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J Timsit

Publications and source records attributed to J Timsit.

At least 55 records · Page 3Linked to original sources

Eating disorders and insulin-dependent diabetes mellitus (IDDM): relationships with glycaemic control and somatic complications.

This study was designed to assess (by means of a diagnostic interview based on DSM-III-R criteria) the prevalence of eating disorders in 69 insulin-dependent diabetic (IDDM) out-patients, and the relationship with somatic risks. We found no cases of anorexia nervosa or bulimia nervosa, current or lifetime, in male patients with IDDM. No female patients with IDDM had anorexia, and 4.8% had current and lifetime bulimia. Eating disorders not otherwise specified (bulimic type) were significantly more frequent in women than in men (lifetime incidence 43% vs. 21%; current incidence 33% vs. 5%), and generally occurred after the onset of IDDM. Self-reports of bulimic behaviours according to the Bulimic Investigatory Test of Edinburgh (BITE) were associated with high levels of glycosylated haemoglobin. There was no association between eating disorders (current or lifetime), with somatic complications being more likely to be explained by a long duration of illness and impaired glycaemic control.

Adult↗

Overexpression of placental leptin in diabetic pregnancy: a critical role for insulin.

Leptin, a small peptide produced by adipocytes, is implicated in an increasing number of endocrine regulations, including adiposity, satiety, puberty, and fertility. Although the factors involved in controlling maternal and fetal weight gain during pregnancy have not been fully elucidated, leptin has recently emerged as such a potential factor. In our study, we report the presence of high amounts of leptin mRNA and immunoreactive protein in the human placenta, establishing the placental synthesis of this hormone. A large (three- to fivefold) augmentation in leptin mRNA and protein was found in placentas from insulin-treated diabetic women. This finding was associated with increased concentrations of leptin and insulin in venous cord blood without modification of maternal circulating leptin levels. These data provide evidence that the placenta is a site for regulated leptin production in utero. Insulin is likely to play a critical role in this regulation, thus emphasizing the importance of placental leptin signaling in diabetic pregnancy.

Adult↗

High affinity presentation of an autoantigenic peptide in type I diabetes by an HLA class II protein encoded in a haplotype protecting from disease.

Polymorphism of the genes coding for the human histocompatibility leukocyte antigen class II DR and DQ molecules makes the single largest genetic contribution to the risk of developing insulin-dependent diabetes mellitus (IDDM) and can be associated with highly elevated as well as decreased disease frequency. The mechanism of IDDM risk modification by HLA polymorphism is likely to involve differential presentation of autoantigenic peptides by HLA class II proteins. We have generated T cell lines (TCL) with specificity for the IDDM autoantigen 65 kDa glutamic acid decarboxylase (GAD65) from lymphocytes of two patients carrying HLA class II alleles associated with distinct risk of IDDM (DRB1*0101/0401 and 1302/1501). For both patients, TCL generated at various time points all recognized single epitopes mapped as GAD 88-99 and 248-257, respectively. These epitopes are presented by the DRB1*0101 and DRB5*0101, HLA class II molecules associated with a moderately elevated risk of IDDM, or carried in a strongly protective haplotype, respectively. In an HLA/peptide binding assay, epitope GAD 248-257 was shown to possess high affinity for DRB5*0101. This epitope overlaps with a central GAD peptide binding to the high risk allele DQB1*0302 and containing a Coxsackie P2C-identical mimicry sequence, raising the possibility of competition of DRB5*0101 and DQB1*0302 for binding of a central GAD65 fragment.

Adult↗

Identification of 14 new glucokinase mutations and description of the clinical profile of 42 MODY-2 families.

Mutations in glucokinase are associated with defects in insulin secretion and hepatic glycogen synthesis resulting in mild chronic hyperglycaemia, impaired glucose tolerance or diabetes mellitus. We screened members of 35 families with features of maturity-onset diabetes of the young for mutations in the glucokinase gene and found 16 different mutations. They included 14 new mutations in the glucokinase gene: 9 missense mutations (A53S, G80A, H137R, T168P, M210T, C213R, V226M, S336L and V367M); 2 nonsense mutations (E248X and S360X); a deletion of one nucleotide resulting in a frameshift (V401del1); a substitution of a conserved nucleotide at a splice acceptor site (L122-1G-->T); and a 10 base pair deletion that removed the GT of the splice donor site and the following eight nucleotides (K161 + 2del10). In addition, we found two previously identified mutations: R186X and G261R. Study of 260 subjects with glucokinase-deficient hyperglycaemia from 42 families with 36 different GCK mutations made it possible to define the clinical profile of this subtype of non-insulin-dependent diabetes mellitus (NIDDM). Hyperglycaemia due to glucokinase deficiency is often mild (fewer than 50% of subjects have overt diabetes) and is evident during the early years of life. Despite the long duration of hyperglycaemia, glucokinase-deficient subjects have a low prevalence of micro- and macro-vascular complications of diabetes. Obesity, arterial hypertension and dyslipidaemia are also uncommon in this form of NIDDM.

Adolescent↗

Insulin-dependent diabetes mellitus in non-DR3/non-DR4 subjects.

Five to 20% insulin-dependent diabetes mellitus (IDDM) patients do not bear the classical HLA class II DR3 or DR4 susceptibility haplotypes. We have studied the clinical characteristics, anti-islet cell antibodies (Ab) and HLA class II genotypes in 72 non-DR3/non-DR4 Caucasian patients, mainly adults, presenting with clinically typical IDDM. The DRB1*08-DQB1*0402-DQA1*0401 haplotype frequency was increased in the patients compared to 272 non-DR3/non-DR4 controls (OR = 5.9, Pc < 0.005). This association was even stronger in the Ab-positive patients (DRB1*08: OR = 7.2, Pc < 0.005; DQB1*0402: OR = 9.2, Pc < 0.005; DQA1*0401: OR = 9, Pc < 0.02). In those subjects the DRB1*15 allele was less frequent than in controls (OR = 0.1, Pc = 0.05). By contrast, IDDM patients with no Ab showed no particular association with HLA class II allele although they had clinical and metabolic characteristics similar to that of Ab-positive subjects. The genetic basis for IDDM predisposition in the Ab-positive subgroup remains elusive since the DRB1*08-DQB1*0402 haplotype encodes an Asp57-positive DQ beta chain. However, all DR8 patients had a non-Asp57 encoding DQB1 allele on the second haplotype. Thus, trans-complementation leading to peculiar predisposing DQ alpha beta heterodimers may occur. Alternatively, a direct role of the DRB1*08 allele cannot be excluded. These results show that autoimmune type 1 diabetes occurs in non-DR3/non-DR4 subjects, mainly adults. They further support that IDDM, when defined on a clinical basis, encompass different pathogenetic entities.

Adolescent↗

[Emphysematous pyelonephritis in diabetics].

Emphysematous pyelonephritis is a rare, life-threatening complication of upper urinary tract infections, characterized by the presence of gas in renal parenchyma and perirenal space. It occurs in 90% of cases in diabetic patients and E coli is the most common causative germ. The pathogenesis probably involves several factors including enhanced proliferation of microorganisms due to altered immune defences, mixed acid fermentation of glucose leading to gas production, and decreased elimination of the gas because of impaired tissue perfusion. Diagnosis is often delayed because the symptoms may be non-specific, as illustrated by the two cases we report herein. In patients with diabetes and febrile urinary tract infection, obstruction of the urinary tract should first be eliminated by echography. Then, if the infection does not rapidly respond to antimicrobial therapy, a scan should be performed. Aggressive management including correction of hemodynamics, parenteral antimicrobial therapy, and diabetes control with insulin therapy is mandatory, but a surgical procedure (nephrectomy or drainage) is almost always required.

Diabetes Mellitus, Type 2↗

Identification of nine novel mutations in the hepatocyte nuclear factor 1 alpha gene associated with maturity-onset diabetes of the young (MODY3).

Maturity-onset diabetes of the young (MODY) is a genetically heterogeneous subtype of non-insulin-dependent diabetes mellitus (NIDDM) characterised by early onset, autosomal dominant inheritance and a primary defect in insulin secretion. Recent studies have shown that mutations in the two functionally related transcription factors, hepatocyte nuclear factor 4 alpha (HNF-4alpha) and hepatocyte nuclear factor 1 alpha (HNF-1alpha) are associated with the MODY1 and MODY3 forms of diabetes respectively, whereas mutations in the enzyme glucokinase are the cause of the MODY2 form. We have examined 10 unrelated Caucasian families in which MODY/NIDDM co-segregated with markers for MODY3 for mutations in the HNF-1alpha gene (TCF1). Ten different mutations were observed in these families, all of which co-segregated with diabetes. There were no obvious relationships between the nature of the mutations observed (i.e. frameshift, nonsense, or missense) or their location in the gene with clinical features of diabetes (age at onset, severity) in these families. The mechanisms by which mutations in the HNF-1alpha gene cause diabetes mellitus are unclear but might include abnormal pancreatic islet development during foetal life thereby limiting their later function, as well as impaired transcriptional regulation of genes that play a key role in normal pancreatic beta cell function.

DNA-Binding Proteins↗

Immune mechanisms leading to type 1 insulin-dependent diabetes mellitus.

Insulin-dependent diabetes mellitus (IDDM) results from the autoimmune destruction of the endocrine (beta) cells responsible for the secretion of insulin. Experimental and human studies have resulted in unpredicted developments over the past ten years. Against most predictions, a long list of possible autoantigens has been defined, most of which are not beta-cell specific. Seemingly, up to 10 to 20 genetic regions, rather than 2 to 3 as initially predicted, carry markers that associate them with IDDM. Finally, there is accumulating evidence that beta cells are not a passive bystander in the event that leads to the activation of the diabetes autoimmune reaction. Whether the immune system or the islet, or both, are at the initiation of the disease process is a challenge for the near future.

Animals↗

Insulin responses to intravenous glucose, intravenous arginine and a hyperglycaemic clamp in ICA-positive subjects with different degrees of glucose tolerance.

The relationship between altered insulin secretion and impaired glucose tolerance was studied in 32 non-obese subjects aged 14-49 years with islet-cell antibodies (ICA) and fasting blood glucose below 7.9 mmol/l, using oral (OGTT) and intravenous (IVGTT) glucose tolerance tests. Glucose tolerance was normal in 19 subjects, impaired (IGT) in 4 and satisfied diabetic criteria in 9. Fifteen of these subjects and 8 ICA-negative controls also underwent a hyperglycaemic clamp (10 mmol/l) and a glucose-potentiated IV arginine bolus. Acute insulin response to IVGTT and insulin and C-peptide responses to the hyperglycaemic clamp and the arginine bolus were dramatically lower (p < 0.001) in diabetic and IGT subjects than in ICA-positive patients with normal glucose tolerance and control subjects. Insulin responses to the three tests were inversely correlated with plasma glucose levels and the area under the curve of OGTT. The correlations between the degree of glucose tolerance and insulin responses to IVGTT, the hyperglycaemic clamp and the arginine bolus were virtually identical. It is concluded that insulin responses to the three stimuli were severely altered in ICA-positive patients with impaired glucose tolerance or asymptomatic diabetes, normal in normotolerant ICA-positive subjects, and correlated with glucose tolerance.

Administration, Oral↗

Insulin-dependent diabetes and human leucocyte antigens.

The association of diabetes with HLA class I alleles in the early 1970s and with HLA class II alleles in the late 1970s provided a crucial, though indirect, indication of the role of immune phenomena in the development of insulin-dependent diabetes mellitus (IDDM). Genotyping of HLA alleles in the mid-1980s opened up a new era. The very precise definition of susceptibility and protection alleles proved to be an important diagnostic factor in predicting IDDM and was also the first step towards an understanding of the role of class II antigen-presenting molecules in the development of the autoimmune reaction responsible for the destruction of insulin-secreting cells and the subsequent onset of diabetes. Animal models have been instrumental in studying the possible relations between the development of IDDM autoimmunity and the expression of particular major histocompatibility complex alleles on a multigenic susceptibility background.

Alleles↗

Insulin and the prevention of insulin-dependent diabetes mellitus.

Insulin deficiency due to autoimmune destruction of pancreatic beta cells (insulin is an autoantigen) is responsible for insulin-dependent diabetes mellitus. Since 1923, substitutive administration of insulin has been used to treat the disease. Surprisingly, initial usage of insulin is associated with partial resumption of insulin secretion in most patients. This phenomenon is intensified by aggressive insulin therapy. When observed at a late phase of destruction, it has been interpreted as an immunomodulatory effect of insulin which is presumed to act either by masking the target of effector cells in the autoimmune reaction (beta cells at rest because of glycaemic normalisation would expose fewer antigens) or by direct action on autoreactive T lymphocytes (which are rich in insulin receptors). There could also be a direct beneficial effect on anti-apoptotic or pro-regenerative beta cells. Efficient prevention of diabetes has been achieved by administration of parenteral insulin to non-obese diabetic (NOD) mice. Certain sequences of the B chain appear to be responsible for this effect, which seems to be immunomediated. Some preliminary data from the groups of G. Eisenbarth and N. MacLaren have suggested that this effect could be obtained in man by administering small doses of subcutaneous insulin to prediabetic patients. Two trials have been under way since 1994: DPT1 (a non-randomised trial concerning children and adults at high risk) in the United States, and EPP-SCIT (a randomised trial concerning children at very high risk) in Europe. Another approach has also been attempted in diabetes as well as other diseases with an organ-specific autoimmune reaction (SEP, PR) i.e. oral administration of an antigen present at the reaction site. A positive effect has been shown by the group of H. Weiner in the NOD mouse in which islet infiltration was reduced and diabetes prevented by "oral tolerisation" with insulin. Oral insulin is easy to use in therapeutic studies and is currently being administered in two trials: DPT1 (prediabetic children and adults at moderate risk) in the United States, and DIOR (recently diabetic children and adults) in France. However, recent experimental data suggest that oral administration of an antigen in certain artificial circumstances can trigger an autoimmune reaction in the animal, which would indicate that due caution should be exercised in trials involving prediabetic patients.

Animals↗