Amantadine
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Pharmacokinetics
For Pharmacokinetic Data References, See: References |
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References
Better Known as: Symmetrel
Mechanism of ActionThe Influenza A Virus viral envelope is dotted with various ion channels including M2 Proton Channels. The M2 protein plays a critical role in the life cycle of the Influenza virus. It enables hydrogen ions to enter the virion form the endosome. The result of this is a more acidic environment within the virus, causing dissociation of the viral matrix protein M1 from the ribonucleoprotein RNP. Dissociation of the viral matrix protein is a crucial step in uncoating of the virus and exposing its contents to the cytoplasm of the host cell, allowing the virus to hijack the cellular machinery to replicate. Amantadine binds to the pore formed by the M2 protein, utilizing Val 27, Ala 30 and Ser 31 in each M2 protein chain, effectively disabling the protein from transferring protons into the viral particle.[1]
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For Pharmacokinetic Data References, See: References |
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This page was last modified 09:08, 14 January 2024.