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Biomedical subjects

C W Van den Berg

Publications and source records attributed to C W Van den Berg.

7 recordsLinked to original sources

Enhanced complement susceptibility of avidin-biotin-treated human erythrocytes is a consequence of neutralization of the complement regulators CD59 and decay accelerating factor.

Biotinylation of erythrocytes (E) followed by avidin cross-linking at specific sites has been suggested as a novel means of drug delivery. Upon avidin cross-linking, biotinylated E become complement-activating and highly susceptible to complement lysis, thus bringing about release of entrapped drug. We set out to examine the mechanisms of this biotin-avidin-induced lytic susceptibility, focusing on the effects of biotinylation and avidin cross-linking on the major E complement regulatory molecules, decay accelerating factor (DAF) and CD59. We demonstrate here that biotinylation of E, which does not render them complement activating, partially inhibits DAF but has little effect on CD59. Subsequent cross-linking with avidin causes complete inhibition of DAF and near complete loss of CD59 activity. Following cross-linking, DAF and CD59 become associated in high molecular mass avidin-containing complexes on the membrane. Incorporation of physiological amounts of CD59 into the membranes of biotinylated and avidin cross-linked E is sufficient to render these cells resistant to complement lysis whereas incorporation of DAF has relatively little effect. An understanding of the molecular mechanisms underlying complement susceptibility of biotin-avidin treated E should allow a rational design of strategies for drug delivery using E or other large, potentially complement-activating carriers.

Antibodies↗

Rapid, activity-guided isolation of sex-limited protein (Slp) from mouse serum by fractionated precipitation and high-performance liquid chromatography.

We have recently demonstrated that sex-limited protein (Slp) plays a key role in an EDTA-resistant mouse complement activation pathway. A rapid procedure, utilizing classical chromatography methods on an FPLC system, was developed for the isolation of functionally active Slp. The method is based on the fractionated precipitation of serum by polyethylene glycol 6000, followed by heparin Sepharose Cl-6B affinity chromatography, Mono Q anion exchange and Superose 12 gel filtration. The isolation of Slp was monitored by a hemolytic assay. The procedure resulted in the purification of Slp, which by SDS-PAGE gave a single band of M(r) 2000,000 under non-reducing conditions, and under reducing conditions three bands corresponding to M(rs) of 105,000, 76,000 and 37,000.

Animals↗

In vivo anti-complementary activities of the cobra venom factors from Naja naja and Naja haje.

The kinetics of complement (C) depletion and recovery of C levels upon injection of BALB/c mice with cobra venom factors (CVF), from N. naja (C3- and C5-depleting) and N. haje (selectively C3-depleting) were studied. The animals received i.p. or i.v. injections of either of the two preparations. CH50 and hemolytic C3 and C5 levels were followed as parameters of residual complement activity. N. naja CVF turned out to be as efficient in depleting total complement activity as N. haje CVF. Decreased CH50 values could largely be ascribed to C3 depletion. Complement consumption after N. naja CVF, however, lasted longer than after N. haje CVF administration. Estimated functional half-lives of N. naja and N. haje CVF were 11.5 and 4.5 h, respectively. Inhibition ELISAs showed that, after in vivo administration of either of the two CVF preparations, antigenic C3 and C5 kept circulating for days.

Animals↗

C3- and T-cell-dependent adjuvant activity of in vivo formed immune complexes.

The effects of polyclonal antibodies to mouse serum components on the primary humoral immune response of mice in vivo were studied. It was observed that rabbit IgG to complement component C3 and albumin and mouse IgG to C5, but also heat-aggregated non-immune rabbit IgG, enhanced the agglutinating antibody response to sheep erythrocytes (SRBC). Since the increase in response was only observed when antigen and antibodies were administered via the same route (i.p.), immunological adjuvant activity was implicated. Ineffectiveness of anti-C5 IgG in C5-deficient mice indicated that the antibody-induced adjuvant activity is mediated by in vivo formed immune complexes (IC). The adjuvant activity of IC was reduced by selective C3-depletion of animals, pointing to a requirement of C3. The effect of variations in other parameters was studied with anti-C3 and anti-C5 IgG as immunoadjuvant. The immunostimulatory effect was most pronounced when the antibodies were administered simultaneously with or shortly before antigen. Treatment of animals with antibodies one or two days before antigen, however, resulted in a suppression of the response. The response to thymus-independent antigens was not enhanced by anti-C3 nor by anti-C5 IgG. Optimal adjuvant activity of anti-C3 IgG was observed at low antigen doses. Nude mice were insensitive to the immunopotentiating effect of anti-C3 and so was the F1 progeny of BALB/c male and CBA/N female mice expressing a B-cell maturation defect. C5 deficiency and lipopolysaccharide (LPS) non-responsiveness did not affect the adjuvant activity of in vivo formed C3-anti-C3 IC.

Adjuvants, Immunologic↗

Functional assay of C5-activating and nonactivating cobra venom factor preparations in the mouse system.

This paper deals with a new, functional assay of cobra venom factor (CVF) preparations with or without C5-activating property. Existing methods lack sensitivity and use diluted human complement as target of inactivation. An adapted assay using diluted mouse serum as complement source was hampered by underestimation of C3 depletion by bystander lysis and an overvaluation of C5 consumption resulting from C3 inactivation in the reagent used. These disadvantages prompted us to develop the new assay which is based on the incubation of CVF preparations with undiluted mouse serum. After incubation, residual total C activity, as well as functional C3 and C5 are estimated by titration. The procedure permits the assessment of CVF activities with minimal interference from undesired processes. The conditions in the new assay approach the in vivo situation in mice by the use of undiluted serum from the same animal species.

Animals↗

Rapid isolation and characterization of native mouse complement components C3 and C5.

A rapid, 1 day procedure for the purification of mouse complement factors C3 and C5 is described. The method is based on fractionated precipitation by polyethylene glycol 6000, followed by Mono Q anion exchange chromatography on a system for fast protein liquid chromatography (FPLC). For C3 isolation, an additional FPLC separation step using Superose 12 (gel filtration) was used. C3 was purified 71-fold with a yield of 32% as measured by biological activity; the preparation contained no detectable contaminants as judged by SDS-PAGE. A comparable procedure for the isolation of C5 resulted in a preparation with a considerable contamination which could be easily removed by affinity chromatography using antibodies directed against these contaminants. With this combined procedure C5 was purified 536-fold with a yield of 28% based on biological activity. SDS-polyacrylamide gel electrophoresis revealed that mouse C3 and C5 had apparent Mrs of 170,000 and 190,000, respectively. Under reducing conditions the alpha and beta chains showed Mrs of 107,000 and 62,000 for C3, and 104,000 and 85,000 for C5.

Animals↗

Linkage between the variegate porphyria (VP) and the alpha-1-antitrypsin (PI) genes on human chromosome 14.

From family studies close linkage between the gene locus for variegate porphyria (VP) and the alpha-1-antitrypsin (PI) gene became evident. The maximal lod score from male meioses was 4.33 at theta = 0.04 and from both sexes combined 3.56 at theta = 0.12. Three pedigrees were triple informative regarding loci VP, PI, and IGHC (immunoglobulin heavy chain cluster, Gm polymorphism). In two of the respective meioses recombinations were observed, and in both cases the co-segregating VP and PI alleles were separated from the Gm haplotypes. These findings argue in favour of gene order either VP:PI:IGHC or PI:VP:IGHC.

Chromosomes, Human, Pair 14↗