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John Sahm. 2005. Looking within.. https://pubmed.ncbi.nlm.nih.gov/16456973/

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Drug resistance mutations in HIV provirus are associated with defective proviral genomes with hypermutation.

BACKGROUND: HIV proviral sequencing overcomes the limit of plasma viral load requirement by detecting all the 'archived mutations', but the clinical relevance remains to be evaluated. METHODS: We included 25 participants with available proviral sequences (both intact and defective sequences available) and utilized the genotypic sensitivity score (GSS) to evaluate the level of resistance in their provirus and plasma virus. Defective sequences were further categorized as sequences with and without hypermutations. Personalized GSS score and total GSS score were calculated to evaluate the level of resistance to a whole panel of antiretroviral therapies and to certain antiretroviral therapy that a participant was using. The rate of sequences with drug resistance mutations (DRMs) within each sequence compartment (intact, defective and plasma viral sequences) was calculated for each participant. RESULTS: Defective proviral sequences harbored more DRMs than other sequence compartments, with a median DRM rate of 0.25 compared with intact sequences (0.0, P&#x200a;=&#x200a;0.014) and plasma sequences (0.095, P&#x200a;=&#x200a;0.30). Defective sequences with hypermutations were the major source of DRMs, with a median DRM rate of 1.0 compared with defective sequences without hypermutations (0.042, P&#x200a;<&#x200a;0.001). Certain Apolipoprotein B Editing Complex 3-related DRMs including reverse transcriptase gene mutations M184I, E138K, M230I, G190E and protease gene mutations M46I, D30N were enriched in hypermutated sequences but not in intact sequences or plasma sequences. All the hypermutated sequences had premature stop codons due to Apolipoprotein B Editing Complex 3. CONCLUSION: Proviral sequencing may overestimate DRMs as a result of hypermutations. Removing hypermutated sequences is essential in the interpretation of proviral drug resistance testing.

Anti-HIV Agents↗

Early initiation of antiretroviral therapy: the current best way to reduce liver-related deaths in HIV/hepatitis C virus-coinfected patients.

Approximately 25% to 35% of HIV-infected persons in developed countries are coinfected with hepatitis C virus (HCV). HCV liver disease is accelerated by HIV coinfection, especially at low CD4 cell counts. Highly active antiretroviral therapy (HAART) dramatically reduces HIV-related mortality, and liver disease has emerged as a major cause of death in HIV/HCV-coinfected persons. Anti-HCV therapy with pegylated interferon plus ribavirin can cure HCV infection in up to 40% of coinfected patients; however, only approximately 10% of coinfected patients are considered candidates. Hence, HCV therapy cures approximately 4% of coinfected patients. Eleven cohort studies have shown that HAART is associated with a reduced rate of progression of HCV liver disease, and 4 of these studies have demonstrated a reduction in liver-related mortality. Although offering HCV therapy to the few eligible HIV/HCV-coinfected patients is important, early initiation of HAART in coinfected patients has a greater public health impact in reducing liver-related mortality than in curing HCV infection in approximately 4% of these patients.

Anti-HIV Agents↗

Genotypic resistance of archived and circulating viral strains in the blood of treated HIV-infected individuals.

The aim of this study was to evaluate patterns of antiretroviral resistance of HIV-1 in peripheral blood mononuclear cells (PBMCs) and in the plasma of patients whose therapeutic regimen is failing. Plasma and PBMC samples were collected from 95 HIV-infected patients undergoing long-term treatment. Genotyping of the reverse transcriptase (RT) and protease genes of HIV-1 was undertaken using the fluorescent dideoxy-terminator method. Comparison of the amino acid sequence of the RT and protease genes in cell-associated variants of HIV-1 with that of the plasma revealed that 62 of the 95 patients' samples tested exhibited different genotypic resistance patterns (discordant samples [DSs]). In 27% of samples, the patterns of resistance detected were concordant in both compartments. In 51% of DSs, the greatest number of mutations was found in plasma; however, in 37% of DSs, greater numbers of mutations were found in PBMC DNA. The HIV mutation patterns detected in plasma do not necessarily reflect those found in the cell-associated compartment. The observation that the cellular compartment may contain an archive of the resistance variant makes this reservoir an interesting substrate for analysis of the "resistance potential" in a given patient.

Anti-HIV Agents↗