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F J Los

Publications and source records attributed to F J Los.

At least 19 recordsLinked to original sources

Transmission and prenatal diagnosis of the T9176C mitochondrial DNA mutation.

A family presented with three affected children with Leigh syndrome, a progressive neurodegenerative disorder. Analysis of the OXPHOS complexes in muscle of two affected patients showed an increase in activity of pyruvate dehydrogenase and a decrease of complex V activity. Mutation analysis revealed the T9176C mutation in the mtATPase 6 gene (OMIM 516060) and the mutation load was above 90% in the patients. Unaffected maternal relatives were tested for carrier-ship and one of them, with a mutation load of 55% in blood, was pregnant with her first child. The possibility of prenatal diagnosis was evaluated. The main problem was the lack of data on genotype-phenotype associations for the T9176C mutation and on variation of the mutation percentage in tissues and in time. Therefore, multiple tissues of affected and unaffected carriers were analysed. Eventually, prenatal diagnosis was offered with understanding by the couple that there could be considerable uncertainty in the interpretation of the results. Prenatal diagnosis was carried out twice on cultured and uncultured chorion villi and amniotic fluid cells. The result was a mutation percentage just below the assumed threshold of expression (90%). The couple decided to continue the pregnancy and an apparently healthy child was born with an as yet unclear prognosis. This is the first prenatal diagnosis for a carrier of the T9176C mutation. Prenatal diagnosis for this mutation is technically reliable, but the prognostic predictions are not straightforward.

Child↗

Fluorescence in situ hybridization analysis of two blastomeres from day 3 frozen-thawed embryos followed by analysis of the remaining embryo on day 5.

BACKGROUND: Chromosomal mosaicism in human embryos may give rise to false positive or false negative results in preimplantation genetic diagnosis for aneuploidy screening (PGD-AS). Therefore, we have investigated whether the results obtained from a 2-cell biopsy of frozen-thawed embryos and fluorescence in situ hybridization (FISH) analysis are representative for the chromosome constitution of the remaining embryo on day 5. METHODS: Cryopreserved day 3 embryos were thawed and from surviving embryos two blastomeres were biopsied. FISH analysis was performed for chromosomes 1, 7, 13, 15, 16, 18, 21, 22, X and Y. After biopsy, the embryos were cultured until day 5 and further analysed using the same probe panels. RESULTS: In all, 17 embryos were available with a diagnosis based on two blastomeres on day 3 and confirmatory studies on day 5. In 10 of these 17 cases the initial diagnosis could be confirmed. However, in only six cases cytogenetic results were concordant. Besides the 10 cases with a 'correct' diagnosis, there were six false positive results and one false negative, all involving mosaicism. CONCLUSIONS: Investigating the chromosomal constitution of two blastomere nuclei offers a good opportunity to study the incidence of chromosomal mosaicism in early embryo development. The confirmation rate of the results obtained on day 3 depends on the interpretation and is higher when considered from a clinical than from a cytogenetic point of view.

Aneuploidy↗

[Twenty years of experience in advanced ultrasound scanning for fetal anomalies in Rotterdam].

At the Rotterdam Fetal Medicine Unit over a period of 20 years, scanning for foetal anomalies has been performed in more than 24,000 pregnancies at risk of a foetal congenital anomaly. In pregnancies where there was prior knowledge of increased risk of a foetal anomaly (group I), the incidence of foetal pathology was 2-5%. In pregnancies in which a foetal anomaly was suspected on clinical or sonographic grounds (group II), the incidence of foetal pathology was 32-57%. For reasons of good-image quality, group I pregnancies were nearly always referred for a foetal-anomaly scan at 18-21 weeks of gestation. Group II pregnancies were often referred after 24 weeks of gestation, which is the upper legal limit for termination of pregnancy in the Netherlands. The detection rate was 94.7% (2000 and 2001). An abnormal chromosome pattern was established in 18% of all affected pregnancies, the great majority of these patterns (83%) being numerical. Approximately 18% of affected pregnancies were discussed in a multidisciplinary setting to ensure correct diagnosis, prognosis and management. Depending on the nature and severity of the foetal anomaly, standard obstetric management was advised in two thirds of cases. In the remaining one third termination of pregnancy was carried out at the request of the parents or a policy of obstetric non-intervention was adopted. In a subgroup comprising 460 pregnant women with both indications for referral, who were investigated at 12-14 weeks gestation, the detection rate for a number of congenital abnormalities was 89.5%.

Congenital Abnormalities↗

Poor outcome in Down syndrome fetuses with cardiac anomalies or growth retardation.

The outcome of Down syndrome fetuses presenting with sonographic abnormalities in the second or third trimester is unclear. Therefore, we studied 55 pregnancies referred because of sonographically suspected fetal structural anomalies or growth retardation due to trisomy 21. A detailed ultrasound scan was performed in all cases to delineate the structural anomalies. Congenital heart malformations (CHMs) were diagnosed pre- and postnatally in 29 out of 55 Down fetuses (53%), with complete or incomplete atrioventricular septal defects (AVSDs) and ventricular septal defects (VSDs) being the most frequent anomalies. The most frequent noncardiac findings were a short femur (45%) and a small-for-gestational age (SGA) fetus (27%). Termination of pregnancy was carried out in 25 out of 55 pregnancies (45%). Of the 30 continued pregnancies, 10 ended with intrauterine death. The remaining 20 pregnancies resulted in the delivery of a live-born infant whose prognosis was poor, with a 1-year survival of only 60%. Combining intrauterine death and death in the first year indicated that the overall survival rate was only 40%. Fatal outcome was noted in 68% (13/19) in the presence of CHM, in 83% (10/12) in SGA fetuses, in 86% (6/7) in combined CHM and SGA, but only in 17% (1/6) in the absence of CHM and SGA. This study indictes that second- and third-trimester in utero diagnosis of Down syndrome has a poor outcome when associated with CHM and/or SGA. This is important in the genetic counseling of the parents.

Abortion, Induced↗

Early fetal anomaly scanning in a population at increased risk of abnormalities.

OBJECTIVES: To determine the effectiveness of early fetal anomaly scanning in a population at risk of fetal anomalies. DESIGN: A prospective study in a tertiary center of 101 consecutive fetuses at risk of congenital anomalies at 11-14 weeks of gestation. RESULTS: The principal (93/101 = 92%) reason for referral was having a previously affected infant. Nine (9/101 = 9%) fetuses were shown to have structural anomalies at the 11-14-week scan. In five of nine structurally affected fetuses, the nature of the anomalies was similar to that established in a previously affected pregnancy, four of which had a recurrence of an autosomal recessive syndrome. In two fetuses with a normal 11-14-week scan, anomalies were detected at the 18-21-week (arthrogryposis) or 30-week (cardiomyopathy) scans. CONCLUSIONS: The majority of fetal anomalies can be diagnosed in the late first/early second trimesters of pregnancy. This will be of particular advantage to those women who are at high risk of having affected offspring. However, as fetal anomalies may present at varying gestational ages, the standard 18-21-week scan cannot be abandoned. The effectiveness of the early pregnancy scan depends on the natural history of anomalies (gestational age at onset) and the variable phenotypic expression of anomalies/syndromes.

Congenital Abnormalities↗

Follow-up investigations in uncultured amniotic fluid cells after uncertain cytogenetic results.

Fluorescence in situ hybridization (FISH) on uncultured amniotic fluid (AF) cells is a widespread technique for the rapid prenatal detection of specific chromosome aberrations. During a 6-year period (1993-1998) we used FISH for quick follow-up investigations in uncultured AF cells after finding an uncertain chromosome aberration in a first chorionic villus (CV) or AF sample in 79 cases. These FISH results were compared with conventional cytogenetic results of the AF cell cultures in all cases. We found discrepant FISH and cytogenetic results in four instances. In general, FISH on uncultured AF cells proved to be a reliable technique for the rapid differentiation between confined placental mosaicism and true fetal mosaicism, and between pseudomosaicism and true mosaicism, respectively. Uncultured cells may sometimes even better reflect chromosomal mosaicism than cultured cells, since they are not subject to culture induced selection mechanisms. However, we found evidence that exceptional cases of tissue confined mosaicism may go undetected in uncultured cells.

Amniocentesis↗

First-trimester diagnosis of late-infantile neuronal ceroid lipofuscinosis (LINCL) by tripeptidyl peptidase I assay and CLN2 mutation analysis.

Late-infantile neuronal ceroid lipofuscinosis (LINCL) is a progressive neurodegenerative disorder caused by the deficiency of lysosomal tripeptidyl peptidase I (TPP-I) encoded by the CLN2 gene. We report the first case of early prenatal diagnosis of LINCL by combined enzyme and mutation analysis. TPP-I activity in chorionic villi (CV) was less than 2% of the mean normal control level and g.1946A > G and g.3670C > T mutations were demonstrated, as in the two previously affected children. After termination of pregnancy, TPP-I deficiency was confirmed in cultured CV cells and in the fetal skin fibroblasts. The expression of unequivocal TPP-I deficiency in CV demonstrates that enzyme assay is a reliable option for prenatal diagnosis of LINCL.

Aminopeptidases↗

The diagnostic performance of cytogenetic investigation in amniotic fluid cells and chorionic villi.

First-trimester chorionic villus sampling has not reached the popularity of second-trimester amniocentesis in prenatal cytogenetic diagnosis, in contrast to initial expectations. We investigated whether a difference in the diagnostic performances of cytogenetic investigation in amniotic fluid (AF) cells and chorionic villi in favour of AF-cells might justify this. Diagnostic performance was measured as laboratory failure rate, karyotype quality (G-band score, rate of follow-up samples, rate of wrong diagnoses), and karyotype representativity (rate of follow-up samples, rate of wrong diagnoses). From 1993-1999, 11 883 AF-samples were investigated (AF-cells). In chorionic villi, short term culture preparations solely were karyotyped from 1993-1996 (n=3499) (STC-villi), short and long-term culture preparations simultaneously provided a sufficient amount of tissue being available from 1997 onwards (n=1829) ((STC+LTC)-villi). Laboratory failure rates were the same after amniocentesis (0.40%) and chorionic villus sampling (0.50%). G-band scores (mean+/-SD) were equal in AF-cells (373+/-38.1) and LTC-villi (364+/-32.6) but significantly lower in STC-villi (311+/-34.6) (p=0.001). Follow-up sampling rates because of quality reasons were the same in AF-cells (0.14%), STC- villi (0.13%) and (STC+LTC)-villi (0.11%). Two wrong diagnoses turned up among AF-cells. Follow-up sampling rates because of representativity reasons differed significantly between AF-cells (0.10%), (STC+LTC)-villi (1.31%), and STC-villi (1.99%) (p<0.001). However, the ratios of the total numbers of follow-up samples and uncertain or abnormal cytogenetic results in STC, and (STC+LTC)-villi at cytogenetic risks > or =3% (0.132 and 0.160, respectively) were equal to that in AF-cells at risks <3% (0.155). Two wrong diagnoses were made in STC-villi. Diagnostic performance improved in the rank order of STC-villi, (STC+LTC)-villi and AF-cells. At cytogenetic risks > or =3%, (STC+LTC)-villi showed a diagnostic performance equal to that in AF-cells. This might justify a selective use of chorionic villus sampling.

Amniocentesis↗

Management of prenatally detected trisomy 8 mosaicism.

We report on ten pregnancies with trisomy 8 mosaicism. Nine cases were prenatally detected in chorionic villi (n=6), amniotic fluid (AF) cells (n=2) or fetal blood (FB) lymphocytes (n=1). Follow-up laboratory investigations showed confined placental mosaicism (CPM) or pseudomosaicism in eight cases. In one case with ultrasound abnormalities, trisomy 8 mosaicism was detected in FB cells although cultured AF cells showed normal cells only. Another case of mosaic trisomy 8 was prenatally missed; cytogenetic analysis of short-term cultured villi revealed a normal male karyotype, while postnatally, trisomy 8 mosaicism was detected in peripheral blood lymphocytes and skin fibroblasts of the affected child. These findings indicate the difficulties in the prenatal diagnosis of trisomy 8 mosaicism. When found in chorionic villi, it mostly represented CPM, while in a case of true fetal trisomy 8 mosaicism, the cytotrophoblast cells showed a normal karyotype. So, the cytotrophoblast compartment of chorionic villi is a poor indicator of the presence or absence of fetal trisomy 8 mosaicism. Follow-up investigations including amniocentesis and especially fetal blood sampling are required to come to a definite prenatal diagnosis of trisomy 8 mosaicism.

Amniocentesis↗

Fetal transcerebellar diameter and chromosomal abnormalities.

OBJECTIVE: To evaluate the association between chromosomal abnormalities and fetal cerebellar size. DESIGN: A retrospective cross-sectional study. METHODS: Ultrasound measurements of transcerebellar diameter, head and upper-abdominal circumference from 88 fetuses with chromosomal abnormalities were analyzed. Abnormalities included trisomy 21 ( n = 23), trisomy 18 ( n = 17), 'other numerical chromosomal abnormalities' ( n = 9), sex chromosomal abnormalities ( n = 9), mosaicism ( n = 12), balanced translocations ( n = 9) and unbalanced translocations ( n = 9). Multiple regression analysis was performed to compare transcerebellar diameters between the reference group and each of the subsets of chromosomal abnormalities and between trisomies 18 and 21. Also, in the latter two subsets, comparison of the transcerebellar diameter before and after 25 weeks of gestation was carried out. RESULTS: Fetal transcerebellar diameter was reduced in relation to gestational age but was normal when control was made for fetal size in all chromosomal subsets, except for balanced translocations. The transcerebellar diameter in trisomy 18 was significantly smaller than that in trisomy 21. No difference in cerebellar size was found when comparing the gestational age period before and after 25 weeks in each of these two subsets. CONCLUSIONS: A reduction in fetal transcerebellar diameter was demonstrated in all chromosomal abnormalities with imbalance of genetic material. Cerebellar hypoplasia was more severe in trisomy 18 than in trisomy 21. The degree of reduction in fetal transcerebellar diameter in these subsets seems to be independent of the time period during which the transcerebellar diameter measurement was performed.

Adult↗

Case of 45,X/46,XY mosaicism with non-mosaic discordance between short-term villi (45,X) and cultured villi (46,XY).

We report on a prenatally detected case of discordant non-mosaic karyotypes following chorionic villus sampling. A 45,X karyotype was found in cytotrophoblast cells and a 46,XY karyotype in mesenchymal core cells. A subsequent amniocentesis showed a true 45,X/46,XY mosaicism. Confirmatory studies, including fluorescence in situ hybridization (FISH) in various fetal and placental tissues as well as in the original villi preparations changed the presumed condition of generalized mosaicism with culture confined normality to that of generalized mosaicism with absolute concordance. This case underscores the importance of the investigation of both short-term and cultured villi preparations, the implementation of prenatal FISH studies, and the need for thorough follow-up investigation in cases of discrepant results.

Chorionic Villi Sampling↗

Congenital microcephaly detected by prenatal ultrasound: genetic aspects and clinical significance.

OBJECTIVE: The aim of this study was to analyze fetuses with prenatally diagnosed microcephaly including the nature of associated anomalies and the genetic-diagnostic implications. DESIGN: Retrospective study design. METHODS: A total of 30 fetuses with reliable dates and with prenatally diagnosed microcephaly as a common feature were analyzed. RESULTS: Microcephaly was diagnosed at a mean gestational age of 28 weeks. More than half of the fetuses were also small for gestational age. Five subsets of microcephaly emerged from this study: (1) isolated microcephaly (16.7%); (2) microcephaly due to holoprosencephaly (16.7%); (3) microcephaly associated with chromosomal disorders (23.3%); (4) microcephaly as part of a genetic syndrome (20.0%); and (5) microcephaly as part of multiple anomalies (23.3%). CONCLUSIONS: In 25 out of 30 infants microcephaly proved to be part of a complex problem, emphasizing the need of a meticulous search for structural anomalies and fetal karyotyping when biometric data are not according to gestational age. The etiologic heterogeneity and variability of microcephaly in genetic syndromes are among the more difficult issues in prenatal ultrasound in pregnancies either with an incidental finding of this anomaly, or in cases with a recurrence risk. The complex situations described in this study demonstrate the importance of follow up, post-mortem investigation and careful genetic counseling.

Abnormalities, Multiple↗

In-utero diagnosis of mucopolysaccharidosis type VII in a fetus with an enlarged nuchal translucency.

Mucopolysaccharidosis type VII was diagnosed prenatally during the first pregnancy of a Turkish consanguineous couple, following diagnostic work-up of an increased nuchal translucency detected by ultrasound at 13 weeks of gestation. Mucopolysaccharidosis type VII (MPS VII) or Sly syndrome is a rare autosomal recessive lysosomal storage disease, caused by the deficiency of the enzyme beta-glucuronidase. The most severe form of MPS VII manifests itself by non-immune fetal hydrops. Tests for the diagnosis of metabolic disorders, especially lysosomal diseases, are essential when the major causes of hydrops fetalis have been excluded. The presence of a beta-glucosidase deficiency, Gaucher's disease, in the infant of the patient's sister emphasizes the importance of a complete family history in consanguineous couples and the risk for several recessive diseases in some families.

Adult↗

First-trimester diagnosis of Morquio disease type A.

Since the introduction in 1990 of a novel fluorogenic substrate for galactose-6-sulphate sulphatase we have used this substrate for prospective prenatal diagnosis in 10 pregnancies at risk for Morquio disease type A. Chorionic villi were analysed in five cases. The results indicated an affected fetus in one pregnancy which represents the first case of first-trimester diagnosis of this disorder; heterozygosity was demonstrated in two cases. Following amniocentesis, two affected fetuses and one heterozygote were diagnosed. The results of the present prospective prenatal analyses confirm our previous retrospective studies and demonstrate the reliability and convenience of the 4-methylumbelliferyl substrate.

Amniocentesis↗

Accuracy of abnormal karyotypes after the analysis of both short- and long-term culture of chorionic villi.

We report in detail the cytogenetic results of 1838 consecutive chorionic villus samples with the availability of both short-term culture (STC-villi) and long-term culture (LTC-villi) preparations in 1561 cases (84.9%). A high degree of laboratory success (99.5%) and diagnostic accuracy (99.8%) was observed; in four cases of low mosaicism, all four associated with the final birth of a normal child, a small risk of uncertainty was accepted. The combined analysis of STC- and LTC-villi reduced follow-up amniocenteses by one-third in comparison with the analysis of STC-villi alone. We believe that the desired level of quality and accuracy of prenatal cytogenetics in chorionic villi can only be achieved when both STC- and LTC-villi are available. We conclude that CVS might then be the mode of prenatal diagnosis of first choice in pregnancies with a high (cytogenetic) risk.

Amniocentesis↗

Prenatal detection of trisomy 18 caused by isochromosome 18p and 18q formation.

We report on the prenatal detection and further genetic studies in a case of trisomy 18 caused by isochromosome 18p [i(18p)] and 18q [i(18q)] formation. The diagnosis was made by standard cytogenetic techniques in amniotic fluid cells and confirmed by fluorescence in situ hybridization. The formation of the isochromosomes cannot be explained by a single model; centromere misdivision and meiosis II nondisjunction without recombination or mitotic misdivision are the most likely mechanisms of formation as indicated by DNA analysis.

Adult↗