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Antiretroviral drugs are used to manage HIV/AIDS. Multiple antiretroviral drugs are often combined into a single pill in order to reduce pill burden. Some of these combinations are complete single-tablet regimens; the others must be combined with additional pills to make a treatment regimen.
This is a list of abbreviations used in medical prescriptions, including hospital orders (the patient-directed part of which is referred to as sig codes).This list does not include abbreviations for pharmaceuticals or drug name suffixes such as CD, CR, ER, XT (See Time release technology § List of abbreviations for those).
The main discussion of these abbreviations in the context of drug prescriptions and other medical prescriptions is at List of abbreviations used in medical prescriptions. Some of these abbreviations are best not used, as marked and explained here.
HIV Mylan: NNRTI 1998 Elvitegravir: HIV Gilead Sciences Integrase inhibitor 2012 (Fixed-dose combo Stribild) 2014 (single pill) 2015 ; Emtricitabine: HIV Gilead Sciences NRTI 2003 Enfuvirtide: HIV Entry inhibitor 2003 Ensitrelvir: COVID-19: Shionogi: 3C-like protease inhibitor Entecavir: HIV NRTI 2005 Etravirine (Intelence) [8] HIV NNRTI 2008 ...
The management of HIV/AIDS normally includes the use of multiple antiretroviral drugs as a strategy to control HIV infection. [1] There are several classes of antiretroviral agents that act on different stages of the HIV life-cycle. The use of multiple drugs that act on different viral targets is known as highly active antiretroviral therapy ...
Extensively drug-resistant tuberculosis: XHED X-linked hypohidrotic ectodermal dysplasia: XLMTM X-linked myotubular myopathy: XLOS X-linked Opitz G/BBB syndrome XLP syndrome X-linked lymphoproliferative syndrome (see Duncan Disease) XLSA X-linked sideroblastic anemia: XMEA X-linked myopathy with excessive autophagy: XMEN
HIV protease inhibitors (16 P) I. Integrase inhibitors (13 P) M. Maturation inhibitors (3 P) R. Reverse transcriptase inhibitors (2 C, 8 P) Pages in category ...
Efavirenz is not effective against HIV-2, as the pocket of the HIV-2 reverse transcriptase has a different structure, which confers intrinsic resistance to the NNRTI class. [ 20 ] As most NNRTIs bind within the same pocket, viral strains which are resistant to efavirenz are usually also resistant to the other NNRTIs, nevirapine and delavirdine .