Search PubMed⌕ Search

Biomedical subjects

J Hors

Publications and source records attributed to J Hors.

At least 37 records · Page 2Linked to original sources

Testing parental imprinting in insulin-dependent diabetes mellitus by the marker-association-segregation-chi 2 method.

Among patients with insulin-dependent diabetes mellitus (IDDM), an excess of DR3 and DR4 alleles is classically described when compared with the general population. In addition, an excess of maternal DR3 and paternal DR4 alleles among patients (DR3DR4) is observed. In order to explain these observations, two alternative hypotheses can be tested: maternal effect and parental imprinting. Maternal effect has been tested and not rejected on a sample of 416 caucasians affected with IDDM. Under this hypothesis, the children of a DR3 mother are expected to have an earlier exposure and, hence, an earlier age at onset. However, we did not observe such a difference in age at onset in this data set. Using the marker-association-segregation-chi 2 method, we have tested four hypotheses with different parental effects of two susceptibility alleles, alpha 0 and beta 0, at two different closely linked loci. Under the hypothesis that best fitted the data, the probability of being affected depended on the parental inheritance of the susceptibility alleles, suggesting parental imprinting (i.e., differential role of maternal and paternal allele), without evidence for a cis-trans effect. We conclude that parental imprinting on a specific allelic combination may explain the observations on the HLA genotypes of the patients and their relatives.

Chi-Square Distribution↗

The "Transplant-Euro-Computer-Network": a European medical information system.

The paper provides an overview of the European Computer Network interconnecting Transplantation facilities (Organ Exchange Organizations, Tissue Banks, and Registries). Background, usage scenarios, technical concepts, and perspectives are outlined. The key functionalities supported are the European Waiting List of urgent patients, the double Registration Check (DRC) Procedure, and interpersonal messaging functions. The DRC is based on a biological identification using the patients HLA characteristics to guarantee the confidentiality and privacy of patient data in inter-organizational communications.

Computer Communication Networks↗

[Epidemiology and results of organ grafts].

Using the complete, multicentric Registry of organ transplantation in France, from 1970 to 1992, including 26,485 transplantations (kidney, heart, heart-lungs, lungs, liver), we studied four statistical parametres: 1. movement on the waiting list; 2. mean waiting time; 3. actuarial survival of the graft for the kidney, heart and liver; 4. number of recipients surviving with a functioning graft as of 31 December 1992. Patients awaiting a kidney transplant comprise a group that differs epidemiologically from the others on the basis of the length of the waiting list, entering and existing flux, and for the mortality rate of patients waiting for a graft. Similarly, the actuarial survival profile is different for the first year in kidney transplant recipients compared to the others.

France↗

HLA-DRB1, DQA1 and DQB1 DNA polymorphisms in healthy Algerian and genetic relationships with other populations.

This study presents the results of HLA-DRB1, -DQA1, and -DQB1 sequence-specific oligonucleotide probe (SSOP) typings for a population sample of 47 individuals originating from Western Algeria. Allele and haplotype frequencies, as well as linkage disequilibria are computed by the standard methods used for the XIth International Histocompatibility Workshop data. A total of 24 alleles are detected at the DRB1 locus, where a very high heterozygosity level (0.914) is found. The highest DRB1 frequencies are 0.160, DRB1*1101, and 0.138, for DRB1*0301 and DRB1*0701. The DQA1 and DQB1 loci are less polymorphic. Among the 8 DQA1 alleles detected, DQA1*0501 is highly predominant with a frequency of 0.383. Thirteen DQB1 alleles are observed among which DQB1*0301 and DQB1*0201 are the most frequent (0.351 and 0.245, respectively). Three haplotypes predominate clearly: DRB1*1101-DQA1*0501-DQB1*0301 (0.138), DRB1*0701-DQA1*0201-DQB1*0201 (0.128) and DRB1*0301-DQA1*0501-DQB1*0201 (0.117). The two latter are among the most frequent haplotypes found in European and North American Caucasoid populations, but the DQA1*0501-DQB1*0201 association is not significant in Algerians. The genetic distances computed for each locus among a set of populations from different continents are significantly correlated to geography. They indicate that the Algerians are very close to South European populations, particularly to Sardinians, Italians, Romanians and French, with some intermediate characteristics between Europeans and sub-Saharan Africans. These results may serve as reference for future studies of HLA and disease in the Algerian population.

Adult↗

Trans-encoded DQ alpha beta heterodimers confer susceptibility to myasthenia gravis disease.

Myasthenia gravis (MG) is an autoimmune disease associated with thymic abnormalities (hyperplasia and thymoma). With classical typing method, no clear association was observed between HLA class II and MG disease except in a subgroup of patients with hyperplasia. The aim of our work was to investigate a possible correlation between HLA class II alleles and MG disease using molecular typing which was proved to be much more informative in many diseases. Using polymerase chain reaction and 75 sequence-specific oligonucleotide probes, frequencies of HLA-DRB1, B3, B4, DQA1, DQB1 and DPB1 alleles were identified in 47 Caucasian MG patients and 105 healthy controls. None of the HLA class II alleles identified, was significantly increased in the group of patients compared to controls. However, further analysis of DQA1-DQB1 genotype demonstrated that susceptibility to the disease is associated with two trans DQ alpha beta heterodimers encoded by DQA1*01-DQB1*0201 or DQA1*01-DQB1*0301 combinations (72% in patients vs 29% in controls, RR = 6.2, Pc < 0.001). DQA1*01 group of alleles (DQA1*0101, 0102 or 0103 allele) encode DQ alpha chains sharing long polymorphic sequence including non-charged glycine and positively charged arginine residues at positions 55 and 64, respectively. DQB1*0301 and DQB1*0201 encode a DQ beta chain bearing a negatively charged glutamic acid at position 45 and 46, respectively. A combination of such DQ alpha and DQ beta chains may form susceptibility peptide-binding groove. In MG patients with thymic hyperplasia an additional association with DQA1*0501 in linkage disequilibrium with DQB1*0201 and DQB1*0301 alleles was observed (RR = 17.2, Pc < 0.001). Our data indicate that MG, like other autoimmune diseases, is associated with particular HLA-DQ alpha beta heterodimers, independently of clinical parameters. A role for DQA1*0501 allele in the manifestation of thymic hyperplasia disorders is suggested.

Adolescent↗

Multifactorial analysis of the outcome of 6430 cadaver kidney grafts.

A total of 6430 cadaver kidney grafts performed within the network of France-Transplant between 1 January 1978 and 1 January 1989 were analyzed. Each case was examined comprehensively in regard to 12 variables. A multifactorial analysis (Cox regression) was used to determine the degree of association between each covariate and the outcome of the graft. The results were evaluated by calculating relative risks of graft failure for each variable. A total of seven covariates appeared to influence graft survival significantly: the period of transplantation (P = 10(-8)), retransplantations (P = 0.003), age and sex of the donor (P = 0.003 and 0.009 respectively), duration of pretransplant dialysis (P = 0.03), pretransplant sensitization to HLA antigens (P = 0.05), and matching for HLA-A, -B, and -DR loci (P = 0.03). This last parameter has previously been reported as influencing the outcome of the graft in seven out of eight international studies carried out using similar methodology.

Adolescent↗

Life table analysis of the risk of type 1 (insulin-dependent) diabetes mellitus in siblings according to islet cell antibodies and HLA markers. An 8-year prospective study.

To determine whether genetic markers can improve the predictive value of islet cell antibodies for development of Type 1 (insulin-dependent) diabetes mellitus, 536 siblings aged 2-29 years were consecutively enrolled in a 8-year prospective survey. The risk of developing diabetes was estimated, using life-table methods, by years of follow-up and age, according to genetic factors (shared HLA-haplotypes, DR antigens, C4 allotypes) and islet cell antibody status. Fifteen siblings (2.8%) developed Type 1 diabetes during the study period (risk 4.4% after 8 years, 4% by age 22 years). DR3,4 heterozygosity identified higher risk (16% after 8 years, 12% by age 22 years, p less than 10(-5)) than HLA-identity (10% and 7%, respectively, p less than 0.01); risks for DR3 or DR4 positive and for haplo-identical siblings were low (4%, 3% and 4.4%, respectively, NS). C4BQO also conferred significant risk (11% vs 3% in non-C4BQO siblings, p less than 0.01). The predictive value of genetic markers alone was poor (12% for DR3,4, 7% for HLA-identity, 9% for C4BQO) compared with that of islet cell antibody levels greater than 4 Juvenile Diabetes Foundation units (41%, risk 56% after 8 years, p less than 10(-7)). HLA markers significantly contributed to risk prediction in combination with islet cell antibodies: islet cell antibody-positive DR3,4+ subjects had the highest risk (70% after 8 years, predictive value 58%, p less than 10(-7)) compared with islet cell antibody-positive DR3,4- (37% and 20%, respectively) and islet cell antibody-negative DR3,4+ (5% and 3.6%, respectively).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

A likelihood approach to HLA serology.

A likelihood approach to HLA serology has been developed in which the aim is not to define a recognition set for a serum but to describe the serum's ability to react with each and every antigen in the test cells, this ability being quantified in terms of the probability of a positive reaction. For a given set of probabilities, one for each antigen, it is possible to derive the probability of the observed set of reactions (the likelihood of the set of probabilities). The maximum possible value of the likelihood for any possible combination of the probability set can then be sought, but this requires a maximization of likelihood with respect to 60-100 independent parameters. Theoretical considerations of the shape of the likelihood surface prove that, in this particular case, this is a feasible proposition. This approach allows the recognition of three groups of antigens: those for which there is considerable evidence of a specificity, those for which there is either no specificity or a very weak specificity, and those for which there is insufficient evidence on which to base a conclusion. The existence of a specificity can be tested using a log likelihood ratio as a statistic, but the usual assumption of a chi 2 distribution of this statistic cannot automatically be made in this situation. Therefore, the distribution is estimated by simulation. A serologist using this approach would receive considerably more information as to the serum's reaction patterns and valid statistics for the existence, or not, of a specificity.

HLA Antigens↗

The HLA-DRB1*0405 haplotype is most strongly associated with IDDM in Algerians.

Insulin-dependent diabetes mellitus (IDDM) in Caucasians is strongly associated with HLA-DR3-DQ2 and DR4-DQ8. In order to investigate the HLA class II associations with IDDM in Algerians, we have used polymerase chain reaction (PCR) and sequence specific oligonucleotide analysis (SSO) to identify DQA1, DQB1, and DRB1 alleles, haplotypes and genotypes in 50 unrelated IDDM patients and 46 controls from a homogeneous population in Western Algeria. Both DRB1*0301-DQA1*0501-DQB1*0201 (DR3-DQ2) and DRB1*04-DQA1*0301-DQB1*0302 (DR4-DQ8) haplotypes were found at increased frequencies among the patients compared to controls (45% vs. 13%, RR = 5.5, Pc < 10(-5) and 37% vs. 4%, RR = 12.9, Pc < 10(-4), respectively). Among the latter, in contrast to other Caucasian populations, only DRB1*0405-DQA1*0301-DQB1*0302 was significantly increased in the Algerian patients (25% vs. 1% in controls, RR = 30.3, Pc < 10(-3). Accordingly, the highest risk of disease was observed in DRB1*0301-DQA1*0501-DQB1*0201/DRB1*0405-DQA1+ ++*0301-DQB1*0302 heterozygotes (34% in patients vs. 0% in controls; RR = 49; Pc < 10(-3). This observation and its comparison with DR-DQ haplotypes in other ethnic groups suggest that the DRB1*0405 allele which encodes an Asp57-negative beta chain may contribute to IDDM susceptibility in a similar way as Asp57-negative DQ beta chains.

Algeria↗

Dose effect of cis- and trans-encoded HLA-DQ alpha beta heterodimers in IDDM susceptibility.

Insulin-dependent diabetes mellitus (IDDM) in whites is strongly associated with particular HLA-DQ alpha beta heterodimers composed of a DQ alpha chain with an arginine at residue 52 (Arg52+) combined to a DQ beta chain lacking an aspartic acid at residue 57 (Asp57-). With the aim of confirming this association, clarifying which heterodimers account for the highest risk of IDDM and explaining the excess risk of DR3-DQw2/DR4-DQw8, 115 unrelated white IDDM patients and 108 unrelated healthy nondiabetic control subjects were studied. With polymerase chain reaction and sequence-specific oligonucleotide probes, both patients and control subjects were typed for their HLA-DQA1 and DQB1 alleles and their DQA1-DQB1 haplotype and genotype frequencies were compared. Four major findings emerged from our analysis. 1) Arg52+ DQ alpha/Asp57- DQ beta heterodimers, formed in cis and/or in trans, are strongly associated with susceptibility to IDDM; 97% of patients and 46% of control subjects had at least one such susceptibility heterodimer (relative risk [RR] 32, confidence interval [Cl] 14.25-71.86, P less than 10(-7). 2) The degree of disease susceptibility depends on the number of such DQ heterodimers that a subject can express according to his or her DQA1-DQB1 genotype. The highest RR was observed in patients with four susceptibility DQ heterodimers (RR 41, Cl 17.05-95.9). 3) Only part of the susceptibility DQ heterodimers were significantly increased in patients, conferring IDDM susceptibility of different strength. The strongest association was with the DQA1*0501-DQB1*0302 combination formed in trans position (RR 35.2, CI 12.88-96.78, P less than 10(-7).(ABSTRACT TRUNCATED AT 250 WORDS)

Alleles↗