Some animals use venom. 

Some animals use venom. 


Venom is a type of toxin. Animals use it to hunt or stay safe. 


Venom is a special kind of toxin made by animals. It is different from poison because it is delivered actively. An animal uses a bite or a sting to send it into a wound. This process is called envenomation. 
Venom works through different types of toxins. Neurotoxins are common in mambas and black widow spiders. These toxins affect the nervous system of the animal. Myotoxins damage muscles and are found in rattlesnakes. Cytotoxins kill individual cells. These are found in the venom of honey bees. 
Venom has appeared many times in the history of life. Scientists call this convergent evolution. This means different animals developed venom on their own. It has evolved independently at least 104 times. 
Many different groups of animals carry venom. Arthropods like spiders and scorpions are very common. In bees, the stinger is actually a modified egg-laying device. 
Venom is not just dangerous; it is also very useful for humans. This field of study is called venomics. Scientists use venom to help treat many medical conditions. For example, snake venom can help treat arthritis and cancer. 
Venom, also known as a zootoxin, is a biological substance produced by animals. It is actively delivered to another organism through a wound. This delivery happens via a bite, a sting, or a similar action. The process of injecting this toxin is called envenomation. 
Venom works through several distinct classes of toxins that target different biological systems. Neurotoxins primarily affect the nervous systems of animals. These often act as ion channel toxins and are found in mambas, black widow spiders, and cone snails. Myotoxins damage muscles by binding to a specific receptor. These small, basic peptides are common in the venom of rattlesnakes and certain lizards. Cytotoxins are capable of killing individual cells. These are found in the apitoxin of honey bees and the venom of black widow spiders. 
Because many venoms are complex mixtures, they can contain many different types of toxins at once. This complexity allows the venom to be highly efficient. For example, some venoms contain phospholipases, which are enzymes that can affect calcium signaling. Snake venoms are particularly complex. They may contain proteases that hydrolyze protein peptide bonds. They can also contain nucleases that hydrolyze the phosphodiester bonds of DNA. These various components can cause a wide range of symptoms in a victim. These symptoms include pain, swelling, tissue necrosis, low blood pressure, convulsions, and even kidney failure or death.
Venom has appeared across a massive variety of life forms through convergent evolution. This means that different groups of animals evolved the trait independently. In fact, venom usage has evolved independently at least 104 times across 8 different phyla. 
Many different taxonomic groups utilize venom. Arthropods like spiders use fangs on their chelicerae to inject toxins. In bees and wasps, the stinger is actually a modified ovipositor, which is an egg-laying device. 
In nature, the relationship between venomous animals and their targets often creates a "chemical arms race." This is a form of coevolution between predators and prey. As predators become better at using venom, the surviving prey develop resistance. This resistance allows prey to survive, but it also allows predators to move into new ecological niches. For example, the California ground squirrel has developed varying degrees of resistance to the Northern Pacific rattlesnake. Similarly, the kingsnake of the Americas has evolved resistance to the venom of snakes like the copperhead. 
While venom can be dangerous to humans, it is also a vital tool for modern medicine. This field of study is known as venomics. Scientists are investigating how venom proteins can treat various medical conditions. For instance, snake venom proteins are used to treat thrombosis, arthritis, and some cancers. The venom of the Gila monster contains exenatide, which is used to treat type 2 diabetes. Additionally, solenopsins from fire ant venom have shown potential for treating psoriasis. In 2013, envenomation resulted in 57,000 human deaths, which is a decrease from 76,000 deaths in 1990. With over 173,000 species using venom, the potential for pharmaceutical discovery remains enormous.
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