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Intratracheal Exposure to Fab Fragments of an Allergen-specific Monoclonal Antibody Regulates Asthmatic Responses in Mice

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Journal Immunology
Date 2013 Dec 6
PMID 24303921
Citations 3
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Abstract

Fab fragments (Fabs) maintain the ability to bind to specific antigens but lack effector functions due to the absence of the Fc portion. In the present study, we tested whether Fabs of an allergen-specific monoclonal antibody (mAb) were able to regulate asthmatic responses in mice. Asthmatic responses were induced in BALB/c mice by passive sensitization with anti-ovalbumin (OVA) polyclonal antibodies (pAbs) (day 0) and by active sensitization with OVA (days 0 and 14), followed by intratracheal (i.t.) challenge with OVA on day 1 and days 28, 29, 30 and 35. Fabs prepared by the digestion of an anti-OVA IgG1 (O1-10) mAb with papain were i.t. administered only once 30 min before antigenic challenge on day 1 or day 35. The results showed that i.t. administration of O1-10 Fabs with OVA markedly suppressed the early and/or late phases of asthmatic responses caused by passive and active sensitization. Similar results were obtained when Fabs of anti-OVA IgG2b mAb (O2B-3) were i.t. administered. In contrast, neither i.t. injection of intact 01-10/O2B-3 nor systemic injection of O1-10 Fabs suppressed the asthmatic responses. In vitro studies revealed that the capture of OVA by O1-10 Fabs prevented the subsequent binding of intact anti-OVA pAbs to the captured OVA. These results suggest that asthmatic responses may be down-regulated by the i.t. exposure to Fabs of an allergen-specific mAb via a mechanism involving the capture of allergen by Fabs in the respiratory tract before the interaction of intact antibody and allergen essential for the induction of asthmatic responses.

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References
1.
Yoshino S, Sasahara M, Hutamekalin P, Yamaki K, Mizutani N, Kuramoto H . Suppression of antibody-mediated arthritis in mice by Fab fragments of the mediating antibodies. Br J Pharmacol. 2010; 161(6):1351-60. PMC: 3000659. DOI: 10.1111/j.1476-5381.2010.00938.x. View

2.
Onah D, Uchiyama F, Nagakui Y, Ono M, Takai T, Nawa Y . Mucosal defense against gastrointestinal nematodes: responses of mucosal mast cells and mouse mast cell protease 1 during primary strongyloides venezuelensis infection in FcRgamma-knockout mice. Infect Immun. 2000; 68(9):4968-71. PMC: 101712. DOI: 10.1128/IAI.68.9.4968-4971.2000. View

3.
Matsumura M, Nagata M, Nakamura K, Kawai M, Baba T, Yamaki K . Adjuvant effect of zinc oxide on Th2 but not Th1 immune responses in mice. Immunopharmacol Immunotoxicol. 2009; 32(1):56-62. DOI: 10.3109/08923970903124627. View

4.
Cockcroft D . Allergen-induced increase in nonallergic airway responsiveness: a citation classic revisited. Can Respir J. 2000; 7(2):182-7. DOI: 10.1155/2000/846798. View

5.
Mungan D, Misirligil Z, Gurbuz L . Comparison of the efficacy of subcutaneous and sublingual immunotherapy in mite-sensitive patients with rhinitis and asthma--a placebo controlled study. Ann Allergy Asthma Immunol. 1999; 82(5):485-90. DOI: 10.1016/S1081-1206(10)62726-3. View