On the nature of IgG dimers. I. Dimers in human polyclonal IgG preparations: kinetic studies

Gronski, P.; Bauer, R.; Bodenbender, L.; Kanzy, E.J.; Schmidt, K.H.; Zilg, H.; Seiler, F.R.

Behring Institute Mitteilungen 82: 127-143

1988


ISSN/ISBN: 0301-0457
PMID: 3408450
Document Number: 319999
Human polyclonal IgG for therapeutic or prophylactic purposes is usually prepared from pooled plasmas taken from more than 1000 donors. After storage in solution under physiological conditions for a sufficiently long period, a considerable percentage of dimers (approx. 10-30% [w/w] at a protein concentration of approx. 160 mg/ml) represents the main component of aggregates in contrast to the essentially monomeric IgGs of monoclonal or single donor origin. Analysing the kinetics of monomer-dimer equilibration suggests assuming approx. 10(6) different antibody (ab) populations interacting independently and simultaneously with a specific partner of the reaction. Concerning the average apparent (functional) equilibrium constant of association, Kapp., a distinction could be made between two main populations characterized by values in the range if approx. 2.5-3.0 X 10(10) M-1 and 1.0 X 10(12) M-1, respectively. The results were obtained by computer simulation, taking an association rate constant, k+1, of 5 X 10(5) M-1 s-1 as a basis. Since the main part of the individual populations was found to interact Fc-independently via Fab-located binding sites, we suppose that the dimers are for the most part complexes of idiotypic (Ids) and anti-idiotypic abs (anti-Ids). Moreover, dimerization seems to be mainly a bivalent binding reaction, at least at the experimental concentrations. The results are in line with the concept of an idiotypic network regulation in man.

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