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C M Ogilvie

Publications and source records attributed to C M Ogilvie.

At least 19 recordsLinked to original sources

Development and implementation of a new rapid aneuploidy diagnostic service within the UK National Health Service and implications for the future of prenatal diagnosis.

BACKGROUND: Prenatal diagnosis for chromosome abnormality is routinely undertaken by full karyotype analysis of chromosomes from cultured cells; pregnant women must wait on average 13-14 days for their results. Autosomal trisomies, which account for around 80% of significant abnormalities, can be detected by quantitative fluorescence (QF) PCR. We report on the development and implementation of this technique as the first such routine service within a diagnostic department of the UK National Health Service (NHS). METHODS: We designed a "one-tube test" comprising four primer pairs for polymorphic tetranucleotide repeat sequences on chromosome 21, four primer pairs for sequences on chromosome 18, three primer pairs for sequences on chromosome 13, and one primer pair to identify the sex chromosomes. All prenatal samples received by our NHS diagnostic department between April, 2000, and April, 2001, were tested. After DNA extraction, PCR amplification was done and the products separated on a capillary-based genetic analyser; the results were interpreted with dedicated software. Follow-up karyotype analysis was done on all samples. FINDINGS: 1148 amniotic fluid samples, 188 chorionic villus samples, and 37 fetal tissue samples were tested; the amplification failure rate was zero with our current protocol. QF-PCR results were obtained and reported on 1314 (98%) of the prenatal samples; the remaining 22 (2%) were uninformative because of maternal-cell contamination. One case of mosaicism in a chorionic villus sample, and two cases indicating somatic expansion of a tetranucleotide repeat were found. No false positive or false negative results were obtained. The mean reporting time for the last 4 months of data collection was 1.25 working days. INTERPRETATION: QF-PCR aneuploidy testing is an efficient and accurate technique for the detection of autosomal trisomies in prenatal samples. Implementation of this service has led to the rapid diagnosis of abnormalities and early reassurance for women with normal results.

Amniocentesis↗

Velopharyngeal incompetence and chromosome 22q11 deletion.

Chromosome 22q11 deletion gives rise to various phenotypes, including cardiac malformations, velopharyngeal abnormalities, absent thymus, and neurological defects. We assessed, in a prospective study, chromosome 22q11 deletion in 50 of 144 patients with velopharyngeal incompetence in the absence of overt clefting. 18 (12.5% of the whole cohort and 36% of patients tested for the deletion) had the 22q11 deletion. This frequency differs from an estimated population prevalence of 0.025% and suggests a need for screening for the 22q11 deletion in these patients.

Adolescent↗

Successful pregnancy outcomes after preimplantation genetic diagnosis (PGD) for carriers of chromosome translocations.

Reciprocal translocations are found in about 1 in 500 people, whereas Robertsonian translocations occur with a prevalence of 1 in 1000. Balanced carriers of these rearrangements, although phenotypically normal, may present with infertility, recurrent miscarriage, or offspring with an abnormal phenotype after segregation of the translocation at meiosis. Once the translocation has been identified, prenatal diagnosis can be offered, followed by termination of pregnancies with chromosome imbalance. Couples who have suffered repeated miscarriage or those who have undergone termination of pregnancy as a result of the translocation carrier status of one partner are looking increasingly to preimplantation genetic diagnosis (PGD) as a way of achieving a normal pregnancy. Similarly, infertile couples in which one partner is a translocation carrier may request PGD to ensure transfer of normal embryos after in vitro fertilization. Translocation PGD has been applied successfully in several centres worldwide and should now be considered as a realistic treatment option for translocation carriers who do not wish to trust to luck for a successful natural outcome.

Abortion, Spontaneous↗

Robertsonian translocations--reproductive risks and indications for preimplantation genetic diagnosis.

BACKGROUND: Robertsonian translocations carry reproductive risks that are dependent on the chromosomes involved and the sex of the carrier. We describe five couples that presented for preimplantation genetic diagnosis (PGD). METHODS: PGD was carried out using cleavage-stage (day 3) embryo biopsy, fluorescence in-situ hybridization (FISH) with locus-specific probes, and day 4 embryo transfer. RESULTS: Couple A (45,XX,der(14;21)(q10;q10)) had two previous pregnancies, one with translocation trisomy 21. A successful singleton pregnancy followed two cycles of PGD. Couple B (45,XX,der(13;14)(q10;q10)) had four miscarriages, two with translocation trisomy 14. One cycle of PGD resulted in triplets. Couple C (45,XX,der(13;14)(q10;q10)) had four years of infertility; two cycles were unsuccessful. Couple D (45,XY,der(13;14)(q10;q10)) presented with oligozoospermia. A singleton pregnancy followed two cycles of PGD. Couple E (45,XY,der(13;14)(q10;q10)) had a sperm count within the normal range and low levels of aneuploid spermatozoa. PGD was therefore not recommended. No evidence for a high incidence of embryos with chaotic or mosaic chromosome complements was found. CONCLUSIONS: For fertile couples, careful risk assessment and genetic counselling should precede consideration for PGD. Where translocation couples need assisted conception for subfertility, PGD is a valuable screen for imbalance, even when the risk of viable chromosome abnormality is low.

Adult↗

Cysticercosis of the triceps--an unusual pseudotumor: case report and review.

Cysticercosis is a disease caused by encysted larvae of the tapeworm Taenia solium. Most muscular disease presents with central nervous system involvement or multiple cysts or both. The authors report a 25-year-old woman with a rare single muscle cyst presenting as a tender hard triceps mass. Results of clinical examination and magnetic resonance imaging were indicative of a soft tissue tumor. Excision of the mass revealed purulence, and the histologic diagnosis was cysticercosis. In the differential diagnosis of isolated muscular masses, a rare isolated cysticercus presenting as a pseudotumor should be considered.

Adult↗

Detection of submicroscopic subtelomeric chromosome translocations: a new case study.

Two sisters presented with multiple congenital abnormalities and developmental delay; abnormalities elsewhere in their extended family suggested that their father carried a balanced translocation. G-banded chromosome analysis showed apparently normal karyotypes. Fluorescence in situ hybridisation (FISH) with whole chromosome paints revealed no apparent abnormality in the father. However, further FISH studies, using multiple subtelomeric probes, demonstrated a derivative chromosome 16 in one sister. Subsequent studies showed that her sister also had a derivative 16 which had been inherited in an unbalanced form from their father, who carried a balanced reciprocal translocation between chromosomes 1 and 16. This report describes the detection of this submicroscopic translocation and the clinical findings in the two sisters.

Adolescent↗

Chromosome 22q11 deletions are not found in autistic patients identified using strict diagnostic criteria. IMGSAC. International Molecular Genetics Study of Autism Consortium.

A group of 103 subjects with a strict diagnosis of autism were tested for deletion of band q11.2 on the long arm of chromosome 22. No deletions were found, indicating that when a patient has been diagnosed with autism using strict and consistent criteria, in the absence of other indications, it is unlikely that this individual will have a 22q11 deletion. Testing for 22q11 deletions is therefore unlikely to be necessary in these patients. Am. J. Med. Genet. (Neuropsychiatr. Genet.) 96:15-17, 2000.

Adolescent↗

Characterization of a chromosomally complex lung cancer cell line using multiwell fluorescence in situ hybridization.

The chromosomal characterization of a non-small cell lung cancer cell line (NCIH358) is described. This characterization was achieved using a simple, cheap and technically straightforward multiwell fluorescence in situ hybridization (FISH) method. The many and complex chromosome rearrangements identified by this method could not be defined using conventional G-banded chromosome analysis, and have not been previously described. For the detailed characterization of complex cell lines, multiwell FISH has many advantages over more technically demanding and expensive FISH techniques, and opens up the possibility of screening for consistent rearrangements, leading to the identification of unique fusion genes.

Carcinoma, Non-Small-Cell Lung↗

Lack of cell cycle checkpoints in human cleavage stage embryos revealed by a clonal pattern of chromosomal mosaicism analysed by sequential multicolour FISH.

Multicolour fluorescence in situ hybridisation (FISH) analysis of interphase nuclei in cleavage stage human embryos has highlighted a high incidence of postzygotic chromosomal mosaicism, including both aneuploid and ploidy mosaicism. Indeed, some embryos appear to have a chaotic chromosomal complement in a majority of nuclei, suggesting that cell cycle checkpoints may not operate in early cleavage. Most of these studies, however, have only analysed a limited number of chromosomes (3-5), making it difficult to distinguish FISH artefacts from true aneuploidy. We now report analysis of 11 chromosomes in five sequential hybridisations with standard combinations of two or three probes and minimal loss of hybridisation efficiency. Analysis of a series of arrested human embryos revealed a generally consistent pattern of hybridisation on which was superimposed frequent deletion of one or both chromosomes of a specific pair in two or more nuclei indicating a clonal origin and continued cleavage following chromosome loss. With a binucleate cell in a predominantly triploid XXX embryo, the two nuclei remained attached during preparation and the chaotic diploid/triphoid status of every chromosome analysed was the same for each nucleus. Furthermore, in each hybridisation the signals were distributed as a mirror-image about the plane of attachment, indicating premature decondensation during anaphase consistent with a lack of checkpoint control.

Aneuploidy↗

A pregnancy following PGD for X-linked dominant [correction of X-linked autosomal dominant] incontinentia pigmenti (Bloch-Sulzberger syndrome): case report.

Incontinentia Pigmenti (Bloch-Sulzberger syndrome) is a rare multisystem, ectodermal disorder associated with dermatological, dental and ocular features, and in <10% of cases, severe neurological deficit. Pedigree review suggests X-linked dominance with lethality in affected males. Presentation in female carriers is variable. Following genetic counselling, a mildly affected female carrier diagnosed in infancy with a de novo mutation was referred for preimplantation sexing, unusually selecting for male gender, with an acceptance of either normality or early miscarriage in an affected male. Following standard in-vitro fertilization and embryo biopsy, fluorescence in situ hybridization (FISH) unambiguously identified two male and two female embryos. A single 8-cell, grade 4 male embryo was replaced. A positive pregnancy test was reported 2 weeks after embryo transfer, although ultrasonography failed to demonstrate a viable pregnancy. Post abortive fetal tissue karyotyping diagnosed a male fetus with trisomy 16. This is an unusual report of preimplantation genetic diagnosis (PGD) being used for selection of males in an X-linked autosomal dominant disorder and demonstrates the value of PGD where amniocentesis or chorion villus sampling followed by abortion is not acceptable to the patient. This case also demonstrates the importance of follow-up prenatal diagnosis.

Adult↗

Clinical expression of Menkes disease in a girl with X;13 translocation.

Menkes disease is a rare X-linked recessive disorder of copper metabolism, characterised by progressive neurological degeneration, abnormal hair and connective tissue manifestations. We report on a girl with classic Menkes disease, carrying a de novo balanced translocation 46,X,t(X;13)(q13.3; q14.3). The translocation breakpoints at Xq13.3 and 13q14.3 coincide with the Menkes disease and Wilson disease loci, respectively.

Adenosine Triphosphatases↗

Screening oocytes and preimplantation embryos for aneuploidy.

Pregnancy and live birth rates following in-vitro fertilization decline rapidly with advancing maternal age partly because of an increase in age-related aneuploidies occurring in female meiosis. Screening oocytes or preimplantation embryos for common aneuploidies is now possible by polar body or cleavage stage biopsy and multicolour fluorescence in-situ hybridization.

Aneuploidy↗

Chromosomal mosaicism in cleavage-stage human embryos and the accuracy of single-cell genetic analysis.

PURPOSE: Our purpose was to assess the effect of chromosomal mosaicism in cleavage-stage human embryos on the accuracy of single-cell analysis for preimplantation genetic diagnosis. METHODS: Multicolor fluorescence in situ hybridization with X, Y, and 7 or X, Y, 7, and 18 chromosome-specific probes was used to detect aneuploidy in cleavage-stage human embryos. RESULTS: Most nuclei were diploid for the chromosomes tested but there was extensive mosaicism including monosomic, double-monosomic, nullisomic, chaotic, and haploid nuclei. CONCLUSIONS: Identification of sex by analysis of a single cleavage-stage nucleus is accurate but 7% of females are not identified. One or both parental chromosomes 7 were absent in at least 6.5% of the nuclei. With autosomal recessive conditions such as cystic fibrosis, carriers would be misdiagnosed as normal or affected. With autosomal dominant conditions, failure to analyze the affected parents allele (1.6-2.5%) would cause a serious misdiagnosis and analysis of at least two nuclei is necessary to reduce errors.

Chromosome Aberrations↗

The future of preimplantation genetic diagnosis.

This paper reviews the current status of preimplantation genetic diagnosis (PGD), outlining the methods currently in use for the diagnosis of sex and single-gene defects. New approaches under development are described, e.g. fluorescent polymerase chain reaction (PCR), the use of sub-telomeric probes for patients with balanced reciprocal translocations, the analysis of first and second polar bodies, the use of lasers to facilitate the biopsy of embryos, and ways forward for infertile patients.

Female↗

A new approach to the elucidation of complex chromosome rearrangements illustrated by a case of Rieger syndrome.

A patient with a complex chromosome rearrangement and unilateral Rieger syndrome is presented. This rearrangement involves four chromosomes and six breakpoints, one of which is at 4q25, the candidate region for Rieger syndrome. We discuss a novel approach to the elucidation of this case using a multiprobe fluorescence in situ hybridisation method to show rearrangements unpredictable from G banded analysis, and the clear and unambiguous presentation of the karyotype using computer generated colour ideograms.

Abnormalities, Multiple↗

Chromosome translocations: segregation modes and strategies for preimplantation genetic diagnosis.

Preimplantation genetic diagnosis (PGD) offers polymerase chain reaction tests for an increasing range of single gene defects, and fluorescence in situ hybridization tests for sex determination (for X-linked conditions) and for aneuploidy detection. Patients carrying chromosome translocations with a high reproductive risk are increasingly seeking to increase their chances of a normal pregnancy with the help of PGD, for which they present a special challenge. This paper describes the behaviour of reciprocal translocations at meiosis, discusses current methods of detecting meiotic outcomes at the preimplantation stage and outlines ways forward for preimplantation diagnosis of these common rearrangements. We also propose a more general strategy using recently developed chromosome-specific sub-telomeric probes, combined, if possible, with proximal probes, to form a strong diagnostic tool.

Chromosome Segregation↗

Localized, tumor-associated osteolysis involves the recruitment and activation of osteoclasts.

The cellular and biochemical mechanisms that direct destruction of bone at the site of tumor osteolysis are unknown. In order to understand this process better, a murine model designed for the study of tumor osteolysis was developed and the influence of osteolytic and nonosteolytic tumors on bone was investigated. Tumors developed following femoral intramedullary injection of sarcoma (2472) and melanoma (G3.26) cell lines; however, only tumors from the 2472 cell line caused osteolysis. It was determined that 2472 tumor-induced osteolysis commenced 6 days after the femora had been inoculated with 2472 cells. There were more osteoclasts per millimeter of bone surface in 2472 tumor-bearing limbs (16.7 +/- 5.0) than in sham-injected limbs (3.8 +/- 0.9) (p < 0.015). In addition, an increase in the osteoclast size (area) was detected in 2472 tumor-bearing limbs: 412 +/- 65 micron2 compared with 187 +/- 17 micron2 (p < 0.01). In vitro bone resorption experiments indicated that 2472 tumor cells had a limited ability to destroy bone in comparison with macrophages and osteoclasts. Taken in total, these findings define a model that is useful for the study of tumor osteolysis, and the data from analyses of the model demonstrate that the cellular mechanisms responsible for 2472 tumor-induced osteolysis include both an increase in the number of osteoclasts and activation of mature osteoclasts.

Animals↗

Tumor osteolysis in osteopetrotic mice.

Details of the cellular and biochemical mechanisms involved in focal destruction of bone at sites of tumor osteolysis are unknown. It has been shown that tumors from sarcoma (2472) cell lines induce focal osteolysis in mice by stimulating formation and activation of osteoclasts. In this report, the influence of 2472 tumors on the skeletons of osteoclast-deficient animals (op/op) was studied. After op/op femora had been inoculated with 2472 cells, tumors developed and focal osteolysis occurred. There were more osteoclasts per histologic section in sham-injected femora (19 +/- 5) than in tumor-bearing femora (412 +/- 129) (p < 0.05). The size of the osteoclasts also increased from 304 +/- 81 microns 2 in sham-injected limbs to 407 +/- 62 microns 2 in tumor-bearing limbs (p < 0.001). Conditioned media from 2472 op/op tumor explants contained macrophage colony-stimulating factor. A deficiency of osteoclasts in op/op mice is the result of the absence of this factor; therefore, these data introduce the possibility that macrophage colony-stimulating factor derived from 2472 tumor may be responsible for directing osteoclast-mediated osteolysis at sites of the tumor.

Animals↗