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J Nerup

Publications and source records attributed to J Nerup.

At least 145 records · Page 8Linked to original sources

Relationship between insulin injection regimen and metabolic control in young Danish type 1 diabetic patients. The Danish Study Group of Diabetes in Childhood.

In 1987 and 1989 nationwide screening for HbA1c was carried out in Denmark. Twenty-one paediatric departments treating children with diabetes participated in the first study and twenty-two in the second. During this 2-year period metabolic control deteriorated despite the fact that the use of multiple injection regimens increased from 39% to 54%. The possible reasons for the deterioration in metabolic control were examined in the 429 children (> or = 9 years, 1987) and adolescents (< 18.8 years, 1989) who participated in both studies. All had diabetes duration of greater than one year (1987) and all were treated by the same departments during the study period. The children were divided into three subgroups according to injection regimen. Group A (n = 128) received twice-daily insulin injections; group B (n = 171) were on multiple injections (three or more) while group C (n = 130) shifted from twice-daily insulin to multiple injections during the 2-year period. A deterioration of blood glucose control as assessed by HbA1c was observed in all three treatment groups. For group C the 2-year increase in daily insulin dose was more pronounced for males (19%) than for females (6%). Body mass index increased significantly in all treatment groups during the study period. The 1989 mean levels were higher in group B (males 20.6 kg m-2, females 22.0 kg m-2) than group A (males 19.3 kg m-2, p = 0.002; females 20.7 kg m-2, p = 0.000003) and group C (males 19.4 kg m-2, p = 0.0005; females 20.7 kg m-2, p = 0.008).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Linkage analysis of maturity-onset diabetes of the young with microsatellite polymorphisms. No linkage to ADA or GLUT2 genes in two families.

MODY is a form of NIDDM inherited as an autosomal dominant condition. We studied the linkage of MODY to two loci: ADA and GLUT2 in two large pedigrees with nonradioactive microsatellite polymorphic systems. A positive linkage of ADA to MODY was recently demonstrated in the large RW pedigree. Formal linkage analysis excluded a tight linkage between ADA and MODY with a LOD score of -5.82 and -2.24 at a recombination fraction of 0.01 in the two families. This result suggests genetic heterogeneity in the molecular basis of MODY. GLUT2 is a candidate gene that is expressed in the liver and beta-cells of pancreatic islets. In the two families studied, the disease did not cosegregate with GLUT2 alleles. The LOD scores for GLUT2 were -7.79 and -1.9 at a recombination fraction of 0.001 in the two families, thus providing evidence against the involvement of GLUT2 in MODY.

Adenosine Deaminase↗

Follow-up of cyclosporin A treatment in type 1 (insulin-dependent) diabetes mellitus: lack of long-term effects.

In the Canadian/European randomized controlled study on cyclosporin A (CsA) in recent onset Type 1 (insulin-dependent) diabetes, treatment with the immunosuppressive drug had increased and maintained Beta-cell function and clinical remission during the first 12 months. Following discontinuation of the study drug and double-blinding after a mean of 13.8 months former CsA patients doubled the daily insulin dose within 6 months reaching the level of former placebo patients. The difference in Beta-cell function between the two groups was also lost. Metabolic control (HbA1c) was transiently worse in the former CsA group. Adverse effects of cyclosporin A on systolic blood pressure, haemoglobin levels, serum potassium and creatinine levels also remitted during that time. We conclude that treatment with cyclosporin A for a mean of 13.8 months had no long-lasting effect on the course of Type 1 diabetes persisting beyond drug discontinuation.

Adolescent↗

Heat shock protein induction in rat pancreatic islets by recombinant human interleukin 1 beta.

Interleukin 1 beta, potentiated by tumour necrosis factor alpha, is cytotoxic to pancreatic Beta cells in vitro. We have hypothesized that interleukin 1 beta induces oxygen free radicals in Beta cells. Since cytotoxicity induced by free radicals and by heat may activate the same cellular repair mechanism (the heat shock response), the aim of this study was to investigate the pattern of protein synthesis in isolated islets after exposure to interleukin 1 beta (150 pg/ml, 24 h), tumour necrosis factor alpha (50 ng/ml, 24 h) heat shock (43 degrees C, 30 min) and H2O2 (0.1 mmol/l, 20 min). By polyacrylamide gel electrophoresis, autoradiography, Western-blot analysis and partial peptide mapping of 35S-methionine labelled islets, interleukin 1 beta was found to induce a 73 kilodalton protein belonging to the heat shock protein family heat shock protein 70, a heat shock protein 90, and haem oxygenase. A minor induction of heat shock protein 73 and haem oxygenase was seen after H2O2. Interleukin 1 beta did not induce heat shock proteins in rat thyroid cells, rat mesangial cells or in human monocytes. Tumour necrosis factor alpha did not induce selective protein synthesis. Pre-exposure of islets to heat, tumour necrosis factor alpha, or H2O2 did not prevent the impairment of glucose-stimulated insulin release seen after 24 h of interleukin 1 beta exposure. The data are compatible with free radical induction by interleukin 1 beta. However, the heat shock response is not specific for oxidative injury, and previous studies have shown discrepant effects as to a protective effect of free radical scavengers against interleukin 1 beta-mediated beta-cytotoxicity.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

The pharmacokinetics, distribution and degradation of human recombinant interleukin 1 beta in normal rats.

Based upon in vivo rat experiments it was recently suggested that interleukin 1 in the circulation may be implicated in the initial events of beta-cell destruction leading to insulin-dependent diabetes mellitus (IDDM) in humans. The aim of the present study was to estimate half-lives of distribution (T1/2 alpha) and elimination phases (T1/2 beta) of human recombinant interleukin 1 beta (rIL-1 beta), and its tissue distribution and cellular localization by means of mono-labelled, biologically active 125I-rIL-1 beta. After intravenous (i.v.) injection, 125I-rIL-1 beta was eliminated from the circulation with a T1/2 alpha of 2.9 min and a T1/2 beta of 41.1 min. The central and peripheral volume of distribution was 20.7 and 19.1 ml/rat, respectively, and the metabolic clearance rate was 16.9 ml/min/kg. The kidney and liver showed the highest accumulation of tracer, and autoradiography demonstrated that 125I-rIL-1 beta was localized to the proximal tubules in the kidney and to the hepatocytes in the liver. Furthermore, grains were localized to the islets of Langerhans in the pancreas. Tracer-bound proteins corresponding to intact 125I-rIL-1 beta were found in the circulation after i.v., intraperitoneal (i.p.) and subcutaneous (s.c.) injections, as demonstrated by high performance size exclusion chromatography, trichloracetic acid precipitation and SDS-PAGE until 5 h after tracer injection. Pre-treatment with 'cold' rIL-1 beta enhanced degradation of a subsequent injection of tracer. The route of administration was of importance for the biological effects of rIL-1 beta, as demonstrated by a reduced food intake, increased rectal temperature and blood glucose after s.c. injection of rIL-1 beta compared with i.p. The present demonstration of intact rIL-1 beta in the circulation and the islets of Langerhans supports the hypothesis that systemic IL-1 beta may be involved in the initial beta-cell destruction leading to IDDM in humans.

Animals↗

A tumour necrosis factor beta gene polymorphism in relation to monokine secretion and insulin-dependent diabetes mellitus.

HLA-class III region genes may be associated with susceptibility to insulin-dependent diabetes mellitus (IDDM). In this study an NcoI polymorphism of the tumour necrosis factor beta (TNF-beta) gene, which is positioned next to the tumour necrosis factor alpha (TNF-alpha) gene in the HLA class III region, was detected by restriction fragment length polymorphism (RFLP). This polymorphism has previously been reported to be located in the TNF-alpha gene. Caucasian HLA-DR3,4 heterozygous IDDM patients (n = 26) and DR-matched healthy controls (n = 19), as well as randomly selected IDDM patients (n = 27) and controls (n = 25) were studied. In addition four multiplex families (49 individuals) and eight HLA-non-identical sibpairs concordant for IDDM were analysed. The TNF-beta gene RFLP analysis showed fragments of 5.5 kb and 10.5 kb, which behaved as alleles. In all groups there was a haplotype assignment of the TNF-beta 5.5-kb allele to B8,DR3 haplotypes, and of the TNF-beta 10.5-kb allele to B15,DR4-positive haplotypes. The allelic and genotypic frequencies differed between DR3,4 IDDM patients and DR3,4 controls, and the DR3,4 control group differed significantly from the randomly selected control group (P less than 0.0079). In HLA-DR3,4- and DQw8-positive persons, the DR3 haplotypes carried the 10.5-kb allele three times more frequently in IDDM patients than in controls, suggesting that the 10.5-kb allele when present on DR3 haplotypes may contribute to susceptibility to IDDM in DR3,4 heterozygous individuals. A contributory role of the 10.5-kb allele in genetic IDDM susceptibility was supported by the sibpair analysis, in which all were TNF-beta identical. Five were 10.5 kb homozygous, and the remaining three pairs were 5.5/10.5 kb heterozygous. Twenty-five healthy and eight newly diagnosed IDDM patients were randomly selected to study the Escherichia coli lipopolysaccharides (LPS)-purified protein derivate (tuberculin) (PPD)-, and phytohaemagglutinin (PHA)-stimulated monocyte (Mo) secretions of interleukin 1 beta (IL-1 beta) and TNF-alpha in relation to the NcoI TNF-beta gene polymorphism. The LPS- and PHA-stimulated Mo IL-1 beta and TNF-alpha secretions were significantly lower for the TNF-beta 5.5/10.5 kb heterozygous individuals than for TNF-beta 10.5 kb homozygous individuals. Furthermore, the Mo IL-1 beta and TNF-alpha secretions of IDDM patients were significantly higher than the Mo secretions of TNF-beta genotype-matched healthy controls. This study suggests an association between the 10.5 kb TNF-beta allele and IDDM, and demonstrates an association between monokine responses and TNF-beta genotypes.(ABSTRACT TRUNCATED AT 400 WORDS)

Adolescent↗

Islet cell cytoplasmic antibodies (ICA) in diabetes and disorders of glucose tolerance.

Islet cell cytoplasmic antibodies were determined in 85 individuals 60 to 74 years old with fasting hyperglycaemia, in 65 patients with cystic fibrosis, in 113 patients with pancreatitis, in 21 patients with Turner's phenotype, and in 135 first-degree relatives of patients with Type 1 (insulin-dependent) diabetes. Islet cell antibodies were absent in all 60 to 74-year-old subjects with fasting hyperglycaemia detected by screening, and who did not require insulin treatment within 3 years. Islet cell antibodies were also absent in all patients with pancreatitis, cystic fibrosis, or Turner's phenotype. Islet cell antibodies were detected in 2 out of 135 (1.5%) first-degree relatives of new Type 1 diabetic patients, and in 1 out of 371 (0.3%) non-diabetic control subjects. During 12 years of follow-up 1 of the 2 first-degree relatives with islet cell antibodies and the only positive control developed Type 1 diabetes. It is suggested that islet cell antibodies are primarily associated with Type 1 diabetes and not with other disorders of glucose tolerance.

Acute Disease↗

Glucose tolerance in cystic fibrosis.

Glucose tolerance was evaluated in 356 living and dead patients with cystic fibrosis who were recorded at the Danish Cystic Fibrosis Centre. Twenty two patients (6%) were treated elsewhere, 25 (7%) were unable, unwilling or too young (age less than 2 years) to participate; 309 patients (87%) were therefore eligible for the study of whom 99 (32%) were dead and 210 (68%) were alive. Of the dead patients, 13 also had diabetes mellitus (13%). Of the living patients (median age 14 years, range 2-40), nine (4%) were known to have diabetes and all were being treated with insulin. In the remaining 201 patients an oral glucose tolerance test (1.75 g/kg body weight, maximum 75 g) was carried out. A total of 155 patients (74%) had normal glucose tolerance, 31 (15%) had impaired glucose tolerance, and 15 (7%) had diabetes mellitus according to the WHO criteria. The percentage of glycated haemoglobin (HbA1c) (reference range 4.1-6.4%) increased significantly as glucose tolerance decreased: when glucose tolerance was normal the median was 5.2%; when it was impaired the figure was 5.5%; in patients whose diabetes was diagnosed by the oral glucose tolerance test it was 5.9%; and in patients already known to have diabetes mellitus it was 8.6%. The incidence and prevalence of impaired glucose tolerance and diabetes mellitus increased with age. From the age of 15 to 30 years the decrease in the prevalence of normal glucose tolerance was almost linear. Within this age span the proportion of patients with cystic fibrosis with normal glucose tolerance was reduced by roughly 5%/year. Only 35% (95% confidence interval (CI) 22 to 48%) of the patients with cystic fibrosis who were alive at the age of 25 years had normal glucose tolerance; 32% (95% CI 14 to 49%) were diabetic. The prevalence of glucose intolerance in cystic fibrosis is rapidly increasing with age; its potentially harmful effect on the prognosis of cystic fibrosis is of increasing importance as the length of survival of these patients increases.

Adolescent↗

Repeated intraperitoneal injections of interleukin 1 beta induce glucose intolerance in normal rats.

Previous in vitro findings suggest the involvement of interleukin 1 (IL-1) in the pathogenesis of insulin-dependent diabetes mellitus. The aims of the present study were to investigate the effects of single or repeated ip injections of recombinant IL-1 beta on blood glucose and glucose tolerance in vivo. Normal Wistar Kyoto rats were injected ip with a single injection of 4 micrograms/kg of the mature form of recombinant IL-1 beta (amino acids 117-269) or once daily on 5 consecutive days. Control rats were given vehicle and were fed ad libitum or pair-fed together with the rIL-1 beta treated rats. An ip glucose tolerance test (0.2 g D-glucose/100 g) was performed 2 h after injection of rIL-1 beta. A single injection of rIL-1 beta caused a mild depression in blood glucose and an improved glucose tolerance. Multiple injections of rIL-1 beta induced a diminished weight gain, a 24-28% reduction in food intake, a lasting mild depression of blood glucose (7 days) and a transiently impaired glucose tolerance on day 5. We conclude that systemic IL-1 should be considered an important regulator of glucose homeostasis in vivo.

Animals↗

Repetitive exposure of pancreatic islets to interleukin-1 beta. An in vitro model of pre-diabetes?

The slowly progressing loss of glucose tolerance over years before clinical onset of Type 1 (insulin-dependent) diabetes mellitus may be due to repetitive immunological attacks on the pancreatic beta-cell mass. Accordingly, we studied the effects of repetitive exposure of isolated rat pancreatic islets to the beta-cytotoxic immune-mediator interleukin-1 beta. Islets were exposed thrice to 60 U/ml of recombinant interleukin-1 beta for 24 hr. The islets were allowed to recover for 6 d between the interleukin-1 beta exposure periods. After each of the three interleukin-1 beta exposure periods, islet capacity to release insulin was decreased to 12, 6 and 3% of control, respectively, and islet insulin content decreased to 75, 56 and 21%, respectively. After the two recovery culture periods, the capacity for insulin release reversed to 75 and 30% of control, respectively. An increase in islet insulin content was only seen after the first recovery culture. During repetitive as well as long-term (6 d) interleukin-1 beta exposure of islets, medium accumulation of glucagon was either increased or unaffected. In analogy, beta-cells exposed to interleukin-1 beta for 6 d showed ultrastructural signs of degeneration and cytolysis, whereas alpha-cells were intact. In conclusion, interleukin-1 beta injury to beta-cells was partially reversible, but successive episodes of islet interleukin-1 beta exposure were increasingly detrimental; alpha-cell function and structure did not show susceptibility to damage by interleukin-1 beta. These findings may contribute to our understanding of islet cell behaviour before and during onset of Type 1 diabetes.

Animals↗

Functional and morphological effects of interleukin-1 beta on the perfused rat pancreas.

We recently reported a potentiating effect of recombinant human interleukin-1 beta on glucose-stimulated insulin release from the isolated perfused pancreas. With the aim of determining whether the stimulatory effect of recombinant interleukin-1 beta on the B cell in the intact gland was modulated by varying the concentration, time of exposure to recombinant interleukin-1 beta or B-cell activity, and to elucidate a possible mechanism of action, we measured in the perfused rat pancreas the release of insulin, glucagon and/or prostaglandin E2 according to the following three different protocols: (1) perfusion with 20 ng/ml of recombinant interleukin-1 beta for 92 min at 5 and 20 mmol/l D-glucose (2) perfusion with varying concentrations of recombinant interleukin-1 beta ranging from 0.1 x 10(-3) ng/ml to 100 ng/ml at 5 and 20 mmol/l D-glucose (3) perfusion with 20 ng/ml of recombinant interleukin-1 beta at 5, 11 or 20 mmol/l D-glucose. Furthermore, in a separate set of experiments we examined the influence of the cytokine on the morphology of the endocrine pancreas. Interleukin-1 beta stimulated insulin secretion at 11 and 20 mmol/l D-glucose and potentiated first as well as second phase insulin release in a dose-dependent fashion, with decreasing effect at higher concentrations. Glucagon secretion was also stimulated by recombinant interleukin-1 beta, irrespective of increasing glucose (5, 11, 20 mmol/l) and insulin concentrations. The potentiating effect of recombinant interleukin-1 beta on insulin secretion was evident even after discontinued perfusion with the cytokine, suggesting a priming effect on B-cell function.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Comparison of biological and immunological activities of human monocyte-derived interleukin 1 beta and human recombinant interleukin 1 beta.

Recombinant human interleukin 1 beta (rhIL-1 beta) and supernatants of Escherichia coli lipopolysaccharides-stimulated human monocyte (Mo) cultures, containing native human IL-1 beta (nhIL-1 beta), demonstrate significant differences when tested in the mouse co-stimulatory thymocyte (lymphocyte activating factor [LAF]) assay. The aims of the present study were to investigate this characteristic difference between rhIL-1 beta and Mo culture supernatants (Mo supernatants), and to compare the biological and the immunological activity of preparations of rhIL-1 beta and nhIL-1 beta during each step of an identical purification procedure. The biological activity of rhIL-1 beta/nhIL-1 beta preparations was characterized by the use of the LAF assay and the rat islet insulin release assay. An IL-1 beta enzyme-linked immunosorbent assay (ELISA) was established in order to compare the biological and immunological responses of the IL-1 beta preparations. We report that the significant difference between rhIL-1 beta and supernatants of Mo cultures, which was only demonstrable in the LAF assay, is due to the presence of interleukin 6 (IL-6) in the Mo supernatants. We describe a simple cation exchange chromatography separating nhIL-1 beta and IL-6 of Mo supernatants. The highly purified rhIL-1 beta possessing the correct amino-terminal sequence and nhIL-1 beta have identical biological and immunological activities demonstrating a specific biological activity (SBA) of 3 x 10(2) U/ng IL-1 beta. Thus, we have no indications of secondary or tertiary structural differences between rhIL-1 beta and purified nhIL-1 beta. In contrast, both in the LAF assay and in the rat islet insulin release assay the SBA of an amino-extended rhIL-1 beta form, Met-Glu-Ala-Glu-rhIL-1 beta, was only 1-2% of the SBA of rhIL-1 beta, suggesting that structural changes were introduced into the molecule by the amino-terminal extension. In the present study we have demonstrated that systematic combined testing of IL-1 beta preparations in two different biological assays and an immunological assay is useful for the characterization and comparison of the activity of recombinant and native IL-1 beta preparations purified by the use of exactly the same procedures.

Amino Acid Sequence↗

Interleukin 1 beta increases the cytosolic free sodium concentration in isolated rat islets of Langerhans.

Interleukin 1 (IL-1) exerts both stimulatory and inhibitory (cytotoxic) effects on insulin-producing beta cells in isolated pancreatic islets. Since alteration in ion fluxes is crucial for endocrine cell activation and is a denominator of cell death, and since IL-1 was recently shown to increase the total sodium content in a murine pre-B-lymphocyte cell line, we investigated the effect of recombinant human IL-1 beta (rhIL-1 beta) on the cytosolic free sodium concentration (fNa+i) in rat islets. Furthermore, long-term rhIL-1 beta effects on islet cell function were studied during exposure of islets to amiloride, a blocker of the plasma membrane Na+/H+ exchange. One hour of islet exposure to 60 U/ml of rhIL-1 beta caused a threefold increase in fNa+i in islet cells, and this effect was abolished by depletion of extracellular sodium. Blockade of Na+/H+ exchange with amiloride abolished the inhibitory effect of rhIL-1 beta on insulin release. In conclusion, rhIL-1 beta was found to increase sodium influx in pancreatic islet cells. This might underlie the widespread effects of rhIL-1 beta on beta-cell function and morphology, possibly related to IL-1-mediated toxic free radical formation.

Amiloride↗

Monocyte function in IDDM patients and healthy individuals.

Interleukin 1 beta (IL-1 beta) and tumour necrosis factor alpha (TNF-alpha) may be pathogenetically important in insulin-dependent diabetes mellitus (IDDM), which is associated with genes of the HLA region. Since a regulatory role of HLA region genes on monokine production may exist, we looked for an association between the monokine and prostaglandin E2 (PGE2) responses of monocytes (Mo) from 20 healthy males (18-50 years) with HLA-DR types relevant for IDDM susceptibility and resistance (DR1,2, DR1,3, DR1,4, DR3,4). Monokine assays were established and evaluated and the secretions of IL-1 beta, TNF-alpha, and PGE2 measured in Mo cultures (2h, 6h, 20h) prepared by endotoxin-free techniques and stimulated by low-dose E. coli lipopolysaccharides (LPS). There were no significant associations between Mo responses and HLA-DR phenotype. Likewise, Mo from DR2 (n = 5) and DR4 (n = 5) homozygous healthy males demonstrated no significant differences in monokine and PGE2 responses of Mo. In the HLA class III region a diallelic TNF-beta gene NcoI polymorphism consisting of alleles of 5.5 kb and 10.5 kb was recently described and associated with susceptibility to autoimmune diseases including IDDM. We report that IL-1 beta and TNF-alpha responses of Mo from TNF-beta 10.5 kb homozygous healthy individuals were significantly higher than for TNF-beta 5.5/10.5 kb heterozygotes. IL-1 beta and TNF-alpha responses of Mo from males (18-35 years) with newly diagnosed (n = 10) and long-standing IDDM (n = 10) and from age- and HLA-DR-matched healthy males (n = 10) were studied. LPS, gamma interferon (IFN), and TNF-alpha-stimulated Mo cultures were investigated. No significant differences were found between Mo responses of IDDM patients and controls. IFN (1000 U/ml) in the presence of LPS significantly potentiated LPS-stimulated Mo TNF-alpha secretion and reduced the levels of IL-1 beta immunoreactivity in Mo lysates. IFN and TNF-alpha did not have any effects on LPS-stimulated Mo secretion of IL-1 beta immunoreactivity. We conclude that Mo IL-1 beta and TNF-alpha production is normal in patients with recent-onset and long-standing IDDM. The interindividual differences in monokine responses may be accounted for by the diallelic human TNF-beta gene polymorphism rather than by HLA class II genes. This observation may be important for understanding the association of certain HLA haplotypes with autoimmune phenomena and disease.

Adolescent↗

Nephrotoxicity of cyclosporin A in patients with newly diagnosed type 1 diabetes mellitus.

Renal function was studied in 18 patients with Type 1 diabetes mellitus. All were participating in the Canadian-European randomized placebo-controlled cyclosporin trial in newly diagnosed Type 1 diabetic patients, nine being randomized to placebo, and nine to cyclosporin A. During treatment for 12 to 18 months, cyclosporin A caused significant reductions in the glomerular filtration rate (before drug withdrawal, cyclosporin 97 +/- 18 vs placebo 125 +/- 16 ml min-1 1.73-m-2, p less than 0.05), renal plasma flow (454 +/- 83 vs 536 +/- 70 ml min-1 1.73-m-2, p less than 0.05), and lithium clearance (17 +/- 3 vs 28 +/- 5 ml min-1 1.73-m-2, p less than 0.05). The fractional proximal reabsorption was increased (0.82 +/- 0.03 vs 0.78 +/- 0.03, p less than 0.05), and the fractional distal sodium reabsorption reduced (0.88 +/- 0.03 vs 0.94 +/- 0.02, p less than 0.05). These results are in accordance with the hypothesis that the nephrotoxic effect of cyclosporin A results from a preferential constriction of afferent glomerular vessels. One year after withdrawal of the drug, all variables were similar in the two groups, except for blood glucose control which was worse in the cyclosporin A treated group. When corrected for differences in blood glucose control it appeared that in three out of nine patients glomerular filtration rate had not completely returned to the reference range of the placebo group. We conclude that the nephrotoxic side-effects of cyclosporin A treatment for 1 year are reversible. There are, however, signs of minor and perhaps chronic renal injury.

Adult↗

Not all insulin secretagogues sensitize pancreatic islets to recombinant human interleukin 1 beta.

The purpose of this study was to test the influence of different insulin secretagogues on interleukin 1 beta mediated injury to isolated rat pancreatic islets. Islets were exposed to interleukin 1 beta for 6 days. During exposure, beta-cells were stimulated with glucose (11 mmol/l vs 3.3 mmol/l) or with non-nutrients as tolbutamide (250 mumols/l), iso-butyl 1-methyl-xanthine (50 mumols/l), or glucagon (10 mg/l). At 3.3 mmol/l of glucose, 60,000 U/l of interleukin 1 beta caused an inhibition of medium insulin accumulation to 62 +/- 5% of control from 48 h to 6 days of exposure, whereas islet DNA content was unaffected. At 11 mmol/l of glucose, interleukin 1 beta dose-dependently decreased medium insulin accumulation (e.g. 60,000 U/l of interleukin 1 beta, 12 +/- 3% of control) and islet content of DNA (60,000 U/l of interleukin 1 beta, 60 +/- 8% of control). During beta-cell stimulation with tolbutamide, interleukin 1 beta caused inhibition of insulin accumulation to 36 +/- 9% of control. In contrast, on islets stimulated with iso-butyl 1-methyl-xanthine or glucagon, the effects of interleukin 1 beta were equivalent to those on non-stimulated islets. These differences were paralleled by differences in the interleukin 1 beta effect on islet morphology. In conclusion, high beta-cell activity (as measured by islet insulin release) may increase islet susceptibility to interleukin 1 beta, however, depending upon the intracellular pathway through which insulin secretion is activated.

1-Methyl-3-isobutylxanthine↗