Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0011854 (type 1 diabetes)
20,749 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

IgA and IgG antigliadin antibodies were measured in 498 patients with insulin dependent diabetes mellitus and no history of intestinal malabsorption. Thirty patients had abnormal concentrations of antigliadin antibodies; 22 of these had an intestinal biopsy carried out and 16 of the 22 had subtotal villous atrophy suggestive of coeliac disease (prevalence 3.2%). There were no significant differences between patients with coeliac disease and diabetes and diabetic patients with normal IgA antigliadin antibodies in any of the nutritional variables measured, duration of diabetes, and mean insulin requirement. The mean age of onset of diabetes and attainment of expected height for age were both significantly lower in the patients with both diseases. Typing HLA classes I and II was done in 242 patients. The incidence of HLA-B8, DR3, and DQW2, which are commonly associated with both the diseases, is increased when both are present.
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PMID:Screening of diabetic children for coeliac disease with antigliadin antibodies and HLA typing. 203 7

First-degree relatives of patients with insulin-dependent (type I) diabetes (n = 264 from 106 families) were evaluated with HLA typing and determination of competitive insulin autoantibodies (CIAAs) and islet cell autoantibodies (ICAs). The levels of CIAAs in 30 relatives exceeded our upper limit of normal (greater than or equal to 39 nU/ml), and 30 had high-titer ICAs (greater than or equal to 40 Juvenile Diabetes Foundation units [JDF U]). Eleven of the HLA-typed relatives developed diabetes during follow-up. Twenty-three percent (28 of 123) of the relatives with at least one HLA-DR4 allele were CIAA+ (CIAA greater than or equal to 39 nU/ml) versus 4% (6 of 141) among DR4- relatives (P less than 0.0001). Twenty-one of 22 of the highest CIAA values were all in the DR4+ group (DR4+ vs. DR4-, P = 0.003, Wilcoxon's rank-sum test). HLA-DR3 did not correlate with the level of CIAAs, and neither DR3 nor DR4 correlated with titer of ICAs measured in JDF U. We conclude that, in first-degree relatives of patients with type I diabetes, there is a striking association with HLA-DR4 in both the prevalence of relatives exceeding the normal CIAA range and in the level of CIAAs. These data suggest that a gene on HLA-DR4 haplotypes contributes to the level of anti-insulin autoimmunity, and we hypothesize that DR4-associated diabetes susceptibility, distinct from DR3-associated susceptibility, may be secondary to this influence.
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PMID:Specific association of HLA-DR4 with increased prevalence and level of insulin autoantibodies in first-degree relatives of patients with type I diabetes. 204 Mar 87

It has now become clear that certain HLA antigens are associated with disease susceptibility more than any other genetic markers. Insulin-dependent diabetes mellitus (IDDM or type I) is an HLA-associated condition. Moreover, there is evidence to show that IDDM is a genetically programmed autoimmune disease. Studies of the HLA-DR region have shown a strong association with IDDM, with over 90 per cent of IDDM patients possessing DR3 and/or DR4. Although the HLA-DR region is a major component in the inherited disease susceptibility, it is not the only gene region involved. Recent studies demonstrated that HLA-DQ may be more closely linked to the disease locus than HLA-DR. Sequence analysis of the HLA-DQ3 gene products suggest that a single amino acid (aspartic acid) at position 57 is uniquely important for determining susceptibility or resistance to IDDM. Although there is a strong association of certain HLA loci with IDDM, it may not explain nor account for all the genetic susceptibility to the disease. It seems that 60 per cent of the genetic basis of IDDM is related to the HLA gene (chromosome 6) and another 40 per cent is non-HLA-associated (i.e., chromosomes 2, 7, 11, and 14). Even though great progress has been made in the understanding of the genetics of IDDM, the mode of inheritance of the disease remains controversial. The present review discusses various aspects of the autoimmune process believed to be involved in pancreatic beta cell destruction in individuals genetically susceptible to IDDM. The possible modes of inheritance and new data regarding estimated risks of transmitting the disease are presented.
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PMID:Insulin-dependent diabetes mellitus and immunogenetics: maternal and fetal considerations. 205 68

Type 1 (insulin-dependent) diabetes mellitus results from an autoimmune disease which is directed to insulin-secreting islet cells. In man, it is closely associated to definite major histocompatibility complex alleles. The islets are infiltrated by inflammatory cells (insulitis). Anti-islet cell autoantibodies are present in most patients and represent a valuable marker for the autoimmune reaction. The major role of autoreactive T lymphocytes has been demonstrated in animal models of spontaneous insulin-dependent diabetes (the BB rat and the NOD mouse). Such pathophysiological concepts already have clinical applications. The presence of anti-islet cell antibodies identifies patients with type 1 diabetes of slow onset who initially present with non-insulin dependent diabetes. In the same respect it is now feasible to predict the possible occurrence of diabetes in 'at risk' subjects (such as siblings of a diabetic patient) on the basis of HLA typing and the presence of markers of anti-beta cell immunity. Lastly, both in animal models and in human diabetes, it has been demonstrated that immune intervention can alter the course of anti-islet autoimmunity. From these results one may hope in the future to get preventive treatment of type 1 diabetes before the onset of metabolic disturbances.
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PMID:[Type 1 diabetes mellitus, autoimmune disease: physiopathologic aspects and practical applications]. 206 84

The mechanism of pancreatic beta-cell destruction in type I (insulin-dependent) diabetes mellitus (IDDM) involves autoimmune events directed against these cells. Anti-beta-cell autoimmunity occurs in genetically predisposed individuals and may precede clinical manifestations of IDDM by several years. Markers for beta-cell autoimmunity, especially islet-cell antibodies, are being used with increasing reliability both for detection of IDDM and for evaluating the risk of development of the disease. HLA alleles associated with IDDM include DR3 and DR4, with the risk of IDDM being especially high in individuals with the heterozygous combination DR3/DR4. Recent advances in molecular biology have resulted in more accurate identification of genetic variants and even of amino acid sequences associated with IDDM. These markers can be used to identify patients with genetic susceptibility to the disease. The mechanism of action of genes associated with IDDM is as yet unknown but probably involves the receptor function of HLA molecules for antigens during immune responses.
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PMID:[New data concerning the etiology of insulin-dependent diabetes]. 206 53

Associations between a large number of diseases and markers within the major histocompatibility complex (MHC) have been described. In particular, susceptibility to several autoimmune disorders, including type I diabetes mellitus and rheumatoid arthritis, is linked to genes within the MHC and strong population associations are demonstrable between certain HLA class II alleles and these conditions. Genetic mapping of HLA susceptibility loci has traditionally relied on the use of phenotypic markers defined by alloantisera, cellular typing reagents and biochemical analysis of histocompatibility antigens. Polymerase chain reaction sequence-specific oligonucleotide (PCR-SSO) typing combines the ability to define the finest of HLA specificities, by analysis of the corresponding DNA sequences, with the possibility of study large populations of normal and affected individuals. The applications of this technology to characterizing precisely the MHC loci associated with susceptibility to autoimmune diseases such as rheumatoid arthritis, type I diabetes mellitus, coeliac disease and pemphigus vulgaris are reviewed here.
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PMID:PCR-SSO typing in HLA-disease association studies. 206 41

Insulin-dependent diabetes mellitus (IDDM) is associated with several DR3- or DR4-containing ancestral haplotypes (AHs). Using pulsed field gel electrophoresis (PFGE), long range maps of 35 haplotypes have been derived and classified. Two diabetogenic DR3-containing AHs (8.1 and 18.2) possess deletions in the central non-HLA region; these have not been found on non-diabetogenic AHs tested to date. In addition, 8.1 and 18.2 also carry other deletions not found on other AHs. Three DR4 containing AH lack a Not I site, which may imply excision of an unidentified gene. These and other data suggest that deletions may be relevant to the pathogenesis of autoimmune disease, possibly through causing quantitative differences in autoimmune responses involved in IDDM. The MHC contains several regions of potential interest in relation to susceptibility to IDDM; these may explain the association with only certain DR3- and DR4-carrying AH and DR3,4 heterozygosity in terms of cis and trans interactions. On the other hand, the class II region may be particularly important in protection.
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PMID:Characterization of MHC ancestral haplotypes associated with insulin-dependent diabetes mellitus: evidence for involvement of non-HLA genes. 209 82

This study was carried out in Sardinia, an Italian region with a very high IDDM incidence. HLA class I and class II antigens were studied in 97 unrelated IDDM patients, 33 complete families with at least one affected member each, and 559 healthy controls. Molecular typing of the DQB1 alleles was carried out in 31 patients and 61 controls. The haplotypes were determined by family studies. The HLA-DR3, DQw2, and DR4 antigens were positively associated with IDDM. The DR3 antigen was nearly always associated to B18 and frequently carried by the extended haplotype A30 Cw5 B18 3F130 DR3 DQw2. The genotype analysis of the patients showed a strong increase of the DR3/DR4 heterozygotes with a relative risk higher than that of the DR3 and DR4 homozygotes. The DR2 antigen was negatively associated with IDDM in the central island districts but not in the southern districts. The DQB1 molecular analysis showed only three alleles in the patients: DQB1*0201 (75.8 per cent), DQB1*0302 (16.1 per cent), and DQB1*0502 (8.1 per cent). These alleles are non Asp 57, so it would seem that nearly if not all Sardinian IDDM patients are NA/NA homozygotes. The DQB1*0502 allele, extremely rare in other Caucasian populations, represents in Sardinia about 70 per cent of the HLA-DR2 haplotypes, contributing to the increase of the pool of IDDM susceptible genes. Moreover it is carried in 27 per cent of the DR2 positive individuals with the extended haplotype A2 Cw7 Bw58 3F31 DR2 DQw1.AZH.
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PMID:Serological and molecular studies of HLA in insulin-dependent diabetes mellitus in Sardinia. 210 47

Fifteen women with positive islet cell antibodies were identified in a group of 115 consecutive patients found to have impaired glucose tolerance in pregnancy. These subjects were postulated to be at increased risk of later developing type 1 diabetes mellitus. They were examined post--partum for HLA types known to be associated with this disease and for any increase in Interleukin 2 receptor expression or alteration of T cell subsets of possible relevance to its pathogenesis. Fifteen women negative for islet antibodies and with normal glucose tolerance during previous pregnancy and 15 women with a normal fasting plasma glucose who had never been pregnant were studied as controls. Using flow cytometric techniques a significant increase in both the number and proportion of activated (Interleukin 2 receptor, CD25) lymphocytes in the peripheral blood of women who had islet cell antibodies and previous impaired glucose tolerance in pregnancy was found (0.14 +/- SE 0.03 x 10(9)/l; 7.1 +/- 1.1%) when compared with normal parous controls (0.09 +/- 0.01 x 10(9)/l; 4.2 +/- 0.6%), p less than 0.01 x 10(9)/l; showed significant increases when compared with nulliparous controls (0.04 +/- 0.01 x 10(9)/l; 2.1 +/- 0.2%), p less than 0.01. No differences were detected between the three groups with respect to total T-lymphocytes (CD3), helper T-lymphocytes (CD4), suppressor cytotoxic T-lymphocytes (CD8), or the inducer of suppressor (Leu 3+/Leu 8+) subset of T-lymphocytes. Three women persistently islet cell antibody positive, two of whom were HLA DR4, showed impaired glucose tolerance at the time of lymphocyte subset analysis, while two further patients, one DR3 and the other DR4, had developed type 1 (insulin-dependent) diabetes. No correlation between increased Interleukin 2 receptor expression and glucose intolerance was demonstrated. We conclude that islet cell antibody positive women with impaired glucose tolerance during pregnancy are at increased risk of later developing type 1 diabetes but that heightened immune activation present in these women is in part a post-pregnancy phenomenon.
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PMID:Increased interleukin 2 receptor expression in post-gestational women: relationship to impaired glucose tolerance and islet cell antibodies in pregnancy. 210 86

Tumour necrosis factors alpha and beta (TNF-alpha and TNF-beta) and gamma interferon (IFN-gamma) were measured by ELISA in the supernatants of phytohaemagglutinin (PHA)-activated peripheral blood mononuclear cells (PBMNC) from 98 individuals (60 controls and 38 patients with insulin-dependent diabetes mellitus [IDDM]). The PBMNC were incubated with varying concentrations of PHA (0, 1, 5, and 10 micrograms/ml) for 72 h. In our population study we observed a correlation between the levels of secretion of TNF-alpha and IFN-gamma but not TNF-beta. The complete data set was analysed by non-parametric tests, and no associations with HLA phenotypes existed. Reduced levels of TNF-beta, but not TNF-alpha or IFN-gamma, secretion were found in IDDM patients stimulated with 1 and 5 micrograms/ml of PHA (P = 0.001 and 0.02 respectively). None of the lymphokine secretion levels at any PHA concentration correlated with particular HLA phenotypes. Analysis of the natural log-transformed data indicated that only for the TNF-beta levels (at 5 micrograms/ml PHA) could subjects be divided into high and low secretors, which also did not correlate with a particular HLA-B or -DR antigen.
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PMID:The effect of HLA and insulin-dependent diabetes mellitus on the secretion levels of tumour necrosis factors alpha and beta and gamma interferon. 212 64


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