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The aetiology of acute otitis media in children. Occurrence of bacteria, L forms of bacteria and mycoplasma in the middle ear exudate. Relationship between bacterial findings in the middle ear exudate, nasopharynx and throat.
Scand J Infect Dis. 1971;3(3):217-23
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High frequencies in African and non-African populations of independent mutations in the mannose binding protein gene.
Hum Mol Genet. 1992 Dec;1(9):709-15
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Middle ear effusion and risk factors.
J Otolaryngol. 1982 Feb;11(1):46-51
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A longitudinal study of respiratory viruses and bacteria in the etiology of acute otitis media with effusion.
N Engl J Med. 1982 Jun 10;306(23):1377-83
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Complement aberrations in serum from children with otitis due to S. pneumoniae or H. influenzae.
Acta Otolaryngol. 1982 Sep-Oct;94(3-4):275-82
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Epidemiology of acute otitis media in children.
Acta Otolaryngol Suppl. 1982;388:1-52
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Human class II major histocompatibility antigen beta-chains are derived from at least three loci.
Nature. 1983 Jan 6;301(5895):82-4
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A common congenital immunodeficiency predisposing to infection and atopy in infancy.
Arch Dis Child. 1983 Oct;58(10):799-802
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Quantitative aspects of IgD and secretory immunoglobulins in middle ear effusions.
Int J Pediatr Otorhinolaryngol. 1983 Dec;6(3):247-53
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Nasopharyngeal bacteriology and secretory otitis media in young children.
Acta Otolaryngol. 1988 Jan-Feb;105(1-2):126-31
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Nasopharyngeal secretory immunoglobulins in children with recurrent acute otitis media and secretory otitis media.
APMIS. 1988 Mar;96(3):199-205
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A human mannose-binding protein is an acute-phase reactant that shares sequence homology with other vertebrate lectins.
J Exp Med. 1988 Mar 1;167(3):1034-46
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Plasma IgG, IgG subclasses and acute-phase proteins in children with recurrent acute otitis media.
APMIS. 1988 Aug;96(8):676-80
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The Bayesian approach to the evaluation of risk factors in acute and recurrent acute otitis media.
Acta Otolaryngol. 1988 Jul-Aug;106(1-2):94-101
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IgD in nasopharyngeal secretions and tonsils from otitis-prone children.
Clin Exp Immunol. 1988 Jul;73(1):149-54
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Structures and functions associated with the group of mammalian lectins containing collagen-like sequences.
FEBS Lett. 1989 Jun 19;250(1):78-84
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Neoglycolipids as probes of oligosaccharide recognition by recombinant and natural mannose-binding proteins of the rat and man.
Biochem J. 1989 Aug 15;262(1):131-8
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Association of low levels of mannan-binding protein with a common defect of opsonisation.
Lancet. 1989 Nov 25;2(8674):1236-9
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A serum lectin (mannan-binding protein) has complement-dependent bactericidal activity.
J Biochem. 1989 Sep;106(3):483-9
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Binding of the pentamer/hexamer forms of mannan-binding protein to zymosan activates the proenzyme C1r2C1s2 complex, of the classical pathway of complement, without involvement of C1q.
J Immunol. 1990 Mar 15;144(6):2287-94
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Quantitative aspects of the mucosal immunity and bacteriology of the nasopharynx and middle ear cavity. Studies on children with clinically different forms of otitis media.
APMIS Suppl. 1990;16:1-41
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Human leukocyte C1q receptor binds other soluble proteins with collagen domains.
J Exp Med. 1990 Sep 1;172(3):955-9
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Molecular basis of opsonic defect in immunodeficient children.
Lancet. 1991 Jun 29;337(8757):1569-70
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The concentration of the C-type lectin, mannan-binding protein, in human plasma increases during an acute phase response.
Clin Exp Immunol. 1992 Oct;90(1):31-5
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Gene frequency and partial protein characterization of an allelic variant of mannan binding protein associated with low serum concentrations.
Clin Exp Immunol. 1992 Dec;90(3):517-21
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Activation of the classical complement pathway by mannose-binding protein in association with a novel C1s-like serine protease.
J Exp Med. 1992 Dec 1;176(6):1497-502
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Diallelic polymorphism may explain variations of the blood concentration of mannan-binding protein in Eskimos, but not in black Africans.
Eur J Immunogenet. 1992 Dec;19(6):403-12
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A low serum concentration of mannan-binding protein is not associated with serogroup B or C meningococcal disease.
Scand J Immunol. 1993 Apr;37(4):468-70
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Cellular monosaccharide patterns of Neisseriaceae.
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