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COVID-19: Shionogi: 3C-like protease inhibitor Entecavir: HIV NRTI 2005 Etravirine (Intelence) [8] HIV NNRTI 2008 Famciclovir: Herpes Zoster: Guanosine analogue 1994 Fomivirsen: AIDS Anti-sense oligonucleotide: Anti-sense FDA-licensed in 1998; Withdrawn in EU (2002), US (2006) Fosamprenavir: HIV ViiV Healthcare: Amprenavir pro-drug: 2003 (FDA ...
The principal for obstetric management of COVID-19 include rapid detection, isolation, and testing, profound preventive measures, regular monitoring of fetus as well as of uterine contractions, peculiar case-to-case delivery planning based on severity of symptoms, and appropriate post-natal measures for preventing infection.
[9] [10] These drugs had been further developed prior to the COVID-19 pandemic for other diseases including SARS. [11] The utility of targeting the 3CL protease in a real world setting was first demonstrated in 2018 when GC376 (a prodrug of GC373) was used to treat the previously 100% lethal cat coronavirus disease, feline infectious ...
In the European Union, remdesivir is indicated for the treatment of COVID‑19 in adults and adolescents (aged twelve years and older with body weight at least 40 kilograms (88 lb)) with pneumonia requiring supplemental oxygen and for adults who do not require supplemental oxygen and who are at increased risk of progressing to severe COVID‑19.
In September 2021, Merck signed a voluntary licensing agreement with the Medicines Patent Pool (MPP) that allows MPP to sublicense molnupiravir and supply the COVID‑19 oral medication to 105 low- and middle-income countries. The cost of the US government's initial purchase was about $712 per course of treatment; treatment with generics in ...
Depending on the pathogen and antibiotics being tested, the media can be changed and/or adjusted. The antimicrobial concentration is adjusted into the correct concentration by mixing stock antimicrobial with media. The adjusted antimicrobial is serially diluted into multiple tubes (or wells) to obtain a gradient. The dilution rate can be ...
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The minimum bactericidal concentration (MBC) is the lowest concentration of an antibacterial agent required to kill a particular bacterium. [1] It can be determined from broth dilution minimum inhibitory concentration (MIC) tests by subculturing to agar plates that do not contain the test agent.