Parenting Investment Questionnaire and the Marlowe-Crowne Social Desirability Scale (MCSDS). Statistical analysis was performed by using analysis of covariance (ANCOVA). MAIN RESULTS AND THE ROLE OF CHANCE: No differences were detected between the psychosocial development of PGD children and the control groups. Parents did not differ in reporting problem behaviour and they were stricter than teachers. Concerning family functioning the ART parents scored comparable with each other. PGD and ICSI mothers were emotionally more stable [NEO-FFi Neuroticism/emotionality: P = 0.013, η(2) = 0.066; 95% confidence interval (CI) 95% (0.003;0.148)]. They experienced less parental stress in general [PSI, Total stress: P = 0.001, η(2) = 0.102, 95% CI (0.02;0.192)] and on different sublevels opposed to their SC counterparts. Yet ART mothers presented higher ratings on the NEO-FFi Conscientiousness [P = 0.011, η(2) = 0.064; 95% CI (0.003;0.144)] indicating a higher feeling of competence and goal directedness. Mediation analysis confirmed: PGD and ICSI mothers who experienced less family stress were emotionally more stable. A power analysis indicated that a sample with 152 children is sufficient to detect a medium size effect with 80% power using ANCOVA. LIMITATIONS, REASONS FOR CAUTION: The current sample comprised only Dutch speaking Caucasians, hence conclusions should be drawn cautiously. Future research should include larger groups, prematures, multiples and children from different cultural backgrounds. WIDER IMPLICATIONS OF THE FINDINGS: This current research is the first to compare PGD preschoolers with matched controls. Concerns about the behavioural effects on the offspring should not inhibit the use of PGD. Furthermore, our findings suggest that on the long run ART procedures might enhance personal resources of women to cope with family stress. These findings are reassuring for women who might feel insecure and anxious during their ART trajectory. STUDY FUNDING/COMPETING INTERESTS: This research project gained funding from the OZR (a grant by the Research group of the Vrije Universiteit Brussel), the FWO (Fonds Wetenschappelijk Onderzoek) and the Wetenschappelijk Fonds Willy Gepts. The UZ Brussel and the Centre of Medical Genetics received funding from pharmaceutical firms for data collection. UZ Brussel and the Centre for Medical Genetics have received many educational grants for organizing the data collection, from IBSA, Ferring, Organon, Shering-Plough, Merck and Merck Belgium. M.B. has received consultancy and speaker's fees from Organon, Serono Symposia and Merck. The other authors have no competing interests. TRIAL REGISTRATION NUMBER: not applicable.


Subject(s)
Preimplantation Diagnosis/methods , Sperm Injections, Intracytoplasmic/methods , Adaptation, Psychological , Case-Control Studies , Child , Child Behavior , Child Development , Child, Preschool , Female , Fertilization , Follow-Up Studies , Humans , Male , Models, Statistical , Prospective Studies , Sperm Injections, Intracytoplasmic/adverse effects
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