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[Prenatal diagnosis for chromosomal abnormality: time to change the Israeli policy].

Down syndrome is the most common serious chromosomal abnormality among live births. Safe, inexpensive, and accurate prenatal screening, with a high detection rate (DR) and low false positive rate (FPR) is needed for prevention. Second trimester screening, based on three maternal serum markers (free betaHCG, uE3, AFP) has a 59-75% DR with a 5% FPR. The addition of Inhibin-A to this panel (Quadruple test), increases DR to 70-85%. First trimester screening combining two serum markers (free betaHCG, PAPP-A), with ultrasound nuchal translucency (NT) has a 80-90% DR, allows reassurance or early diagnosis and pregnancy termination in a relatively simple and safe technique. Testing sequentially in both trimesters (NT, PAPP-A, then Quadruple markers), but withholding results until all markers are measured, allows a 92-94% DR with a low FPR, although the clinical and human advantages of early testing are lost. Three alternative approaches are presented in this review, which achieve a high DR and low FPR without this disadvantage. Based on recently published data, we propose a change in the current policy practiced in Israel whereby women above 35 are referred for invasive prenatal diagnosis paid by the government. Instead, awareness of modern screening methods should be enhanced and invasive diagnosis only offered to women whose risk based on screening exceeds an agreed cutoff. This would achieve better and safer prevention acceptable to a wide spectrum of ethnicities, religions and cultures in Israeli society, at a reasonable cost to the public health system in Israel.

Chorionic Gonadotropin, beta Subunit, Human↗

[Molecular cytogenetic studies of chromosomal abnormalities and disorders in nervous and mental diseases: search for biological markers for diagnosis].

Molecular cytogenetic and cytogenetic studies of chromosomal disorders in patients with nervous and mental disorders were conducted using currently available approaches, including fluorescence in situ hybridization (FISH) with an original collection of centromeric, telomeric, region-specific DNA probes. A novel in situ hybridization protocol for rapid (15-30 min) chromosomal detection procedure and directly fluoresceinated DNA probes are recommended for use in mental retardation and congenital malformations. Chromosomal abnormalities could be detected in postnatal cases with chromosomal structural rearrangements, aneuplodies of gonosomes (including mosaicisms) and autosomes (including marker chromosomes). Molecular cytogenetics (or FISH diagnosis) can be used when classical cytogenetic methods are insufficient. The authors' experience shows that FISH should be utilized only as an adjunctive test for classical cytogenetic studies when banding techniques are ineffective; cytogenetic methods should be utilized for the preclinical diagnosis of Rett's syndrome. Detection by original probes gives an additional possibility in FISH analysis. Molecular cytogenetic methods are shown to provide a rapid accurate approach to studying and diagnosing chromosomal anomalies and disorders in mental retardation with congenital malformations and Rett's syndrome in children and to exploring aneuploidies in the postmortem cell samples from schizophrenic patients.

Adult↗

Somatic chromosomal abnormalities in infertile men and women.

Infertility--the inability to achieve conception or sustain a pregnancy through to live birth--is very common and affects about 15% of couples. While chromosomal or genetic abnormalities associated with azoospermia, severe oligozoospermia or primary ovarian failure were of no importance for reproduction prior to the era of in vitro fertilization (IVF) and intracytoplasmic sperm injection (ICSI), advances in assisted reproductive techniques (ART) now enable many infertile couples to have children. These developments have raised the question of the genetic consequences of ICSI: concerns of the potential harm of the invasive procedure and concerns about the genetic risk. The infertile male and female definitely have an increased risk to carry a chromosomal abnormality. Detection of such an abnormality is of fundamental importance for the diagnosis of infertility, the following treatment, the evaluation of the risk for the future child and the appropriate management of the pregnancy to be obtained. Therefore, cytogenetic screening of both partners is mandatory prior to any type of ART. The present review is based on several surveys on male and female infertility and analyzes the types and frequencies of the different reported chromosome abnormalities according to the type of impairment of spermatogenesis and the type of treatment planned or performed. With regard to assisted reproductive techniques (especially ICSI) the main types of chromosomal abnormalities are discussed and their potential risks for ICSI. If available, reported cases of performed ICSI and its outcome are presented. The detection of an abnormal karyotype should lead to comprehensive genetic counselling, which should include all well-known information about the individual type of anomaly, its clinical relevance, its possible inheritance, the genetic risk of unbalanced offspring, and the possibilities of prenatal diagnosis. Only this proceeding allows at-risk couples to make an informed decision regarding whether or not to proceed with ART. These decisions can be made only when both partners have clearly understood the genetic risks and possible consequences when ART is used.

Chromosome Aberrations↗

Abnormal chromosome 9 in a neonate program. Report of three cases.

We describe three cases with abnormal chromosome 9. Patient 1 shows translocation in a homologous chromosome, with a karyotype of 46,XX,t(9;9)(9pter----cen----9pter; 9qter----cen::9q13----9qter), 1qh+. This case has a variety of anomalies, including brain anomalies. Patient 2 shows a partial trisomy 9p with a karyotype of 47,XY,+del(9)(pter----q11:). The patient has the typical clinical features of 9p trisomy syndrome. Patient 3 is unique because of partial 9p tetrasomy mosaicism without phenotypic abnormalities; the karyotype is mos 46,XY/47,XY,+dic(9)(pter----cen----q21::q21----cen----pter).

Chromosome Aberrations↗

Multicolor fluorescence in situ hybridization (SKY) in mycosis fungoides and Sézary syndrome: search for recurrent chromosome abnormalities.

Cutaneous T-cell lymphoma (CTCL) is a clonally derived lymphoproliferative disorder that preferentially involves the skin. The two major clinical expressions of CTCL, mycosis fungoides (MF) and Sézary syndrome (SS), have poorly understood pathogenesis. Chromosome abnormalities, mostly complex karyotypes, are seen in about 50% of patients with MF/SS, and there have only been a few instances of recurrent rearrangements. We analyzed 19 blood samples from patients with MF/SS with cytogenetics and multicolor FISH (SKY) to better describe the complex karyotypes and search for recurrent abnormalities or breakpoints. Comparison of phytohemagglutinin (PHA)-stimulated cultures versus a combination of interleukin 2 plus interleukin 7 showed similar efficiency in detecting abnormal clones; however, the PHA cultures yielded more analyzable metaphases. Nine of 19 patients (47%) had an abnormal karyotype. The most frequent abnormalities, in 7 of 9 cases, involved chromosome 10; followed by chromosome 6, in 6 of 9 cases; chromosomes 3, 7, 9, 17, and 19, in 5 of 9 cases; chromosomes 1 and 12, in 4 of 9 cases; and chromosomes 8, 11, and 13, in 3 of 9 cases. Most abnormalities were structural. Recurrent rearrangements included deleted chromosomes 6 and 13, in three cases each, and recurrent breakpoints at 1p32-36, 6q22-25, 17p11.2-13, 10q23-26, and 19p13.3, occurring in three or more cases. One patient had a pseudodicentric translocation between the short arms of chromosomes 8 and 17, confirmed by dual-color FISH and interpreted as psu dic(17;8)(p11.2;p11.2). Two patients with SS reported in the literature seem to have a similar translocation. If confirmed, a psu dic(17;8) could be the first recurring translocation detected in at least three patients with MF/SS.

Aged↗

Chromosome abnormalities in 150 couples with multiple spontaneous abortions.

One hundred fifty consecutive couples with recurrent abortions with or without fetal deaths, malformations, or healthy infants were evaluated cytogenetically with a G-band method. Seven couples (4.7%) showed a chromosome aberration in one partner (5 translocations, 1 inversion, and 1 gonosomal mosaicism). Of the couples with a pure abortion history, 2.9% had a chromosomal abnormality. A high incidence of chromosomal rearrangements in the groups of couples with abortions plus fetal deaths or malformations was found. In contrast to other reports, a high incidence of cytogenetic abnormalities was also found in couples with abortions and healthy infants. Chromosome analysis is advocated as a primary tool in the evaluation of couples with repetitive fetal wastage.

Abortion, Habitual↗

[Chromosomal abnormalities in acute myeloid leukaemias].

Cytogenetic studies of acute myeloid leukaemias reveal non-random chromosomal abnormalities in 50-70% of karyotypes. Some are correlated with morphological and immunological parameters and constitute a prognostic factor independent of the other factors of risk: favourable for acute leukaemias myeloid with translocations t(8;21), t(15;17) and inversion or translocation of the chromosome 16, inv(16)/t(16;16), poor with deletion of the long arm of chromosome 5 del(5q), rearrangement of the 11q23 region and complex karyotypes. The distribution of the anomalies depends on the age: 11q23 and t(8;21) more frequent for the child, del(5q) and complex anomalies more frequent for the adult. The karyotypes are essential for the diagnosis, the follow-up of the patients and the evaluation of the relapse. It plays a fundamental part in the detection of new genes and their partners implied in the leucemogenese. The knowledge of their function is essential to open new therapeutic ways.

Chromosome Aberrations↗

Chromosome abnormalities in cementifying fibroma.

Cementifying fibroma is the most frequent benign fibro-osseous odontogenic tumor. We found chromosome abnormalities in a second case of this type of benign tumor. The chromosome changes in both cases are different. The chromosome bands involved in our case have not been described before in any benign fibroma so far reported.

Adolescent↗

Chromosome abnormalities in erythroleukemia.

Erythroleukemia (EL) is a heterogeneous disease in terms of cell type affected, chromosome abnormalities found in the malignant clone, and clinical course. In this article, cases of erythroid EL from the recent medical literature are reviewed using cytogenetic criteria to distinguish such cases from those of myeloid EL. Although most patients with erythroid EL were elderly men, 20% of the cases occurred in the under-3 age group, where boys and girls were equally affected. Chromosomes 5 and 7 were found to be lost or partially deleted in two thirds of the adult patients only, but not in the pediatric patients; this suggests that EL is associated with cumulative mutagen exposure in adult patients only. It is proposed that cytogenetic criteria may be of use prospectively in distinguishing patients with erythroid EL from those with myeloid EL.

Adult↗

Additional chromosomal abnormalities and variability of BCR breakpoints in Philadelphia chromosome/BCR-ABL-positive acute lymphoblastic leukemia in Taiwan.

From 1986 to 1998, 26 (23%) of 114 adult acute lymphoblastic leukemia (ALL) patients and 11 (4%) of 328 pediatric patients were found to have Philadelphia (Ph) chromosome. In the 30 patients with available data at diagnosis, 18 (60%) had extra-chromosomal abnormalities. They included 1q duplication (5/18, 28%), supernumerary Ph chromosome (4/18, 22%), 9p abnormalities (3/18, 17%), 7q deletion/monosomy 7 (3/18, 17%), trisomy 19 (1/18, 6%), and trisomy 8 (1/18, 6%). Excluding those with specific cytogenetic changes, only one patient had hyperdiploid karyotype with more than 50 chromosomes. The incidence of 1q duplication was higher and that of hyperdiploidy was lower in this study than has been previously reported. There was no prognostic implication of these additional cytogenetic abnormalities. With fluorescence in situ hybridization (FISH) and reverse transcription-polymerase chain reaction (RT-PCR), 14 (27%) of 53 unselected adult ALL patients and 2 (5%) of 38 unselected pediatric patients were BCR-ABL-positive, including one adult and two children without Ph chromosome. The BCR-ABL fusion genes/transcripts were also present in all other 16 selected Ph-positive ALL patients. The BCR-ABL fusion subtypes were determined in all these 32 patients: 91% (11/12) childhood cases showed m-type fusion gene while 45% (9/20) adult ones did so (P = 0.0083). The clinical outcome was similar between the two groups of patients with m-type and M-type BCR-ABL. In conclusion, both cytogenetic and molecular studies are very helpful for identifying the subgroup of ALL patients with Ph/BCR-ABL. The additional cytogenetic abnormalities and subtypes of BCR-ABL fusion genes/transcripts had no significant implications in this group of patients.

Actins↗

Multiple uncommon chromosome abnormalities in acute myelomonocytic leukemia (AMMoL-M4) with rapid progression.

We observed multiple uncommon chromosome abnormalities resulting in marker formation in a patient with AMMoL-M4. The breakpoints of the aberrations corresponded to common "cancer breakpoints" described by Mitelman and also--to localisation of some protooncogenes. The activation of these multiple protooncogenes in the described case might result in rapid progression of the disease and in the resistance to therapy.

Adult↗

Chromosomal abnormalities detected after an abnormal ultrasound in pregnancy.

Improvements in ultrasound technology have resulted in an increasing number of requests for prenatal chromosome testing because of fetal abnormalities detected in utero. Between January 1990--January 1991, 388 tissue samples were referred to our laboratory for cytogenetic analysis, of which 202 were amniotic fluids samples, 157 chorionic villus biopsies and 29 fetal blood specimens. Of these 54 were referred for fetal abnormalities detected prenatally on high resolution ultrasound. Chromosomal analysis was successful in 50 cases, and included 6 (12%) chromosomally abnormal fetuses: 2 trisomy 21, 2 trisomy 18, one 45,X and one unbalanced translocation. The maternal age for three of the four cases of autosomal trisomy were below 35 years (the cut-off for amniocentesis for advanced maternal age). In contrast, 273 prenatal chromosome studies performed for advanced maternal age (AMA) produced only 4 (1.5%) chromosomally abnormal fetuses. These abnormalities detected on ultrasound indicate a significant population of fetal chromosomal aberrations which would otherwise not be detected prenatally.

Adult↗

Agenesis of the lung associated with a chromosome abnormality (46,XX,2p+).

We describe a patient with agenesis of the left lung who also had a chromosome abnormality, probably representing a duplication of the distal part of the upper arm of chromosome 2. In addition to this finding, the existence of familial cases of lung agenesis indicate that further studies are required for better understanding of the genetic aspects of this condition.

Chromosome Aberrations↗

[Preimplantation genetic diagnosis of chromosome abnormality by fluorescence in-situ hybridization].

OBJECTIVE: To perform preimplantation genetic diagnosis (PGD) of chromosome abnormality using fluorescence in-situ hybridization (FISH). METHODS: Ten couples were presented for preimplantation genetic diagnosis. They had a total of 10 oocyte pick-up cycles. The collected oocytes were inseminated by intracytoplasmic sperm injection. PGD was carried out using cleavage-stage (day 3) embryo biopsy, fluorescence in-situ hybridization, and day 4 embryo transfer. RESULTS: Ten oocyte pick-up cycles yielded 158 oocytes. Among the 94 embryos obtained, 54 embryos were biopsied and FISH analyses were performed for 51 blastomeres. Twenty-four embryos were transferred on the fourth day. There were 4 clinical pregnancies: 3 infants have been born, and 1 couple had ectopic pregnancy. CONCLUSION: PGD is a valuable method to prevent the high risk of spontaneous miscarriages and conceiving chromosomally unbalanced offspring.

Abortion, Spontaneous↗

Chromosomal abnormalities in leiomyosarcomas.

Thirty-eight tumors from 30 patients diagnosed as leiomyosarcoma were cytogenetically assessed after short term culture. The specimens were obtained from the retroperitoneum, gastrointestinal tract, and extremities. Chromosomal abnormalities were present in 18 tumors from 13 patients; 15 tumors had clonal changes, whereas 3 tumors had numerous nonclonal changes. Ten tumors from 10 patients had normal karyotypes and no results were obtained in 10 other tumors from 7 patients. Of the tumors with clonal chromosomal aberrations, 4 had near-diploid (3 hypo- and one hyperdiploid) modes, 8 were polyploid, and 3 were bimodal. No specific karyotypic change appeared to characterize the leiomyosarcomas, although involvement of some chromosomes appeared more frequent than others. A comparison of our findings with those reported in the literature revealed certain consistent structural rearrangements involving chromosomes 1, 7, 10, 13, and 14 at bands 1p36, 1p32, 1p13, 1q32, 7p11.1-p21, 7q32, 10q22, 13q14, and 14p11, respectively. Other bands less frequently rearranged were 3p13-p22, 3q21, 4q13-q23, 6q15-q21, 7q11.2-q22, 12q13-q14, 17q12-q25, 19q13.3-q13.4, and 20q12-q13.1. Numerical changes included recurrent loss of chromosomes 4, 9, 14, 15, 16, 18, 21, and 22. Identification of the abnormalities of these chromosomes is important in that it may predict the existence of oncogenes, tumor suppressor genes, and/or growth factor genes at these sites. Subsequent molecular analysis might then lead to the identification of the genes involved and ultimately to a better understanding of the pathogenesis of leiomyosarcomas.

Adult↗

Chromosomal abnormalities: trisomy 18, trisomy 13, deletions, and microdeletions.

The birth of an infant with a chromosomal abnormality such as trisomy 18, 13, Wolf-Hirschhorn (4p-) syndrome, Cri-du-chat (5p-) syndrome, and the microdeletion syndromes creates a stressful and devastating experience for families. Many of these disorders have severe consequences encompassing major malformations and mental retardation. With increasing diagnostic accuracy, clinicians can now appreciate the wide variability and natural history of these disorders. Although many of these infants do not survive the neonatal period, others do. Neonatal nurses have the opportunity to assist families in these situations by providing anticipatory guidance and care.

Chromosome Aberrations↗