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A J Bone

Publications and source records attributed to A J Bone.

13 recordsLinked to original sources

Expression of an islet regenerating (reg) gene in isolated rat islets: effects of nutrient and non-nutrient growth factors.

The expression of a novel regenerating (reg) gene has been reported previously in the regenerating islets of a surgical model of diabetes in rats. We exposed collagenase-isolated rat islets for three days to nutrient and non-nutrient growth factors in minimally supplemented RPMI medium (2.7 mmol/l glucose, 2% fetal calf serum), and investigated the relationship between reg gene expression and islet cell replication. RNA was prepared from half of the islets by homogenisation in guanidinium isothiocyanate followed by phenol/chloroform extraction. Northern/dot blot analyses were used to semi-quantify reg mRNA. Islet cell replication was estimated by culturing the remaining islets in radiolabelled thymidine to determine de novo DNA synthesis. Thymidine uptake was stimulated by the following factors: 11 mmol/l glucose (50% increase); 10% amino acids (126% increase); 10% fetal calf serum (39% increase); 100 ng/ml insulin (45% increase); 250 ng/ml growth hormone (65% increase); 1.5 nmol/l aldosterone (29% increase); 2 U/ml platelet derived growth factor (116% increase). The results are expressed as a percentage of the thymidine incorporated into control islets cultured in minimal RPMI (1118 +/- 100 (SD) cpm/microgram protein, n = 15). Increased islet cell replication was paralleled in each case by a clear rise in reg mRNA expression compared to controls. Furthermore, the rank order for reg gene expression was the same as that for thymidine uptake (r = 0.90). The present findings suggest a clear association between reg gene expression and islet cell replication in vitro, and are the first to demonstrate reg gene expression in response to individual growth factors.

Aldosterone

Comparison of an enzyme-linked immunosorbent assay (ELISA) with a radioimmunoassay (RIA) for the measurement of rat insulin.

A recently developed competitive enzyme-linked immunosorbent assay (ELISA) was compared with a conventional competitive radioimmunoassay (RIA) for the measurement of rat insulin in culture medium. Fifty-six samples were analysed by both assays. There was a correlation coefficient of r = 0.783 between results obtained using the two assay systems. The binding curves of the two assays were differently shaped, so that the ELISA gave good reproducibility over the concentration range 5-50 microU/ml insulin with inter- and intra-assay coefficients of variation less than 14%, but poor reproducibility at higher concentrations. Conversely, the RIA showed excellent reproducibility at concentrations greater than 50 microU/ml insulin, but poor sensitivity and high coefficients of variation below this level. The ELISA procedure offers practical advantages over the RIA, and performs well when measuring physiological concentrations of insulin.

Animals

HbA1 in assessment of metabolic control in diabetic BB/E rats.

Estimations of HbA1 levels have been used to assess long-term glycaemic control in spontaneously diabetic BB/E rats. The degree of metabolic control achieved by once daily insulin injections and continuous insulin infusion by osmotic minipump was compared. Citrate gel electrophoresis of lysed erythrocytes, previously washed and incubated in 0.9% NaCl, gave accurate HbA1 values without interference from either abnormal Hb variants or labile glycosylation products. Over a 12 week period there was no significant difference in the mean random weekly plasma glucose concentrations between diabetic rats maintained on insulin injections or continuous infusion therapy. The HbA1 values in the injection-treated animals remained unchanged throughout the study period (mean +/- SEM = 5.1 +/- 0.1%). Diabetic rats treated by osmotic minipump showed a steady decline in values over the same period (4.1 +/- 0.1%; p less than 0.001 vs injected rats) but levels remained higher than those recorded in non-diabetic control rats (2.9 +/- 0.01%; p less than 0.001 vs pump-treated rats). These differences in HbA1 were reflected in the plasma glucose values obtained during a 30 h glucose profile performed after six weeks of insulin therapy. Diabetic rats on injection therapy showed considerable diurnal variation in plasma glucose concentration (5.5-11.2 mmol/l; mean 8.9 +/- 0.5) but continuous insulin infusion eliminated the fluctuations giving a significantly lower mean glucose level over the 30 h period (7.3 +/- 0.1 mmol/l; p less than 0.005). HbA1 levels show a poor correlation with random plasma glucose estimations (r = 0.43) but provide a simple and accurate assessment of long-term glycaemic control without the need for multiple 24 h glucose profiles.

Animals

Increased preproinsulin mRNA in pancreatic islets incubated with islet cell-stimulating antibodies from serums of type I diabetic patients.

We recently described autoantibodies that stimulate the release of insulin from pancreatic beta-cells both in vitro and in vivo. The aim of this study was to establish whether islet cell-stimulating antibodies (ICSTAs) also increase islet cell preproinsulin mRNA content. Wistar rat islets, isolated by collagenase digestion, were exposed to 2.7 and 11.1 mM glucose. Insulin release increased 10-fold in response to the higher glucose concentration, and dot-blot analysis of islet mRNA with a rat preproinsulin cDNA probe showed a concomitant increase in mRNA levels. The globulin fractions of four test serums, three from patients with type I (insulin-dependent) diabetes and one from a patient with the insulin autoimmune syndrome, showed clear (5- to 8-fold) stimulation of insulin release. The nonglobulin fractions of these serums and both fractions of three control serums failed to stimulate secretion of insulin. The insulin mRNA content of islets incubated with the ICSTA globulin fractions was greatly increased compared with levels observed in islets treated with control serum globulin fractions. We conclude that ICSTAs not only can stimulate the release of insulin but also increase the preproinsulin mRNA content of islet cells.

Adult

Insulin-mimicking anti-idiotypic antibodies in development of spontaneous autoimmune diabetes in BB/E rats.

BB/E rats spontaneously develop a form of autoimmune diabetes resembling insulin-dependent diabetes mellitus (IDDM) in humans. IDDM results from central destruction of the insulin-producing beta-cells of the pancreatic islets. Herein, we report that the outbreak of IDDM in BB/E rats is preceded by the spontaneous development of an anti-idiotypic antibody to a particular antibody to insulin made by the rats. This anti-idiotype, designated anti-DM-id, behaves as an antibody to the insulin-hormone receptor. Thus, a spontaneous anti-idiotypic antibody network whose products can affect the peripheral utilization of insulin seems to accompany the central destruction of beta-cells in developing IDDM.

Animals

Effect of cyclosporin on pancreatic events and development of diabetes in BB/Edinburgh rats.

The effect of cyclosporin administered from 30 to 100 days of age on pancreatic events and the development of insulin-dependent diabetes has been studied by serial pancreatic biopsy of individual diabetes-prone BB/Edinburgh rats. Cyclosporin completely prevented the development of diabetes up to 150 days of age and reduced the incidence to 50% of controls at 452 days of age. Islet cell surface antibodies paralleled the development of diabetes. Insulin autoantibodies were unrelated to diabetes and not affected by cyclosporin. Immunohistochemical analysis of pancreatic biopsies from untreated control diabetes-prone rats with monoclonal antibodies specific for rat MHC molecules and T- and B-lymphocyte and macrophage subsets showed that the first abnormality seen in rats that subsequently developed diabetes was hyperexpression of MHC class I molecules on vascular endothelium and islet cells. This was followed by accumulation of ED1+ macrophages at perivascular and periductal sites adjacent to noninfiltrated islets. Increased expression of MHC class II molecules on vascular endothelial cells was also noted. Most cells infiltrating the islets initially were also ED1+ macrophages, followed by increasing numbers of other activated effector cells including helper and cytotoxic-suppressor T lymphocytes and natural killer cells. Obliteration of insulin-containing cells was associated with regression of the infiltrate. Treatment with cyclosporin had no effect on pancreatic hyperexpression of MHC class I molecules but markedly inhibited accumulation of ED1+ cells at extraislet sites, the subsequent recruitment of immune effector cells, and islet infiltration. This resulted in a delay of the onset of diabetes in some rats and prevention of diabetes in others.

Animals

Timed interruption of insulin therapy in diabetic BB/E rat pregnancy: effect on maternal metabolism and fetal outcome.

Experimental and clinical studies have suggested that periods of poor metabolic control in early diabetic pregnancy have an adverse effect on the developing embryo, but the precise nature and mechanism of this damaging influence have not been defined. In this study the effect of withdrawing treatment with insulin for 2 days at various times during early gestation on maternal metabolism and fetal outcome has been investigated in the spontaneously diabetic BB/E rat. Non-diabetic BB/E rats and diabetic BB/E rats treated continuously with insulin throughout pregnancy served as controls. Continuously treated diabetic rats had a higher rate of fetal resorption and bigger placentae and their offspring had fewer ossification centres, lower extractable pancreatic insulin content, larger hearts, and smaller kidneys and lungs than the offspring of non-diabetic rats. Interruption of treatment with insulin further aggravated the adverse effect of diabetes on the outcome of pregnancy by resulting in a further increase in the rate of fetal resorption, a rise in the neonatal death rate, a reduction in fetal body weight, and retardation of skeletal development. These effects were more apparent when interruption of treatment with insulin occurred during the period of organogenesis, i.e. during gestational days 8 and 9, and 10 and 11. Two severe malformations were seen, both in litters originating from mothers whose treatment with insulin was interrupted during and immediately before fetal organogenesis. We conclude that a period of disturbed maternal metabolism during fetal organogenesis is capable of affecting the survival, growth, and organ development of the fetus and that the spontaneously diabetic insulin-dependent BB rat appears to be a good model for studies of the effect of diabetes and its treatment on the outcome of pregnancy.

Animals

Alterations in regulation of insulin biosynthesis in pregnancy and starvation studied in isolated rat islets of langerhans.

1. Insulin biosynthesis in isolated rat islets of Langerhans was determined by the incorporation of [(3)H]leucine into newly synthesized islet proteins. Anti-insulin serum covalently coupled to a solid phase (CNBr-activated Sepharose 4B) was used to separate the immunoreactive proinsulin and insulin from other islet proteins. This method was applied to a study of the regulation of insulin biosynthesis in isolated rat islets of Langerhans during pregnancy, and immediately after a period of food deprivation. 2. Islets isolated from pregnant rats showed an increased basal rate of synthesis compared with the non-pregnant controls. In addition, they showed a significant increase in biosynthesis of proinsulin and insulin in comparison with the normal islets over a range of glucose concentrations of 2-20mm. 3. Addition of the phosphodiesterase inhibitor 3-isobutyl-1-methylxanthine significantly increased the insulin-synthetic response of normal islets over the glucose range 5-20mm, so that their glucose response approached that of islets from pregnant rats. 4. Normal female rates were injected with a long-acting progesterone derivative (hydroxyprogesterone hexanoate), to investigate the role of progesterone on the increased insulin biosynthesis observed in islets in pregnancy. There appeared to be no marked difference in insulin biosynthesis between the islets from the progesterone-injected and control rats in the presence of 2mm- or 6mm-glucose alone. However, in the presence of 4mm- or 6mm-glucose and 3-isobutyl-1-methylxanthine there was a significant increase in insulin biosynthesis in the progesterone-treated animals. 5. Total islet protein biosynthesis was determined by the incorporation of [(3)H]leucine into trichloroacetic acid-precipitable islet proteins. Islets isolated from normal rats showed a 1.6-fold increase in incorporation over the glucose concentration range 2-20mm, and this value remained unchanged during starvation; however, rates of incorporation were significantly raised in islets isolated from pregnant rats in the presence of 20mm-glucose. 6. Islets from starved and fed control rats were incubated in the presence of increasing concentrations of glucose or glucose+3-isobutyl-1-methylxanthine. The islets isolated from the starved animals showed a diminished insulin-synthetic response to glucose as compared with the controls; this response was partially restored to normal values by elevation of cyclic AMP concentrations by using 3-isobutyl-1-methylxanthine. 7. It is suggested that the alterations in glucose-stimulated insulin biosynthesis observed in islets during pregnancy and after a period of starvation could be attributable, at least in part, to a long-term alteration of the cyclic AMP system, and in pregnancy to a direct or indirect effect of progesterone on beta-cell function.

Animals

Regulation of insulin and glucagon secretion from a human islet cell adenoma.

The regulation of insulin biosynthesis, and insulin and glucagon secretion have been investigated in a human islet cell adenoma, by incubation of tumour fragments. Both biosynthesis and secretion of insulin were strongly stimulated by incubation of islet tumour cells in the presence of increasing glucose concentrations in the range 2-8 mmol/1. However, 20 mM-glucose or 20 mM-glucose plus isobutyl methylxanthine (IBMX), both of which provide potent secretagogues for normal B cells, failed to stimulate proinsulin biosynthesis and secretion from the tumour cells. Overall rates of secretion, expressed as a proportion of total insulin content, were up to 20-fold higher than those expected for normal pancreatic tissue. Glucagon secretion from the tumour was stimulated by low glucose concentrations; normal A cells also respond in this way under these conditions. However, no stimulation of glucagon secretion occurred in the presence of IBMX. There was therefore a major alteration in the regulation both of insulin and glucagon secretion, in that release of neither hormone was stimulated by cyclic AMP. Ultrastructural examination showed the tumour to be rather heterogeneous. A and B cells with normal storage granule content and structure were seen, as well as a rather larger number of B cells containing some granules of atypical appearance. The insulin content of the tumour (13 i.u./g wet wt) was consistent with 6-8% of the tumour cells being B cells.

Adenoma, Islet Cell

Elevated neuropeptide Y concentrations in the central hypothalamus of the spontaneously diabetic BB/E Wistar rat.

Insulin-deficient diabetes causes hypothalamic and pituitary dysfunction. The possible role of hypothalamic regulatory peptides in mediating these disturbances was investigated in spontaneously diabetic BB/E Wistar rats. Concentrations of 10 regulatory peptides were measured in the central (nucleus-rich) and lateral parts of the hypothalamus in 18 diabetic and 5 non-diabetic BB/E rats. Diabetic rats were treated with either intensified or low-dose insulin schedules to achieve moderate or severe hyperglycaemia (mean blood glucose concentrations, 8 and 20 mmol l-1 respectively). Neuropeptide Y concentration and content in the central hypothalamus were increased by 30-40% in both moderately and severely hyperglycaemic diabetic groups (p less than 0.01). Lateral hypothalamic neuropeptide Y levels did not differ significantly between the groups. The only other peptide to show any significant difference between diabetic and control rats was calcitonin gene-related peptide, whose central hypothalamic concentrations were significantly increased in the severely hyperglycaemic animals. Alterations of hypothalamic neuropeptide Y, which has potent experimental effects on hypothalamo-pituitary function, may contribute to certain neuroendocrine disturbances in insulin-deficient diabetes.

Animals