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Antivenom
Antivenom (or antivenin, or antivenene) is a biological product used in the treatment of venomousbites. It is created by injecting a small amount of the targeted venom into an animal such as horses, sheep, goats, or rabbits; the subject animal will suffer an immune responseto the venom, producing antibodiesagainst the venom's active molecule which can then be harvested from the animal's blood and used to treat envenomation in others.
Inhaltsverzeichnis
- 1 Therapeutic use
- 2 Availability of antivenoms
- 3 Antivenin sources
- 4 Natural and acquired immunity
- 5 External link
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Therapeutic use
Antivenoms typically need to be administered as soon as possible after the venom has been injected to be effective (up to 4-5 hours). Since the advent of antivenoms, some bites which were previously inevitably fatal have become only rarely fatal provided that the antivenom is administered soon enough.
The antivenin is usually purified by several processes but still may contain other serum proteinsthat can act as antigens. Some individuals may react to the antivenin with an immediate hypersensitivity reaction (anaphylaxis) or a delayed hypersensitivity (serum sickness) reaction and antivenin should, therefore, be used with caution.
Antivenins can be classified into monovalent (when they are effective against a given species' venom) or polyvalent (when they are effective against a range of species, or several different species at the same time). Antivenins for therapeutic use are usally preserved as freeze-driedampules and must be injected intramuscularly to achieve effect, but some of them are available only in liquid form and must be preserved in a cold chain.
The principle of antivenim was based on that of vaccines, developed by Louis Pasteur. The first antivenom for snakes (called an anti-ophidic serum) was discovered by Albert Calmette, a French scientist of the Pasteur Instituteworking at its Indochinebranch in 1895, against the Indian naja snake. Vital Brazil, a Brazilian scientist developed in 1901the first monovalent and polyvalent antivenoms for Central and South American Crotalus, Bothrops and Elaps genera, as well as for certain species of venomous spiders, scorpionsand batrachia. They were all developed in a Brazilian institution, the Instituto Butantan, located in São Paulo, Brazil.
Availability of antivenoms
Antivenom have been developed for the venoms associated with the following animals:
Spiders
- Sydney funnel-web spider
- Venomous funnel-web tarantula
- Antilicosic serum: wolf spider(Lycosidaegenera).
- Antictenidic serum: Brazilian wandering spider(Phoneutriagenera).
- Antilatrodectic serum: Red-back spider, Black Widow Spider(Latrodectusgenera).
Snakes
- Mamba
- Death adder
- Taipan
- Anticrotalic serum: Rattlesnake(Crotalus durissus)
- Antibothropic serum: Central- and South American Jararaca(Bothrops)
- Antielapidic serum: True coral snake(Elapidae)
- Polyvalent antibothropic-anticrotalic
- Polyvalent antibothropic-antielapidic
No antivenom is yet available against Tetrodotoxin, produced by the blowfish.
Antivenin sources
The following groups assist in locating antivenins:
- USA, Oklahoma: Anti-venin index in Oklahoma City, Oklahoma (1-405-271-5454) maintains a 24-hour hotline to help locate rare antivenins.
- USA, Colorado: Poisondex central office in Denver, Colorado, USA (1-800-332-3073).
- Australia: Commonwealth Serum Laboratories, Parkville, Victoriais the source.
- Asia: Haffkine Biopharmaceutical Corporation, Parel, Bombay, India.
- Africa: South African Institute for Medical Research, Johannesburg, Republic of South Africa.
Natural and acquired immunity
Although individuals can vary in their physiopathological response and sensitivity to animal venoms, there is no natural immunity to them in humans. Some ophiophagicanimals are immune to the venoms produced by some species of venomous snakes, by the presence of antihemorrhagic and antineurotoxic factors in their blood. These animals include king snakes, opossumsand hedgehogs.
In theory, immunity can be acquired by humans by administering small and graded doses of venom (according to Greek mythology, King Mithridatesdid this in order to protect himself against attempts of poisoning, therefore this procedure is often called mithridatization). There is, however, no practical purpose or favorable cost/benefit ratio for this, except for people like zoohandlers, researchers, and circus artists who deal closely with venomous animals. Mithridatization has been tried with success in Australiaand Braziland total immunity has been achieved even to multiple bites of extremely venomous cobras and pit vipers.
External link
- Snakebite. eMedicine.de:Antivenin
This article is licensed under the GNU Free Documentation License. It uses material from the http://en.wikipedia.org/wiki/Antivenom Wikipedia article Antivenom.
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