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L Halbwachs

Publications and source records attributed to L Halbwachs.

3 recordsLinked to original sources

[Description of an unusual enzymic activity cleaving the third component of complement].

A large enzymatic complex cleaving C3 (C3'ase) in the absence of magnesium (EDTA) has been partially characterized in two patients. On gel filtration EDTA-C3'ase was found in an 800 000 fraction containing antigenic C4, IgA and IgG in addition to alpha-2-macroglobulin and IgM normally present. EDTA-C3'ase was specifically neutralized by antibodies to IgG, IgA and C4. The characteristics of this unusual enzymatic complex are compatible with that of a C4b2a complex stabilized by its specific binding to an auto-antibody of the IgG and/or IgA class.

Chromatography, Gel

Recurrence of dense deposits in transplanted kidney: II. Serum complement and nephritic factor profiles.

Dense deposit disease of the kidney is a rare form of chronic glomerulonephritis frequently associated with serum complement abnormalities (low C3 levels) and a circulating C3 convertase activator of the alternative pathway, the C3 nephritic factor (NF). Eleven patients with end-stage dense deposit disease underwent kidney transplantation. Of the 11, 7 had pretransplant low C3 and NF. In the posttransplant period, persisting low C3 levels were associated with persisting NF, although not quantitatively so. The original glomerular lesion recurred in the graft within 6 months in 9 of 11. Of these 9, 2 had no complement abnormalities either prior to or after transplantation. Pretransplant complement abnormalities were rapidly corrected in 4 of 7 patients whether or not recurrence of the original lesion occurred. Thus, serum complement profiles before and after transplantation are neither predictive nor indicative of recurrence.

Complement C3

The influence of C3b inactivator (KAF) concentration on the ability of serum to support complement activation.

Minor elevation of the concentration of the C3b inactivator (KAF) in whole serum (by 15-25%) markedly inhibits the capacity of the serum to support complement activation by inulin, aggregated IgG and by low concentrations of CVF. However, there was no effect when large concentrations of CVF were used nor was the spontaneous ageing of C3 slowed by increased KAF concentrations. These findings show that the activity of the C3b feedback cycle can be reduced by raising the KAF concentration above physiological levels. This finding may provide a mechanism for damping down complement activation locally in vivo. It seems that the spontaneous ageing of C3 in vitro does not involve a KAF-inhibitable step and therefore cannot be involved to explain the 'C3 tickover' in vitro.

Animals