Chromatography

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Chromatography is a very powerful method that can be used for the purification and separation of [[molecule|molecules]] in the laboratory. For example, without chromatography, and the work of a [[Banting|Banting]], [[Best|Best]] and a biochemist called [[Collip|Collip]] (who perfected the purification), we would have no treatment for [[type I diabetes|type I diabetes]], that is, [[insulin|insulin]] would not have been discovered. Without chromatography we wouldn’t be able to sequence [[DNA|DNA]], perform [[PCR|PCR]], and many drugs and biological mechanisms would not have been discovered.
 
Chromatography is a very powerful method that can be used for the purification and separation of [[molecule|molecules]] in the laboratory. For example, without chromatography, and the work of a [[Banting|Banting]], [[Best|Best]] and a biochemist called [[Collip|Collip]] (who perfected the purification), we would have no treatment for [[type I diabetes|type I diabetes]], that is, [[insulin|insulin]] would not have been discovered. Without chromatography we wouldn’t be able to sequence [[DNA|DNA]], perform [[PCR|PCR]], and many drugs and biological mechanisms would not have been discovered.
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Examples of chromatography methods include: [[ion exchange chromatography|ion exchange chromatography]], and [[size exclusion chromatography|size exclusion chromatography]].

Revision as of 08:13, 28 July 2010

Chromatography is a very powerful method that can be used for the purification and separation of molecules in the laboratory. For example, without chromatography, and the work of a Banting, Best and a biochemist called Collip (who perfected the purification), we would have no treatment for type I diabetes, that is, insulin would not have been discovered. Without chromatography we wouldn’t be able to sequence DNA, perform PCR, and many drugs and biological mechanisms would not have been discovered.

Examples of chromatography methods include: ion exchange chromatography, and size exclusion chromatography.

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