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Biomedical subjects

A Cooke

Publications and source records attributed to A Cooke.

At least 55 records · Page 3Linked to original sources

Paternal uniparental disomy for chromosome 6 causes transient neonatal diabetes.

We report an infant with intrauterine growth retardation and transient neonatal diabetes who has paternal uniparental disomy for chromosome 6. The infant was not dysmorphic and had no congenital anomalies. To our knowledge, this is the third case of paternal uniparental disomy occurring in an infant with transient neonatal diabetes, thus confirming the association.

Chromosome Aberrations↗

alpha-Cell neogenesis in an animal model of IDDM.

Currently there is debate regarding the capacity of pancreatic islets to regenerate in adult animals. Because pancreatic endocrine cells are thought to arise from duct cells, we examined the pancreatic ductal epithelium of the diabetic NOD mouse for evidence of islet neogenesis. We have evidence of duct proliferation as well as ductal cell differentiation, as suggested by bromodeoxyuridine-labeling and the presence of glucagon-containing cells within these ducts. In addition, the ductal epithelia in diabetic NOD mice expressed the neuroendocrine markers neuropeptide Y and tyrosine hydroxylase. These ducts also expressed the homeobox gene product, insulin promoter factor 1. Ductal cell proliferation and expression of these markers was not observed in transgenic NOD mice (NOD-E), which do not develop clinical or histopathological symptoms of IDDM. This suggests that the observed ductal cell proliferation and differentiation was a direct result of beta-cell destruction and insulin insufficiency in these adult diabetic mice, which further suggests that these events are recapitulating islet ontogeny observed during embryogenesis. It is possible that comparable processes occur in the human diabetic pancreas.

Animals↗

Effect of MHC transgene expression on spontaneous insulin autoantibody class switch in nonobese diabetic mice.

A study of spontaneous anti-insulin autoantibodies in nonobese diabetic (NOD) mice revealed that when first detected, the antibodies are immunoglobulin M (IgM), but by age 10 weeks, immunoglobulin G (IgG) autoantibodies have appeared in many of these animals. When NOD strains, partially or completely protected from IDDM by the insertion of transgenes in the class II region, were compared, it was found that the switch to IgG autoantibodies was inhibited and the autoantibodies remained IgM indefinitely. We speculate that the switch to IgG may be a marker of events leading to IDDM in NOD mice and an indication that T-cell help has been generated for responses to beta-cell antigens. Such help not only directs the development of IgG autoantibodies, but more importantly, allows the emergence of potentially pathogenic T-cell clones that are capable of infiltrating the pancreas and mediating beta-cell damage.

Animals↗

Development of a procedure for the direct cloning of T-cell epitopes using bacterial expression systems.

Although single bacterial recombinant antigens have been used successfully to stimulate individual T-cell clones and elicit recall responses in peripheral lymphocytes, the broader use of molecular cloning systems for the identification of autoantigens recognised by the cellular arm of the immune system has met with only limited success. In a systematic approach to address this problem, a series of bacterial expression vectors were examined for their potential use as cloning vectors to elicit a proliferative response in vitro from a non-obese diabetic (NOD) mouse T-cell clone which recognises the immunodominant ovalbumin epitope (aa 323-339). The use of the vector pRSET, which produces a hexa-histidine tagged fusion protein, was confounded by non-specific responses to bacterial protein contaminants. pGEX, which generates a glutathione-S-transferase hybrid, avoided this problem but suffered from the disadvantage that a universally applicable purification procedure for the hybrid antigen could not be easily developed. A practical screening protocol was developed using the pUEX expression system (beta-galactosidase hybrid) and purification based upon electroelution of the hybrid protein from purified inclusion bodies subjected to sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE). This system can be used to screen expression libraries for the detection of T-cell epitopes provided that the T-cell clones give low background responses to irrelevant pUEX recombinant proteins. Low abundance antigens may be obtained using this system in combination with subtractive hybridisation to construct cDNA libraries enriched in the target antigen.

Animals↗

Unique role of thyroxine in T cell recognition of a pathogenic peptide in experimental autoimmune thyroiditis.

We have previously demonstrated the importance of iodination and the requirement of the thyroxine residues in thyroglobulin (Tg) for the stimulation of two clonotypically distinct murine T cell hybridomas reactive against human and mouse Tg. We are now able to show that these T cell hybridomas only recognize an 11-residue peptide containing a thyroxine structure that has iodine at two positions on each ring. This iodination state is critical for recognition by these hybridomas as a peptide containing de-iodinated thyroxine is nonstimulatory. Furthermore we have demonstrated that a peptide lacking the thyroxine residue or containing de-iodinated thyroxine cannot block the recognition of the thyroxine-containing peptide. We suggest that in our system the thyroxine residue is involved in binding to major histocompatibility complex (MHC) class II molecules. We have also been able to show that the thyroxine residue is available for contact by the T cell receptor (TCR) as recognition of the peptide/H-2A(k) complex is blockable by an antibody directed against thyroxine. Using substituted peptides, we have been able partially to define the residues within the peptide that are critical for recognition of the 11-residue peptide by our hybridomas. From our data, we suggest that the thyroxine residue may bind the MHC and TCR, while the residues identified in the peptide backbone as important for the stimulation of the hybridomas may bind only the TCR.

Amino Acid Sequence↗

Growth of the uterus.

BACKGROUND: The pattern of growth of the uterus was examined by ultrasound examinations of 358 girls who attended a paediatric endocrine outpatient department but were shown not to have any endocrine defect. METHOD: The uterus was measured in length and width at the cervix and at the fundus (cm). Endometrial thickness was measured (mm). Scans were divided by Tanner breast stage and the dimensions compared by one way analysis of variance (ANOVA, with the Student Newman Keuls post hoc test). RESULTS: There was an increase in uterine length, diameter of the fundus, and endometrial thickness at each breast stage from 1 to 5 (ANOVA, p < 0.05), and in the diameter of the cervix with each breast stage from 1 to 4 (ANOVA, p < 0.05). The ratio of the fundus to the cervix increased from 0.95 to 1.29 between breast stages 1 and 4. CONCLUSION: The onset of puberty is marked by an increase in the dimensions of the uterus and in endometrial thickness, but also by a change in the shape of the uterus from a tubular to a pear shaped organ.

Adolescent↗

Familial Wolf-Hirschhorn syndrome resulting from a cryptic translocation: a clinical and molecular study.

We present three cousins who have normal karyotypes, despite having clinical features of Wolf-Hirschhorn syndrome. Fluorescence in situ hybridisation techniques confirmed that all three relatives were monosomic for the distal short arm of chromosome 4 and that a cryptic translocation involving chromosomes 4 and 11 was segregating within the family. Segregation analysis indicated that the risk of an affected child being born to a parent carrying the translocation was 15%. Molecular analysis showed that loci D4S111 and D4S115 were not deleted in the proband, thus excluding these loci from the "Wolf-Hirschhorn critical region". Surprisingly, DNA studies also suggested that the translocation breakpoint on chromosome 4 was within the region of a preexisting paracentric inversion.

Abnormalities, Multiple↗

Familial hemiplegic migraine in the west of Scotland: a clinical and genetic study of seven families.

OBJECTIVES: Clinical and genetic characterisation of families in the west of Scotland with familial hemiplegic migraine. METHODS: Families with familial hemiplegic migraine were identified via probands attending the regional paediatric neurology and child development centre. All available family members were assessed clinically and genetic linkage studies for the known familial hemiplegic migraine gene locus on chromosome 19 were carried out on three families. RESULTS: Seven unrelated kindreds with familial hemiplegic migraine were identified. Clinical information was obtained on 138 family members, 27 of whom fulfilled the International Headache Society criteria for familial hemiplegic migraine. Whereas the severity, duration, frequency, and temporal progression of acute hemiplegic migrainous attacks showed pronounced variability within and between families, and even in the same individual over time, no true clinical heterogeneity of the condition was apparent. Genetic linkage analysis gave results consistent with linkage to the familial hemiplegic migraine gene locus on chromosome 19p in one family. In the other two families, evidence against linkage was obtained. There was no significant clinical difference between these three families. CONCLUSIONS: This study provides characterisation of the clinical features of familial hemiplegic migraine in a British population. Significant variability was found in the frequency and character of migraine attacks within and between families, and no true clinical heterogeneity was identified. On the other hand, further evidence for genetic heterogeneity of the condition was found.

Adolescent↗

Expression and loss of heterozygosity of c-met proto-oncogene in primary breast cancer.

The c-met proto-oncogene encodes the receptor to hepatocyte growth factor-scatter factor (HGF-SF), a mesenchyme-derived cytokine with cell-dissociating, invasion, and angiogenic properties. The expression of c-met in breast cancer is the subject of controversy; 111 primary breast cancers were examined for LOH of c-met by Southern blot electrophoresis. c-met expression was measured in a further 40 patients with breast cancer and in 8 patients with benign breast disease by flow cytometry. LOH of c-met was detected in only 4% of informative breast cancers. Expression of c-met was significantly greater in patients with breast cancer than in those with benign breast disease (P < 0.01, Mann-Whitney). There was no correlation however between increased c-met expression and clinicopathological prognostic variables. These results do not support the role of c-met as a tumour suppressor gene in breast cancer but suggest increased receptor expression in malignant breast disease. The significance of this increased expression in breast cancer is the subject of further investigation.

Blotting, Southern↗

Uniparental isodisomy for chromosome 16 in a growth-retarded infant with congenital heart disease.

We report a growth-retarded infant with congenital heart disease and maternal isodisomy for chromosome 16. Non-mosaic trisomy 16 was detected at mid-trimester chorionic villus sampling, performed because biochemical screening indicated an increased Down's syndrome risk. Further karyotyping analysis of the placenta, after delivery, showed a 50 per cent mosaic trisomy 16. The infant had an atrioventricular (A-V) canal defect, scoliosis, and several minor dysmorphic features. Although uniparental disomy for chromosome 16 has been reported previously, to our knowledge this is the first case of uniparental isodisomy for chromosome 16 which has been investigated with multiple DNA probes.

Abnormalities, Multiple↗

The role of infiltrating macrophages in islet destruction and regrowth in a transgenic model.

The expression of interferon-gamma (IFN-gamma) in pancreatic beta cells leads to a complex pathology that represents the processes of both islet destruction and islet regeneration. Inflammatory cells and the factors elicited from them participate in the development of pathology in this transgenic model. To dissect the role of infiltrating macrophages in these events, the monoclonal directed against the type 3 complement receptor (5C6) was utilized to inhibit the extravasation of macrophages. This was approached by treating transgenic mice with 5C6 for 3 or 4 months, starting from 5-7 days of age. The data presented in this report demonstrate that infiltrating macrophages are important in the observed induction of diabetes in our transgenic model. We also found that infiltrating macrophages did not play a major role in the observed proliferation and islet regeneration, but some interesting subtleties regarding the regulation of this proliferative process emerged.

Animals↗

Animal models of autoimmune endocrine disease and their uses in developing new methods of intervention.

This review provides basic information concerning the major animal models in use for the study of autoimmune endocrine diseases (AEDs). Although several other models exist which parallel human AEDs such as autoimmune orchitis, most research in this area has centred on animal models of insulin-dependent diabetes mellitus (IDDM) and thyroiditis. These models, between them, appear to exhibit most of the disease manifestations of their human counterparts and thereby permit the study of possible methods of intervention in the disease process. While no one model represents a perfect correlation with the human disease it represents, common characteristics are recognizable between them. For instance, the central role of activated T cells in controlling the disease process. The chapter continues by examining the various ways in which models of autoimmunity, specifically IDDM and experimental allergic thyroiditis (EAT), have been used to investigate the possibility of preventing or arresting autoimmune destruction. Several different approaches are described that illustrate the variety of techniques that have proven both potentially, or in reality, effective and those that have proven less efficacious than first hoped.

Animals↗

Ferritin excretion and iron balance in humans.

Under normal circumstances, most of the lumenal iron taken into the intestinal mucosal cell is stored within the cell as ferritin and subsequently is lost in the faeces when the cell exfoliates at the end of its lifespan. To evaluate whether faecal iron proteins reflect mucosal cell iron as well as whole body iron and to examine further the kinetics of gastrointestinal iron transport, faecal H-rich and L-rich ferritin were measured in normal subjects and patients with iron deficiency and genetic haemochromatosis. In normal and iron-deficient subjects, the concentration of L-rich but not H-rich faecal ferritin correlated closely with body iron status. In genetic haemochromatosis, the faecal L-rich and H-rich ferritin concentrations were lower than expected for their body iron status. The administration of oral iron to normal subjects led to a rise in L-rich ferritin. Administration of oral or parenteral iron to patients with iron deficiency led to a prompt rise in both forms of faecal ferritin, although the relative increase of L-rich ferritin was greater than that of H-rich ferritin with oral iron administration. Faecal ferritin correlated closely with iron stores in normals and patients with iron deficiency but faecal ferritin levels were lower than expected in genetic haemochromatosis, similar to that previously noted in the duodenal mucosal cells of these patients.

Administration, Oral↗

Ovaries in sexual precocity.

BACKGROUND AND OBJECTIVE: Ovarian ultrasonography may be helpful in distinguishing the various types of precocious puberty, and the ovarian appearances increasingly influence choice of therapy in these girls. We examined retrospectively the ovarian volume and prevalence of polycystic ovarian appearance at ultrasound in girls with sexual precocity. DESIGN: Ultrasound examinations were obtained from girls who presented with sexual precocity. If there were several scans from the same individual, the latest was analysed. PATIENTS: The girls were divided into groups: untreated central precocious puberty (n = 25), central precocious puberty treated with GnRH analogue (n = 18) or with GnRH analogue and recombinant human GH (n = 11), girls who had stopped treatment with GnRH analogue and GH (n = 12), premature thelarche and thelarche variant (n = 15) and premature adrenarche (n = 14). MEASUREMENTS: Ovarian volume was calculated and the ovaries were assessed for polycystic appearance using standard criteria. Ovarian volume standard deviation (SD) scores were calculated using means and standard deviations derived from a control population and compared using analysis of variance. Differences from control data were assessed using Student's t-test. RESULTS: Ovarian volume SD scores for all the groups studied were greater than those for control subjects. Girls who had stopped treatment with GnRH analogue and GH had mean ovarian volume of 6.98 ml and ovarian volume SD score (+1.72) greater than that of girls having treatment with GnRH analogue alone (+1.24). Polycystic appearance ovaries were found in 83% of scans in girls who had stopped treatment with GnRH analogue and GH. The ovarian volume SD score of girls with premature adrenarche was less than that of girls with untreated central precocious puberty. CONCLUSIONS: Girls with central precocious puberty had large ovaries which did not return to a volume appropriate for age. Girls treated with GnRH analogue and GH developed very large ovaries when they stopped treatment, and had an increased prevalence of ovaries with a polycystic appearance. Central precocious puberty, or some aspect of its treatment, results in an increased prevalence of polycystic ovarian appearance.

Child↗

Tolerance induction as a therapeutic strategy for the control of autoimmune endocrine disease in mouse models.

This chapter aims to describe ways in which autoimmunity can be prevented or reversed and 'self-tolerance' re-established. To this end we have largely restricted our overview to the two main autoimmune disease models with which we are involved, i.e. IDDM in NOD mice and EAT in H-2k mice although, where appropriate and to demonstrate a particular point, other models are mentioned. The chapter has been divided into sections covering protection afforded by 1) transgenes, 2) autoantigen and 3) by reagents targetting T-cell surface molecules. Where established, the mechanism by which protection or tolerance is achieved is described but where, as in most cases, it is unknown the possibilities are discussed. Investigations using T-cell lines and clones and on islet regeneration which are currently being followed as part of a comprehensive approach to the study of autoimmunity are included as separate sections and their relevance discussed.

Animals↗