Vipera berus berus Venom from Russia: Venomics, Bioactivities and Preclinical Assessment of Microgen Antivenom

Яд Vipera berus berus из России: веномика, биологическая активность и доклиническая оценка антитоксина Microgen
R. I. Al-Shekhadat, Ksenia S. Lopushanskaya, Álvaro Segura, José Marı́a Gutiérrez, Juan J. Calvete, Davinia Plá
2019-02-01

Microgen antivenomVipera berus berus venomphospholipases A2third-generation antivenomicsvenomics
The common European adder, Vipera berus berus, is a medically relevant species, which is widely distributed in Russia and thus, is responsible for most snakebite accidents in Russia. We have investigated the toxic and enzymatic activities and have determined the proteomic composition of its venom. Phospholipases A2 (PLA2, 25.3% of the venom proteome), serine proteinases (SVSP, 16.2%), metalloproteinases (SVMP, 17.2%), vasoactive peptides (bradykinin-potentiating peptides (BPPs), 9.5% and C-type natriuretic peptides (C-NAP, 7.8%), cysteine-rich secretory protein (CRISP, 8%) and L-amino acid oxidase (LAO, 7.3%) represent the major toxin classes found in V. b. berus (Russia) venom. This study was also designed to assess the in vivo and in vitro preclinical efficacy of the Russian Microgen antivenom in neutralizing the main effects of V. b. berus venom. The results show that this antivenom is capable of neutralizing the lethal, hemorrhagic and PLA2 activities. Third-generation antivenomics was applied to quantify the toxin-recognition landscape and the maximal binding capacity of the antivenom for each component of the venom. The antivenomics analysis revealed that 6.24% of the anti-V. b. berus F(ab’)2 molecules fraction are toxin-binding antibodies, 60% of which represent clinically relevant antivenom molecules.
1
Only 6.24% of anti-Vipera berus F(ab’)2 molecules were toxin-binding antibodies, and 60% of these represented clinically relevant antivenom molecules.
2
The Russian Microgen antivenom neutralized the venom’s lethal, hemorrhagic, and phospholipase A2 activities in preclinical in vivo and in vitro assessments.
3
Third-generation antivenomics quantified the antivenom’s toxin-recognition profile and maximal binding capacity for individual venom components.
4
Vipera berus berus venom from Russia is dominated by PLA2 (25.3%), SVMP (17.2%), SVSP (16.2%), BPPs (9.5%), C-NAPs (7.8%), CRISP (8%), and LAO (7.3%).

Vipera berus berus venom from Russia and the Russian Microgen antivenom

The venom’s proteomic composition, toxic and enzymatic activities, and the antivenom’s preclinical neutralization efficacy and toxin-recognition capacity

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2019-02-01
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R. I. Al-Shekhadat
Ksenia S. Lopushanskaya
Álvaro Segura
José Marı́a Gutiérrez
Juan J. Calvete
Davinia Plá
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