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  • In vivo neutralization of dendrotoxin-mediated neurotoxicity of black mamba venom by oligoclonal human IgG antibodies.

In vivo neutralization of dendrotoxin-mediated neurotoxicity of black mamba venom by oligoclonal human IgG antibodies.

Nature communications (2018-10-04)
Andreas H Laustsen, Aneesh Karatt-Vellatt, Edward W Masters, Ana Silvia Arias, Urska Pus, Cecilie Knudsen, Saioa Oscoz, Peter Slavny, Daniel T Griffiths, Alice M Luther, Rachael A Leah, Majken Lindholm, Bruno Lomonte, José María Gutiérrez, John McCafferty
ABSTRACT

The black mamba (Dendroaspis polylepis) is one of the most feared snake species of the African savanna. It has a potent, fast-acting neurotoxic venom comprised of dendrotoxins and α-neurotoxins associated with high fatality in untreated victims. Current antivenoms are both scarce on the African continent and present a number of drawbacks as they are derived from the plasma of hyper-immunized large mammals. Here, we describe the development of an experimental recombinant antivenom by a combined toxicovenomics and phage display approach. The recombinant antivenom is based on a cocktail of fully human immunoglobulin G (IgG) monoclonal antibodies capable of neutralizing dendrotoxin-mediated neurotoxicity of black mamba whole venom in a rodent model. Our results show the potential use of fully human monoclonal IgGs against animal toxins and the first use of oligoclonal human IgG mixtures against experimental snakebite envenoming.

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Sigma-Aldrich
Anticorpo monoclonale ANTI-FLAG® M2, 1 mg/mL, clone M2, affinity isolated antibody, buffered aqueous solution (50% glycerol, 10 mM sodium phosphate, and 150 mM NaCl, pH 7.4)
Millipore
Protein G–Agarose, lyophilized powder, Contains lactose stabilizers that must be removed prior to use.