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Correlation between rare chromosomal abnormalities and prenatal ultrasound findings.

Our objective was to examine ultrasound findings with outcomes in cases of rare chromosomal abnormalities diagnosed during pregnancy. Results of cytogenetic studies obtained from amniocenteses and chorionic villus samplings (CVS) from 1994-2000 were reviewed. Only those examples of rare chromosomal abnormalities with little information on the associated outcome were included. Cases of autosomal trisomy (13, 18, and 21), sex chromosome aneuploidy, and reciprocal or Robertsonian translocations were excluded. Ultrasound findings and outcomes were reviewed. In all, 8,642 procedures of amniocenteses and 557 of CVS were performed; 21 cases met the inclusion criteria. Parental karyotypes were obtained for 19 couples and the karyotypic abnormalities were de novo in 13. Abnormal ultrasound findings were present in 14 pregnancies, with the following outcomes: seven underwent dilatation and evacuation (D&E), with abnormal findings in two (although examination was limited by fragmentation); one medical termination with micrognathia and low-set ears; one fetal demise; one neonatal demise; three surviving neonates with abnormalities (one each with congenital kyphosis, hydronephrosis, and hypotonia), and one newborn was normal. There were seven patients without abnormal ultrasound findings with the following outcomes: three underwent D&E, with abnormal findings in two, one child with a colobomatous optic nerve, and two apparently normal infants. Follow-up was not available in one patient. We conclude that when rare karyotypes and ultrasound abnormalities are present, poor outcomes are likely. Even with normal ultrasound findings, abnormalities may be present. These data may assist in counseling patients when testing reveals such chromosomal abnormalities.

Adult↗

Relationship of gene expression and chromosomal abnormalities in colorectal cancer.

Several studies have verified the existence of multiple chromosomal abnormalities in colon cancer. However, the relationships between DNA copy number and gene expression have not been adequately explored nor globally monitored during the progression of the disease. In this work, three types of array-generated data (expression, single nucleotide polymorphism, and comparative genomic hybridization) were collected from a large set of colon cancer patients at various stages of the disease. Probes were annotated to specific chromosomal locations and coordinated alterations in DNA copy number and transcription levels were revealed at specific positions. We show that across many large regions of the genome, changes in expression level are correlated with alterations in DNA content. Often, large chromosomal segments, containing multiple genes, are transcriptionally affected in a coordinated way, and we show that the underlying mechanism is a corresponding change in DNA content. This implies that whereas specific chromosomal abnormalities may arise stochastically, the associated changes in expression of some or all of the affected genes are responsible for selecting cells bearing these abnormalities for clonal expansion. Indeed, particular chromosomal regions are frequently gained and overexpressed (e.g., 7p, 8q, 13q, and 20q) or lost and underexpressed (e.g., 1p, 4, 5q, 8p, 14q, 15q, and 18) in primary colon tumors, making it likely that these changes favor tumorigenicity. Furthermore, we show that these aberrations are absent in normal colon mucosa, appear in benign adenomas (albeit only in a small fraction of the samples), become more frequent as disease advances, and are found in the majority of metastatic samples.

Adenoma↗

Spectral karyotyping study of chromosome abnormalities in human leukemia.

Chromosomal analysis plays an important role in the diagnosis, treatment and prognosis of human leukemia. Currently, the GTG-banding technique (G-banding) is the most commonly used diagnostic method in clinical cytogenetics. G-banding analysis of subtle chromosomal rearrangements or complex karyotypes with multiple markers can be inadequate because of poor chromosome morphology and/or an insufficient yield of analyzable metaphases. Fluorescence in situ hybridization (FISH) is a highly sensitive and specific method to detect chromosomal alterations. Conventional FISH is used optimally in instances where only one or a few abnormalities are investigated. Spectral karyotyping (SKY), a novel cytogenetic technique, has been developed to unambiguously display and identify all chromosomes at one time using a spectrum of 24 different colors. This report presents the use of SKY for examination of the entire karyotype in specimens with complex chromosomal abnormalities from three leukemia patients. Conventional cytogenetic analysis (G-banding) showed complex hyperdiploid clones with multiple markers in each case. SKY was able to clarify and identify additional cryptic chromosomal translocations [e.g., t(2;10), t(3;10), t(5;7), t(7;18), t(9;17), t(10;12), t(13;16)] insertions [e.g., ins(17;9), ins(20;Y)], duplications [e.g., i(8)(q10), dup(4)(q31q35)] and marker chromosomes in each case. This study demonstrates that the combination of SKY and G-band techniques results in a more complete characterization of the complex chromosomal aberrations seen in leukemia.

Bone Marrow Cells↗

Chromosomal abnormalities associated with infertility.

From a population of 515 subfertile couples and 119 women with amenorrhea, 38 patients were karyotyped because of specific signs and symptoms suggestive of chromosomal abnormality. The indications for karyotyping included primary amenorrhea, secondary amenorrhea with gonadal failure before 35 years of age, stature of less than 147.5 cm, azoospermia with eunuchoidism, and personal or family history of more than 2 spontaneous abortions or more than 2 severely abnormal children. In addition, 19 patients from the same subfertile population were selected randomly for karyotyping to serve as controls. Using banding techniques, chromosomal abnormalities were found in 18 of the 38 specifically selected individuals, whereas no abnormality was found among those randomly selected. Three of the 18 patients had chromosomal abnormalities not previously described; their karyotypes were 46,XY/48,XY,+8,+21; 46,X,inv dup(Xq)/q26 leads to q21); and 46,XY,t(9;20)(q22;q12).

Abortion, Spontaneous↗

Fetal head-to-trunk volume ratio in chromosomally abnormal fetuses at 11 + 0 to 13 + 6 weeks of gestation.

OBJECTIVE: To determine the pattern of early growth disturbance in chromosomally abnormal fetuses by comparing the volume of the fetal head to that of the trunk. METHODS: The fetal trunk and head volume was measured using three-dimensional (3D) ultrasound in 145 chromosomally abnormal fetuses at a median gestational age of 12 (range, 11 + 0 to 13 + 6) weeks. The head volume was measured separately and then subtracted from the total head and trunk volume to obtain the volume of the fetal trunk. The head-to-trunk ratios were then calculated and the Mann-Whitney U-test was used to determine the significance of differences from 500 chromosomally normal fetuses. RESULTS: The fetal head volume for crown-rump length (CRL) was significantly smaller than normal in trisomy 21, trisomy 13 and Turner syndrome (P < 0.001, P < 0.001 and P = 0.001, respectively), whereas no significant differences were found in trisomy 18 and triploidy (P = 0.139 and P = 0.070, respectively). The fetal trunk volume for CRL was significantly smaller in all chromosomal abnormalities (P < 0.001) except Turner syndrome (P = 0.134). The head-to-trunk ratio for CRL was significantly larger in trisomy 18, trisomy 13 and triploidy (P < 0.001), but normal in trisomy 21 (P = 0.221) and Turner syndrome (P = 0.768). CONCLUSIONS: In trisomy 21 and Turner syndrome, the growth deficit was symmetrical with the head and trunk being equally affected, whereas in triploidy and trisomies 18 and 13 there was asymmetrical growth restriction with the trunk being more severely compromised than the head.

Adolescent↗

Stepwise development of chromosomal abnormalities in angioimmunoblastic lymphadenopathy.

Cytogenetic studies of lymphoproliferative diseases, such as angioimmunoblastic lymphadenopathy (AILD), may provide a clue to the understanding of tumor development. Angioimmunoblastic lymphadenopathy may evolve from a nonmalignant lymphoproliferation into a peripheral T-cell lymphoma or even into a high-grade B-cell lymphoma and thus offers the chance to observe cytogenetic changes during lymphoma development. We report the cytogenetic findings in 24 cases of AILD. They are discussed together with 18 previously published cases from the same series. A striking feature was that unrelated chromosome abnormalities, both clonal and nonclonal, were frequently observed. Eighteen of 25 cases with aberrant clones show trisomy 3 (a characteristic chromosome abnormality in peripheral T-cell lymphoma), trisomy 5, or both. This finding provides cytogenetic evidence that these cases are definitely peripheral T-cell lymphomas. From the results of the 42 cases, hypotheses of stepwise evolution of the chromosome abnormalities in AILD are deduced: the first step is the appearance of chromosome abnormalities in different cells because of a genetic instability. At this time, clonal proliferation of T cells was already demonstrated by the rearrangement of T-cell receptor genes. As a second step, chromosomally aberrant clones become established. A cytogenetically detectable monoclonal proliferation represents the third step.

Aged↗

Clinical relevance of chromosome abnormalities in non-small cell lung cancer.

The relationship between clonal chromosome alterations and various clinical parameters was evaluated in 70 patients with non-small cell lung cancer (NSCLC) for whom detailed karyotypic assessment was possible. Included in the analysis are karyotypes of 63 previously published cases and seven new NSCLCs. Clinical features investigated were diagnosis, tumor stage and grade, gender, smoking history measured in pack years, and survival. Certain chromosome abnormalities were significantly associated with histologic subtype, tumor grade, stage, and prognosis. Rearrangements involving chromosome arms 2p and 3q were more common in squamous cell carcinoma (SCC) than in adenocarcinoma (ADC). Loss of 3p was observed more often in SCC. Gain of 7p was more frequent in ADC. Rearrangement of 17p was associated with a lower tumor grade. Rearrangement of Xp and loss of chromosome 12 or 22 were each associated with higher tumor stage. Rearrangement of 3p or 6q was correlated with a better survival outlook. In contrast, loss of chromosomes 4 or 22 portended a poor prognosis. Finally, an increased number of marker chromosomes was observed in patients having a higher number of pack years. These data indicate that chromosome abnormalities can have clinical and pathologic significance in NSCLC.

Adult↗

10p- syndrome associated with multiple chromosomal abnormalities.

A karyotype with six de novo autosomal abnormalities in chromosomes 2,4,9,10,12, and 13 was identified in a 7-year-old boy with mental retardation and other minor malformations. The G- and C-banding techniques revealed an equilibrated translocation between autosomes 2 and 4 and between autosomes 9 and 13. One chromosome 10 has lost genetic material from its short arms, probably because of an interstitial deletion. An unidentified chromosomal fragment has become inserted in the long arms of an autosome 12. The G bands demonstrate that genetic material inserted in the autosome 12 is not the genetic material deleted from the autosome 10. The propositus presents clinical features similar to the reported cases with 10p- syndrome. Nevertheless it is not possible to establish the influence of the genetic material inserted in autosome 12 on the propositus' phenotype.

Child↗

Correlation of chromosome abnormalities with laboratory features and clinical course in B-cell chronic lymphocytic leukaemia.

141 patients with B-cell chronic lymphocytic leukaemia (B-CLL) have been studied for a minimum of 12 months and a maximum of 25 years. 30 of 133 patients (32.5%) had greater than 10% FMC7 positive peripheral blood lymphocytes and 19 of 131 patients (14.5%) had a serum or urinary paraprotein. At presentation 88 patients were stage A0, 18 A1, 18 A2, 11 B and six C. 44 (31%) had progressive disease and 42 (30%) died during the study period. 63 patients had a normal karyotype, 75 a clonal abnormality and in three no metaphases were obtained. The finding of a complex karyotypic abnormality was significantly associated with lambda surface phenotype (P less than 0.01), the presence of greater than 10% FMC7 positive cells (P less than 0.025), and the presence of a paraprotein (P = 0.025). Patients whose leukaemic cells had a complex karyotype and those with structural abnormalities of chromosomes 14 and 6 required treatment earlier than those with a normal karyotype.

Aged↗

Preimplantation genetic diagnosis of chromosomal abnormalities by multicolour fluorescence in situ hybridisation.

Preimplantation genetic diagnosis (PGD) is an early diagnosis of genetic disorders, prior to the onset of pregnancy. PGD incorporates the latest techniques in assisted reproduction and molecular genetics. Embryos or oocytes are biopsied during culture in vitro and genetic analysis is carried out on the blastomeres or polar bodies. Embryos shown to be free of the genetic disease under investigation are transferred to the uterus. Multicolour fluorescence in situ hybridisation (FISH) is used to diagnose numerical and certain structural abnormalities of chromosomes in the embryo. The common probes used are for chromosomes 13, 18, 21, X and Y. FISH can also be used for PGD of translocations, when one of the parents is a carrier. PGD was carried out recently in 4 cases using multicolour FISH. In one of the embryos, trisomy 18 was detected. Tetraploidy was seen in another embryo. Only chromosomally normal embryos were transferred back to the uterus. Care has to be taken while interpreting FISH signals as the signal may be split, diffused, superimposed or in a different focus.

Blastomeres↗

Cytochalasin B induces abnormal chromosome segregation in Friend erythroleukaemia cells.

Friend erythroleukaemia cells were made binucleate by brief exposure to cytochalasin B (CB). The binucleate cells were then allowed to grow in the absence of the CB. They produced pseudotetraploid derivatives which subsequently showed considerable variation in chromosome number. Cells with abnormal chromosome numbers failed to form clones, and disappeared from the culture. This is in marked contrast to previously reported stable pseudotetraploid cells arising in baby hamster kidney (BHK) cells after CB treatment.

Animals↗

Amplification of cyclin D1 in squamous cell carcinoma of the head and neck and the prognostic value of chromosomal abnormalities and cyclin D1 overexpression.

BACKGROUND: Abnormalities of chromosome band 11q13 are frequent in squamous cell carcinoma of the head and neck (SCCHN). The oncogene CCND1 is located at 11q13 and encodes cyclin D1, a cell cycle-regulating protein. The authors investigated the clinical relevance and associations between amplification and overexpression of cyclin D1 and 11q13 rearrangements. METHODS: The study involved two series of patients. In Series 1, overexpression of cyclin D1 and 11q13 rearrangements, assessed by immunohistochemistry and cytogenetics, respectively, were compared with clinical data in 75 patients with SCCHN. Patients were monitored for at least 18 months or until death. In another 23 patients (Series 2), the authors investigated the association between DNA amplification (by slot blot hybridization), overexpression of cyclin D1, and cytogenetics. RESULTS: In Series 1, 9 of 75 tumors (12%) had 11q13 aberrations, 6 of which manifested elevated expression of cyclin D1. Patients with tumors strongly positive for cyclin D1 (n = 9) and those with tumors showing 11q13 rearrangements had poorer survival (P = 0.047 and 0.005, respectively). However, the correlation between these two variables was weak (P = 0.12). In Series 2, 17 of 23 tumors (74%) showed elevated cyclin D1 protein expression, and 6 of these showed gene amplification as well. Of these six, only one revealed 11q13 rearrangements. CONCLUSIONS: Overexpression of cyclin D1 and 11q13 rearrangements are independent prognostic factors for SCCHN. In general, DNA amplification results in overexpression of cyclin D1, but additional genetic mechanisms are involved in the deregulation. Furthermore, oncogenes at 11q13 besides CCND1 may be involved in the tumorigenesis.

Adult↗

Fetal facial defects: associated malformations and chromosomal abnormalities.

During an 8-year period, facial defects were observed in 146 (7%) of the 2,086 fetuses that underwent karyotyping in our unit because of fetal malformations and/or growth retardation. Chromosomal abnormalities were detected in 37 of 56 (66%) fetuses with micrognathia, in 10 of 13 (77%) with macroglossia, in 31 of 64 (48%) with cleft lip and palate, in 5 of 11 (45%) with severe hypotelorism or cyclops, and in 6 of 19 (32%) with nasal hypoplasia, proboscis or single nostril. Macroglossia was mainly associated with trisomy 21, micrognathia with trisomy 18 and triploidy, facial cleft with trisomies 13 and 18, and ocular or nasal defects with trisomy 13. In all chromosomally abnormal fetuses with facial defects, there were additional multisystem defects, and the pattern of these malformations was compatible with the type of the underlying chromosomal abnormality. In the total series of 2,086 fetuses with malformations and/or growth retardation, there were 31 with trisomy 13, 83 with trisomy 18 and 69 with trisomy 21; facial defects were found in 71, 36 and 14% of these fetuses, respectively.

Abnormalities, Multiple↗

Diagnostic and prognostic significance of chromosome abnormalities in marrow and mitogen response of lymphocytes of acute nonlymphocytic leukemia.

Chromosomes of bone marrow from 28 patients with acute nonlymphocytic leukemia (ANLL) (26 with AML, 2 with AMMoL), 19 of whom had chromosome abnormalities, were studied; 11 cases exhibited previously unreported karyotypic abnormalities. The marrows of two cases had 8-21 translocations associated with an iso-X chromosome in the female patient and with 9q13- and a missing Y in the male patient. Usually, AML patients with a 8-21 translocation have been considered to have a good prognosis; however, our cases had rather short survival times. Therefore, the prognosis of AML with an 8-21 translocation but associated with other abnormalities is still not clear. Centromere spreading (CS), which was originally reported in marrow cells of megaloblastic anemia (B12 and folic acid deficiency), was detected in leukemic cells, disappeared during remission, and reappeared on relapse. These findings suggest that CS may be a new type of abnormality in AML. In two patients with atypical hypoplastic anemia and hemolytic anemia, chromosome abnormalities were detected at the anemic stage. One case with CS was associated with atypical hypoplastic anemia and developed AML after 1 year; the other with 48,XY,+i(1q),+3,/12 and -14 had hemolytic anemia and developed AMMoL 3 weeks later. Interestingly, identical clones were detected both before and after the clinical diagnosis of leukemia. These cases strongly support the concept that some chromosome abnormalities precede the clinical manifestations of leukemia. The present study also revealed that lymphocytes in ANLL respond poorly to PHA in the presence of high numbers of blasts but do respond well to mitogens during remission. Therefore, the response of lymphocytes to PHA may serve as one criterion for determining remission.

Adult↗