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The Journal of Biological Chemistry|January 31, 1998
Dissection of C1q capability of interacting with IgG. Time-dependent formation of a tight and only partly reversible associationM Kaul, M LoosBehring Institute Mitteilungen|July 1, 1989
The acquired C1-INH deficiencies with autoantibodies (AAE type II)J Alsenz, M LoosInfection and Immunity|August 1, 1992
A 66-kilodalton heat shock protein of Salmonella typhimurium is responsible for binding of the bacterium to intestinal mucusM Ensgraber, M LoosInfection and Immunity|August 1, 1979
Complement components (C1, C2, C3, C4) in bronchial secretions after intranasal infection of guinea pigs with Mycoplasma pneumoniae: dissociation of unspecific and specific defense mechanismsM Loos, H BrunnerJournal of Immunology (Baltimore, Md. : 1950)|July 1, 1978
Trinitrophenylated red cells (E-TNP) as a model for antibody-independent activation of the complement system via the classical pathwayM Loos, R ThesenImmunobiology|September 1, 1985
Effect of EDTA and citrate on the functional activity of the first component of complement, C1, and the C1q subcomponentS Zapf, M LoosArzneimittel-Forschung|April 1, 1976
[Design and evaluation of the controlled clinical trial/demonstrated by an efficacy test of the combination pentosan polysulphate/nicotinic acid in disturbed cerebral circulation (author's transl)]M Loos, V W RahlfsComplement and Inflammation|January 1, 1989
Monoclonal antibodies against components of the classical pathway of complementH P Heinz, M LoosImmunobiology|March 1, 1988
The second component of human complement: use of glycosidases and glucosylation to distinguish the two formsD R Schultz, M LoosInfection and Immunity|January 1, 1980
Analysis of the anticomplementary activity in sera of three African patients with parasitic and bacteriological infectionsM Loos, M P DierichPageof 148