EASTERN GREEN MAMBA (DENDROASPIS ANGUSTICEPS) SNAKE VENOM

///EASTERN GREEN MAMBA (DENDROASPIS ANGUSTICEPS) SNAKE VENOM

EASTERN GREEN MAMBA (DENDROASPIS ANGUSTICEPS) SNAKE VENOM

$241.30 $232.02

Dendroaspis angusticeps  AFRIKAANS Groen Mamba, DUTCH Smalkopmamba, ENGLISH Common Mamba, East African Green Mamba, Eastern Green Mamba, Green Mamba, White Mouthed Mamba, FRENCH Mamba Vert De L’Est, GERMAN Blattgrüne Mamba, Gewöhnliche Mamba, Schmalkopf Mamba, ITALIAN Mamba Dalla Testa Stretta, Mamba Verde Orientale.

Packaging Details: 100% Discreet at the buyers request
Delivery Time: 3 – 5 days
Packaging : venom sold in vacuum sealed glass vials of 100 mg, 500 mg and 1 gram.
Price is per Gram
Minimum Order Quantity is 1 Gram
N.B Certificate of origin available on request at $50.00 per certificate. Liquid forms also available

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Description

Green Mamba (Dendroaspis Angusticeps) Snake Venom

green mamba snake venom for sale. A toxicovenomic study was performed on the venom of the green mamba, Dendroaspis angusticeps. Forty-two different proteins were identified in the venom of D. angusticeps, in addition to the nucleoside adenosine. The most abundant proteins belong to the three-finger toxin (3FTx) (69.2%) and the Kunitz-type proteinase inhibitor (16.3%) families. Several sub-subfamilies of the 3FTxs were identified, such as Orphan Group XI (Toxin F-VIII), acetylcholinesterase inhibitors (fasciculins), and aminergic toxins (muscarinic toxins, synergistic-like toxins, and adrenergic toxins). Remarkably, no α-neurotoxins were identified. Proteins of the Kunitz-type proteinase inhibitor family include dendrotoxins.

Toxicological screening revealed a lack of lethal activity in all RP-HPLC fractions, except one, at the doses tested. Thus, the overall toxicity depends on the synergistic action of various types of proteins, such as dendrotoxins, fasciculins, and probably other synergistically-acting toxins. Polyspecific antivenoms manufactured in South Africa and India were effective in the neutralization of venom-induced lethality. These antivenoms also showed a pattern of broad immunorecognition of the different HPLC fractions by ELISA and immunoprecipitated the crude venom by gel immunodiffusion. The synergistic mechanism of toxicity constitutes a challenge for the development of effective recombinant antibodies, as it requires the identification of the most relevant synergistic toxins.

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