Increasing the potency of neutralizing single-domain antibodies by functionalization with a CD11b/CD18 binding domain.
MAbs
; 7(5): 820-8, 2015.
Article
em En
| MEDLINE
| ID: mdl-26192995
Recombinant single domain antibodies (nanobodies) constitute an attractive alternative for the production of neutralizing therapeutic agents. Their small size warrants rapid bioavailability and fast penetration to sites of toxin uptake, but also rapid renal clearance, which negatively affects their performance. In this work, we present a new strategy to drastically improve the neutralizing potency of single domain antibodies based on their fusion to a second nanobody specific for the complement receptor CD11b/CD18 (Mac-1). These bispecific antibodies retain a small size (~30 kDa), but acquire effector functions that promote the elimination of the toxin-immunocomplexes. The principle was demonstrated in a mouse model of lethal toxicity with tetanus toxin. Three anti-tetanus toxin nanobodies were selected and characterized in terms of overlapping epitopes and inhibition of toxin binding to neuron gangliosides. Bispecific constructs of the most promising monodomain antibodies were built using anti Mac-1, CD45 and MHC II nanobodies. When co-administered with the toxin, all bispecific antibodies showed higher toxin-neutralizing capacity than the monomeric ones, but only their fusion to the anti-endocytic receptor Mac-1 nanobody allowed the mice to survive a 10-fold lethal dose. In a model of delayed neutralization of the toxin, the anti- Mac-1 bispecific antibodies outperformed a sheep anti-toxin polyclonal IgG that had shown similar neutralization potency in the co-administration experiments. This strategy should have widespread application in the development of nanobody-based neutralizing therapeutics, which can be produced economically and more safely than conventional antisera.
Palavras-chave
ANOVA, analysis of variance; ELISA, enzyme-linked immunosorbent assay; FR2, framework 2; IMGT, International ImMunoGeneTics; LD, lethal dose; MALDI-TOF, matrix assisted laser desorption/ionization-time of flight; Poly-IgG, sheep anti-toxin polyclonal IgG;; VHH; effector functions; immunotherapy; nanobody; neutralization; phage display; therapeutic antibodies
Texto completo:
1
Coleções:
01-internacional
Base de dados:
MEDLINE
Assunto principal:
Antitoxina Tetânica
/
Antígenos CD18
/
Antígeno CD11b
/
Anticorpos Neutralizantes
/
Anticorpos de Domínio Único
Limite:
Animals
Idioma:
En
Revista:
MAbs
Assunto da revista:
ALERGIA E IMUNOLOGIA
Ano de publicação:
2015
Tipo de documento:
Article
País de afiliação:
Uruguai
País de publicação:
Estados Unidos