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An immunogen synthesis strategy for the development of specific anti-deoxynivalenol monoclonal antibodies

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Version 2 2014-10-08, 14:43
Version 1 2014-10-03, 00:00
journal contribution
posted on 2014-10-08, 14:43 authored by Melanie Sanders, Yirong Guo, Abhishek Iyer, Yara Ruiz García, Anastasia Galvita, Arne Heyerick, Dieter Deforce, Martijn D.P. Risseeuw, Serge Van Calenbergh, Marc Bracke, Sergei Eremin, Annemieke Madder, Sarah De Saeger

An immunogen synthesis strategy was designed to develop anti-deoxynivalenol (DON) monoclonal antibodies with low cross-reactivity against structurally similar trichothecenes. A total of eight different DON immunogens were synthesised, differing in the type and position of the linker on the DON molecule. After immunisation, antisera from mice immunised with different DON immunogens were checked for the presence of relevant antibodies. Then, both homologous and heterologous enzyme-linked immunosorbent assays (ELISAs) were performed for hybridoma screening. Finally, three monoclonal antibodies against DON and its analogues were generated. In addition, monoclonal antibody 13H1 could recognise DON and its analogues in the order of HT-2 toxin > 15-acetyldeoxynivalenol (15-ADON) > DON, with IC50 ranging from 1.14 to 2.13 µg ml–1. Another monoclonal antibody 10H10 manifested relatively close sensitivities to DON, 3-acetyldeoxynivalenol (3-ADON) and 15-ADON, with IC50 values of 22, 15 and 34 ng ml–1, respectively. Using an indirect ELISA format decreases the 10H10 sensitivity to 15-ADON with 92%. A third monoclonal antibody 2A9 showed to be very specific and sensitive to 3-ADON, with IC50 of 0.38 ng ml–1. Using both 2A9 and 10H10 monoclonal antibodies allows determining sole DON contamination.

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