Antibody responses to pneumococcal capsular polysaccharide: what is being measured?
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Biomedical subjects
Publications and source records attributed to R J Levinsky.
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Capillary leak after cardiopulmonary bypass operations for correction of congenital heart defects is universally seen in children and often causes significant morbidity and mortality. Since neutrophil-mediated endothelial injury has been implicated as a pathogenetic mechanism, a prospective controlled descriptive study was performed to investigate possible activation pathways during and after the bypass procedure. Eighteen children undergoing operations, nine with cardiopulmonary bypass and nine neurosurgical craniotomy (i.e., operations without bypass), had samples of arterial blood collected at intervals before, during, and after operations. In six of nine cardiac patients circulating interleukin-8 concentrations rose from less than 30 pg/ml to very high concentrations (> 500 pg/ml); in the remaining three patients small rises (peak 57 to 81 pg/ml) were also seen. In all nine, the rise commenced at the time of rewarming, toward the end of bypass, and peaked 1 to 3 hours thereafter. Interleukin-8 release correlated significantly with length of bypass. Interleukin-1 alpha and interleukin-1 beta were not found, and traces of tumor necrosis factor-alpha were detected in one patient only. Circulating elastase alpha 1-antitrypsin concentrations rose simultaneously and correlated significantly with interleukin-8 (p < 0.001) in patients with cardiac disease, as did absolute neutrophil counts (p < 0.001). In contrast, only one of nine patients with neurosurgical disease (undergoing an unusually long operation and exchange transfusion) had a rise in circulating interleukin-8 to levels greater than 500 pg/ml (p < 0.01). The two samples from this patient with elevated interleukin-8 were the only neurosurgical samples with elevated elastase. This study demonstrates the release of interleukin-8 into the circulation after pediatric hypothermic cardiopulmonary bypass and supports the suggestion that this cytokine plays a role in the pathophysiology of capillary leak through neutrophil degranulation.
We have compared assays for products of the neutrophil respiratory burst in normal EBV-transformed B cell lines stimulated with agonists of protein kinase C. Those measuring O2- directly or its immediate product, H2O2, were successful. Of these, the most sensitive were the lucigenin- and luminol-based chemiluminescence assays for O2- and H2O2 respectively. Cell lines from CGD patients, with X-linked or autosomal recessive genetic defects in the neutrophil NADPH oxidase, did not respond in these assays, indicative of their inability to produce O2-. The defects in the lines studied encompass both proteins forming the cytochrome b-245 membrane component, and the 47 kDa cytosolic component of the NADPH oxidase. The possession of the disease associated phenotype by these cell lines provides evidence that in the normal situation both neutrophils and B cells produce O2- via the same system.
Recurrent bacterial infections, lymphadenopathy, and failure to thrive are unlikely to be attributed to immune deficiency if they occur in the presence of hypergammaglobulinaemia, and other explanations will usually be sought. We describe eight patients who presented with all these features in infancy or early childhood. Deficiencies of immunoglobulin and antibody production were initially discounted, and the children were referred for investigation of possible lymphoma, autoimmune disease, or chronic viral infection. The patients were later referred to us for more detailed immunological investigation, which revealed low levels of IgG2 and poor specific antibody production to common pathogens. Treatment with intravenous immunoglobulin resulted in resolution of signs and symptoms in all patients. Thus we have shown that hypergammaglobulinaemia does not preclude the presence of immunoglobulin/antibody deficiency. We suggest that investigation of children with high levels of IgG and features of immunodeficiency should include IgG subclass analysis.
The X-linked agammaglobulinaemia (XLA) gene locus has previously been mapped to Xq22. Genetic linkage analysis has shown tight linkage between the disease and the DXS178 locus and that DXS3 and DXS94 are the closet proximal and distal flanking markers, respectively, separated by a genetic distance of 10-12 cM. We attempted to construct a physical map of Xq22 using pulsed field gel electrophoresis (PFGE) and rare-cutting restriction enzymes in order to obtain a finite physical value for the distance between DXS3 and DXS94. However, these attempts were hampered by the large number of rare-cutting restriction enzyme sites around the DXS178 locus, indicative of the presence of CpG rich regions of DNA. We were able to construct a physical map of the sites close to DXS178 that suggests the presence of at least three, and perhaps as many as five, CpG islands. These are arranged on either side of DXS178, extending over about 550kb of genomic DNA. Each of these regions must be considered as being associated with a potential "candidate" gene sequence for the XLA gene and we have initiated a chromosome walk from DXS178 to the nearest of these islands.
A common opsonic defect occurring in 7% of the Caucasian population is associated with low serum levels of the lectin mannose binding protein (MBP). This study sought to determine whether the deficiency was also present in a Chinese population using sera obtained from 100 healthy Chinese children (age range 6 weeks-16 years). The distribution profiles of MBP levels and C3b/C3bi fragments binding to mannan coated plates were both bimodal and similar to the corresponding Caucasian profiles. Serum MBP levels were low in 9% of the Chinese children and all of these sera generated low levels of C3b/C3bi fragments. Overall there was a high significant correlation between MBP levels and C3b opsonin generation (r = 0.77; P less than 0.001). By analogy with similar findings in a Caucasian population we believe this correlation to be a reflection of antibody independent complement activation by MBP. In a pilot study of DNA obtained from three adult Chinese with low MBP levels the point mutation causing MBP deficiency in Caucasians was identified in all three cases.
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We have previously identified, in three British families having an index child with frequent infections, a point mutation (GGC-->GAC) in codon 54 of exon 1 of the gene for the human lectin mannose binding protein (MBP). This was associated with low serum levels of this complement activating protein and would be anticipated to impair opsonization of mannose rich microorganisms. We now report a second point mutation (GGA-->GAA) in Gambians from West Africa, involving codon 57 of exon 1. By substituting carboxylic acids for axial glycines in the translated proteins both mutations would be expected to disrupt the secondary structure of the collagenous triple helix of the 96 kDa MBP subunits. In the Gambians the codon 57 mutation was studied by PCR, sequence analysis and restriction analysis and found to be remarkably common (frequency of the mutant gene 0.29 in adults and 0.23 in newborns) whereas the codon 54 mutation was very rare (frequency 0.003). However, the codon 54 mutation was frequent in both a British Caucasian and a Hong Kong Chinese population (frequency of the mutant gene 0.17 and 0.11 respectively). It was predicted that both homozygous and heterozygous individuals would have profoundly reduced serum levels of the protein and this was confirmed by immunoassay as was the reduced capacity of such sera to activate complement through the MBP initiated classical pathway. Our data indicate that the two mutations have arisen independently since the divergence of African and non African populations and both have attained high frequencies.
The interference of antibodies to pneumococcal cell wall polysaccharide (CWPS) in the measurement of antibodies to capsular polysaccharides in children was assessed after vaccination with pneumococcal polysaccharide vaccine. ELISAs were developed to measure IgG subclasses specific for pneumococcal types 3, 6, 19, and 23 and CWPS. Analysis of antibody levels to all four capsular polysaccharides was affected by the presence of antibodies to CWPS, and their removal altered both anti-capsular polysaccharide antibody levels and the interpretation of responses to the vaccine. Thus, it is likely that CWPS contaminating pure capsular polysaccharide reagents used in most standard immunoassays is responsible for falsely elevated measurements of antibodies to capsular polysaccharide and the incorrect assessment of anti-pneumococcal antibody status in childhood.
The c-kit proto-oncogene product is a member of the family of growth factor receptors with intrinsic tyrosine kinase activity. In the mouse c-kit maps to the W locus, which is known to be of central importance in hematopoiesis. Monoclonal antibody (MoAb) YB5.B8, which was raised against peripheral blood blast cells from a patient with acute myeloid leukemia (AML), was recently shown to bind to the extracellular domain of the c-kit product. This antibody does not bind detectably to normal peripheral blood cells and identifies a sub-group of AML patients with poor prognosis. We have used MoAb YB5.B8 to study the expression of c-kit by normal human bone marrow cells by immunofluorescence and flow cytometry, and to isolate multipotential and erythroid colony-forming cells. In a series of 11 normal adult bone marrow specimens, MoAb YB5.B8 bound to 4.0% +/- 1.8% of the cells in the low-density fraction. Dual-labeling experiments were performed with YB5.B8, and CD33, CD34, and CD10 MoAbs. Three populations of cells binding YB5.B8 could be identified based on their pattern of coexpression of the other markers; ie, YB5.B8+/CD34+/CD33-, YB5.B8+/CD34+/CD33+ and YB5.B8+/CD34+/CD33+. These populations had distinctive two-dimensional light scatter characteristics and are likely to correspond to precursor colony-forming cells, colony-forming cells, and maturing mast cells, respectively. No cells binding both YB5.B8 and an MoAb to the early lymphoid marker CD10 were found, implying that most early lymphoid cells do not express c-kit. MoAbs to the c-kit protein should prove valuable in multimarker studies of human hematopoietic stem and progenitor cells. Definition of a reference range of c-kit expression in normal human bone marrow will provide a sound basis for further studies of this marker in diagnosis and prognosis in AML.
Low serum mannose-binding protein (MBP) concentrations are associated with a common opsonic defect. Sequence analysis of the MBP gene in three children with recurrent infections, the opsonic defect, and low serum MBP concentrations showed a point mutation at base 230 of exon 1 causing a change of codon 54 from GGC to GAC. The replacement of glycine with an aspartic acid residue disrupts the fifth Gly-Xaa-Yaa repeat in the collagen-like domain of each 32 kD MBP peptide chain and probably prevents the formation of the normal triple helix. Study of sixteen members of the three families showed autosomal dominant co-inheritance of the mutation and low serum MBP concentrations.
Wiskott-Aldrich syndrome (WAS) is an X-linked immunodeficiency disorder with no clinical or immunologic abnormalities in carrier females. The defective gene has been localized to proximal Xp. Carrier females have nonrandom use of the X chromosome in granulocytes, lymphocytes, and monocytes. We have used the probe M27 beta, which detects both a variable number tandem repeat polymorphism and methylation differences between the active and inactive X chromosome, in the investigation of families referred for genetic counseling. M27 beta detects the locus DXS255, which is tightly linked to WAS. As the probe that is used for investigation of X-inactivation patterns is also linked to the disease locus, it is possible to assign phase in families where this could not be done by conventional use of linked probes. The mothers of four isolated male cases had nonrandom use of the X chromosome. A new mutation was identified in one family with two affected males.
We report successful bone marrow transplantation (BMT) in two patients with severe combined immunodeficiency (SCID), who had developed BCG infection following neonatal vaccination. Patient 1 had Omenn Syndrome, associated with hypertrophic non-obstructive cardiomyopathy. Patient 2 had SCID due to adenosine deaminase deficiency. This communication demonstrates that with appropriate anti-mycobacterial cover, immunological reconstitution together with full recovery from BCG infection can be achieved by BMT. As demonstrated by persistent negative Mantoux tests, specific cell-mediated immunity to BCG was not acquired following BMT. We suggest that these children may continue to be at risk from mycobacterial infection.
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In order to gain information about the nature of the defect in X-linked severe combined immunodeficiency (XSCID), we investigated gene expression in different lymphoid and haematopoietic cells of female carriers by looking for non-random X chromosome usage. We have shown non-random X chromosome usage in T lymphocyte enriched (E+) fraction in all carriers. E- cells and monocytes showed non-random X chromosome usage in three carriers tested. In the B cell series one carrier showed non-random inactivation in all EBV lines tested (10) and the same X chromosome was shown to be active in all cells. In other carriers there was a preference for use of the normal X chromosome but some B cell lines used the mutant X as well as the normal X. Similar results were found with granulocytes. In two female carriers DNA made directly from whole blood showed a non-random pattern of X chromosome usage. In fibroblast cultures from two female carriers more cells had the normal gene on the active X chromosome than had the defective gene on the active X chromosome. Within families there was heterogeneous expression of the gene. The gene that is defective in XSCID is expressed in all the cell types studied and, therefore, is not a T lymphocyte differentiation gene. The results are consistent with the gene being in a metabolic pathway as in certain autosomal recessive forms of SCID i.e. adenosine deaminase deficiency and purine nucleoside phosphorylase deficiency.
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The molecular basis of X-linked chronic granulomatous disease (X-CGD) has recently been elucidated and the defective gene identified and isolated. Two restriction fragment-length polymorphisms have been identified using the X-CGD cDNA probe. We have analyzed eight families with X-CGD and seven normal, unrelated females and have demonstrated that these polymorphisms are not in linkage disequilibrium. This should increase to approximately 50% the proportion of families to whom first-trimester prenatal diagnosis can be offered. Unambiguous determination of carrier status in related females in informative families will also be possible. In addition, we have identified an apparently unique small deletion in the X-CGD gene in a family affected by this disease, members of which are not informative for either polymorphism. This will allow prenatal diagnosis and carrier determination in this family.