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Biomedical subjects

G Hauptmann

Publications and source records attributed to G Hauptmann.

At least 73 records · Page 4Linked to original sources

Combined homozygous factor H and heterozygous C2 deficiency in an Italian family.

Three of four children in a family have homozygous (less than 1% of normal) deficiency of factor H of the complement system and both parents, who are first cousins, are heterozygous for the same defect. The father and two of the H-deficient siblings also have a partial C2 deficiency. One of the children with combined deficiencies is affected by systemic lupus erythematosus with nephritis. No increased susceptibility to infections has been observed in the family. H deficiency is inherited in an autosomal codominant manner and is independently transmitted from C2 deficiency and HLA haplotypes. In the homozygous state it is associated with very low serum concentrations of B and C3, barely demonstrable as activated molecules. C5 is greatly reduced (less than 5%). Also, properdin and C6-9 are decreased. The findings in this family demonstrate that the occurrence of systemic lupus erythematosus in one of the children affected by a combined deficiency of factor H and C2 raises the question whether this pathology is related to the complete factor H or to the heterozygous C2 deficiency. Complete H deficiency is not necessarily accompanied by overt illness.

Child↗

Complement C4 phenotypes in dementia of the Alzheimer type.

Complement C4 phenotype distribution was studied in 64 patients with dementia of the Alzheimer type. In contrast to reported findings we failed to find a significant association between C4B2 gene frequency and Alzheimer's dementia.

Alzheimer Disease↗

[Polymorphism of C4 and factor B in type I diabetes].

The haplotypic frequencies of the fourth component of complement (C4) and factor B (Bf) have been determined in 44 Alsatian type 1 diabetics. An increased frequency of the rare allele Bf F1 (9.1% vs 1.5%) and of the silent alleles of C4 (C4 AQO: 21.6% vers 15.5% -C4 BQO: 29.6% vs 16.0%) was observed in diabetics in comparison to the general population of the same geographic area. A complete HLA haplotype determination has been obtained in 24 type 1 French diabetics. Three haplotypes were associated with the diabetic susceptibility: HLA-A30 CW5 B18 BfF1 C4A3BQO DR3 (18.75% vs 0.86%), HLA-A1 CW7 B8 BfS C4AQOB1 DR3 (15.58% vs 4.17%), HLA-A2 CW3 BW62 BfS C4A3B3 DR4 (6.25% vs 0.45%). The authors suggest that the silent alleles of C4 could modulate the expression of the diabetic susceptibility genes by lowering of the serum C4 hemolytic activity.

Alleles↗

Inherited deficiency of the fourth component of human complement.

The highly polymorphic fourth component of human complement (C4) is usually encoded by two genes, C4A and C4B, adjacent to the 21-hydroxylase (21-OH) genes, and is also remarkable by the high frequency of the null alleles, C4A*Q0 and C4B*Q0. Despite considerable structural homology, the gene products of the two loci differ in hemolytic activities, antigenic reactivities and covalent binding affinities to antigens and antibodies. Complete C4 deficiency is exceptional because this condition appears only in homozygotes for the very rare double-null haplotype C4AQ0,BQ0. In contrast, partial C4 deficiency is a common immune protein defect in all human populations as a consequence of the high frequency of the C4 half-null haplotypes. Complete C4 deficiency in most cases gives rise to SLE and an increased susceptibility to infections, and partial C4 deficiencies predispose to different auto-immune diseases related to extended HLA haplotypes bearing the C4 half-null haplotypes. Studies at the DNA level have shown that about half of the null alleles are due to deletions involving C4A and 21-OHA, C4B and 21-OHA or C4B and 21-OHB. Larger deletions including both C4A and C4B genes have never been observed. Partial C4 deficiency may be observed in combination with other complement deficiencies or immune defects, and allo- or auto-anti-C4 immunization is also a possible consequence of this genetic abnormality. Although the pathogenesis of the diseases related to complete and partial C4 deficiencies is not yet clearly understood, it is evident that C4 null alleles represent interesting markers and additive risk factors for autoimmune phenomena.

Alleles↗

Heterogeneity in the structural basis of the human complement C4A null allele (C4A Q0) as revealed by HindIII restriction fragment length polymorphism analysis.

The highly polymorphic fourth component of human complement (C4) is usually encoded by two genes. C4A and C4B, adjacent to the 21-hydroxylase (21-OH) genes, 21-OHA and 21-OHB, and is also remarkable in the high frequency of the 'null' alleles, C4A Q0 and C4B Q0. The molecular basis for the C4A Q0 allele was studied in 26 families through restriction fragment length polymorphism (RFLP) analysis with C4 and 21-OH cDNA probes after digestion of the DNA with the endonuclease HindIII. The individuals expressing the extended haplotype HLA-A1 (of A2) Cw7 B8 C2C BfS C4AQ0B1 DR3 have a large deletion taking off the C4A and 21-OHA genes.

Alleles↗

Complement-mediated adherence of immune complexes to human erythrocytes. Difference in the requirements for C4A and C4B.

The classical pathway of complement is required for the adherence of soluble tetanus toxoid (TT)-human anti-TT complexes to erythrocytes. Using human C4-deficient serum we compared the capacity of the two forms of human C4 (C4A and C4B) to mediate this function: C4A was shown to be 1.5-fold more efficient than C4B. In contrast, haemolysis by C4B was 3.7-fold more efficient than by C4A. Such large differences suggest that both forms are complementary, and that C4A is preferentially involved in the processing of immune complexes in humans.

Antibodies↗

[Components of the classical complement pathway in systemic lupus erythematosus].

Measurements of complement components in sera from patients with systemic lupus erythematosus (SLE) and some of their relatives indicated that decreased levels of CH50, C4 and C2 were mostly related to a genetic deficiency at one or both of the loci coding for C4, at least in those patients in whom decreased C4 levels were associated with normal C1 hemolytic activity. C4 deficiency is either isolated or associated with complement activation. In some patients with C4 deficiency, complement activation could only be demonstrated by measuring plasma level of the C3 cleavage fragment, C3a des Arg. Decreased concentration and/or hemolytic activity of C4 and C2 in SLE cannot be used to assess the activity of the disease.

Complement Activation↗

The study of a French family with two duplicated C4A haplotypes.

The finding of two duplicated C4A haplotypes in a normal French family led to a detailed study of their C4 polymorphism. The father had an extremely rare A*6A*11, B*QO haplotype inherited by all of his children and the mother had the more common A*3A*2, B*QO haplotype. Two HLA identical daughters only have four C4A alleles. The father's A11 allotype expresses Ch:1 (Chido) rather than Rg:1 (Rodgers) and represents a new Ch phenotype Ch:1,-2,-3,-4,-5,-6. In order to clarify the genetic background in this unusual family, DNA studies of restriction fragment length polymorphisms (RFLPs) were undertaken. The father's rare haplotype, which expresses two C4A allotypes, results from a long and a short C4 gene normally associated with the A*6, B*1 that also exhibits the Bg/II RFLP. As it travels in an extended MHC haplotype HLA A2, B57(17), C2*C, BF*S, DR7 that is most frequently associated with A*6, B*1, we postulate that the short C4B has been converted in the alpha chain region to a C4A gene which produces a C4A protein. This report of a short C4A gene is the first example in the complex polymorphism of C4.

Alleles↗

Lupus erythematosus panniculitis with partial genetic deficiency of C2 and C4 in a child.

A 7-year-old girl developed recurrent febrile nodules and subcutaneous plaques on her arm, shoulder, and face. Primary acquired toxoplasmosis was diagnosed at onset, because of associated lymphadenopathy and detection of specific IgM. Skin lesions were responsive to therapy with systemic steroids but progressed to atrophy and poikiloderma within a few months. Subsequently, chloroquine therapy has been instituted and no relapse has occurred. Histopathologic findings and direct immunofluorescence studies were diagnostic of lupus erythematosus panniculitis. Electron microscopy showed lamellar inclusions within mast cells. Results of laboratory investigations disclosed leukopenia and hypocomplementemia with low C2 serum levels. A family study of the complement system, including C4 and Bf phenotyping and HLA A, B, and DR haplotyping, revealed the carriage of both C2 and C4A null alleles in the propositus. This observation suggests an additional link between lupus erythematosus panniculitis and the remainder of the lupus erythematosus clinical spectrum.

Adolescent↗

H deficiency in two brothers with atypical dense intramembranous deposit disease.

We report an H deficiency in two Algerian brothers who had early-onset glomerulonephritis. In addition, one suffered from serious lung infections. The H deficiency was defined by undetectable CH50 and AP50, and low levels of H, C3 and B (less than 10% of normal levels). I and classical pathway components, including C4-bp were normal. CR1 was present on both patients' erythrocytes. No nephritic factor or other circulating alternative pathway activator was detected. The parents, who are first cousins, and a healthy brother and sister had half-normal levels of H. These findings favor an autosomal recessive transmission of the H defect. Although by electron microscopy renal biopsies from both patients were typical for dense intramembranous deposit disease, immunofluorescence microscopy showed an atypical pattern with abundant granular C3 deposits within the mesangium and along the capillary walls. Alternative pathway activators, possibly related to dense deposits, may allow the formation of membrane-associated C3/C5 convertases, unusually stable in the absence of H, since C5, C6, C7, C8 and C9 levels were decreased in both patients. This observation may represent an interesting clue to the relationship between nephritic factor, alternative pathway activation, and dense intramembranous deposit disease.

Adolescent↗

Biocompatibility and hemodynamic studies during polycarbonate versus cuprophane membrane dialysis.

A new noncellulosic membrane (polycarbonate) has been tested in terms of biocompatibility and hemodynamic tolerance. The following results were obtained: The polycarbonate membrane manufactured by Gambro Hechingen induces activation of the complement system (slight decrease of CH50 and C3, no increase of C5a) to lower extent and causes a less severe leukopenia than the cuprophane membrane. During dialysis with the polycarbonate membrane hypoxemia does not occur and the pulmonary vascular resistances and pulmonary arterial pressure remain stable. The good biocompatibility of the polycarbonate membrane allows a better outcome of hemodialysis treatments.

Acetates↗

[Absence of a connection between Alzheimer's disease and complement markers].

The hypothesis of a linkage between Alzheimer's disease (AD) (presenile dementia) and the complement components C2, C4, Bf linked to the Major Histocompatibility Complex has been investigated in a large family originating from Calabria, in which AD is transmitted as an autosomal dominant monogenic mendelian trait. The analysis of complotypes of 33 members of a pedigree, from which 10 individuals are affected, allowed to demonstrate that there wasn't any linkage between AD and those markers. Furthermore, no complete or partial deficiency in the C2, C4, Bf components has been observed in affected patients.

Alzheimer Disease↗

Difference in the biological properties of the two forms of the fourth component of human complement (C4).

The two forms of human C4 were compared in their haemolytic activity and in their capacity to mediate inhibition of immune complex precipitation in human C4 deficient sera. Whereas haemolysis by C4B was 3.2 fold more efficient than by C4A, C4A was 1.7 fold more efficient at inhibiting immune precipitation than C4B. Thus the biological properties of the two forms of human C4 are different and it is suggested that C4A is mainly involved in immune complex clearance reactions.

Antigen-Antibody Complex↗

[Hereditary deficiency of the 4th component of complement (C4) associated with a lupic syndrome].

A 2 year-old girl presented with bacterial meningitis followed by a lupus erythematosus syndrome consisting of erythematous rash, Raynaud's phenomenon and mutilating cicatricia atrophy; high speckled antinuclear antibodies and anti-Sm and anti-Ro antibodies titers; a selective absence of C4; moderate mesangial proliferation with IgM and C1q mesangial deposits. Study of the family revealed a linkage of C4 deficiency with the HLA A1 B17/BfF haplotype.

Antibodies, Antinuclear↗

[Various characteristics of intravenous polyvalent immunoglobulins].

Polyvalent human immunoglobulins for intravenous use (GVP) are obtained by fractionating human plasma with ethanol, according to a method in which traces of pepsin at pH4 eliminate any anticomplementary activity. All the analytical tests have come within official requirements. Results of extended tests concerning specificity, potency, immunoglobulin subclass distribution, biological half-life and opsonic function are presented. Since their official release for clinical use on July 1st, 1983, almost 15,000 therapeutic units of 2.5 g of immunoglobulins have been consumed without any reported major side effects. Multicenter clinical trials are being carried out with adults and children. Available results confirm very good tolerance, and, as expected, effectiveness for well known and codified indications.

Antigens, Bacterial↗