JARARACA PIT VIPER SNAKE VENOM

JARARACA PIT VIPER SNAKE VENOM

Original price was: $1,206.50.Current price is: $1,113.69.

Angiotensin-converting enzyme inhibitor for curing hypertension, cardiac failure. Crude Bothrops jararaca venom (BjV) was preincubated with Na -EDTA or AEBSF, which are inhibitors of SVMP and SVSP, respectively, and injected subcutaneously or intravenously into rats to analyze the contribution of local lesion to the development of hemostatic disturbances.

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

Jararaca Pit Viper Snake Venom

Jararaca Pit Viper Snake Venom for sale. If you’ve just been bitten by a venomous snake and your flesh is starting to rot and you can’t breathe, you may not be in the mood to hear how beautiful snake venom can be. But from a safe distance, it really is a marvel to behold.

Snake venom is a blend of molecules, many of which are exquisitely adapted for wreaking havoc. Some are enzymes that slice muscles apart. Some grab onto proteins that normally form clots, so that a snake’s victim can’t stop bleeding. Many snake venoms attack the nervous system with molecular precision that’s so good that neuroscientists have snakes to thank for some of their biggest discoveries.

In the 1950s, two researchers in Taiwan–CY Lee and CC Chang–decided to study the venom of the banded krait. A bite from the snake, native to Taiwan, caused paralysis and shallow breathing–suggesting to the scientists that the snake’s venom must interfere in an interesting way with the nervous system’s control of muscles.

Nerves trigger muscles to contract by releasing the neurotransmitter acetylcholine. At first Lee and Chang assumed that the snake venom must cut acetylcholine apart, but they found it had no effect. Instead, they discovered, the banded krait venom prevented neurons from responding to acetylcholine and from releasing their own. These two changes were caused by two different proteins in the venom of the banded krait, which Lee and Chang dubbed α-bungarotoxin and β-bungarotoxin.

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