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1.
J Infect Dis ; 225(2): 306-316, 2022 01 18.
Article in English | MEDLINE | ID: mdl-34260728

ABSTRACT

BACKGROUND: In Switzerland, HIV-1 transmission among men who have sex with men (MSM) has been dominated by subtype B, whilst non-B subtypes are commonly attributed to infections acquired abroad among heterosexuals. Here, we evaluated the temporal trends of non-B subtypes and the characteristics of molecular transmission clusters (MTCs) among MSM. METHODS: Sociodemographic and clinical data and partial pol sequences were obtained from participants enrolled in the Swiss HIV Cohort Study. For non-B subtypes, maximum likelihood trees were constructed, from which Swiss MTCs were identified and analyzed by transmission group. RESULTS: Non-B subtypes were identified in 8.1% (416/5116) of MSM participants. CRF01_AE was the most prevalent strain (3.5%), followed by subtype A (1.2%), F (1.1%), CRF02_AG (1.1%), C (0.9%), and G (0.3%). Between 1990 and 2019, an increase in the proportion of newly diagnosed individuals (0/123 [0%] to 11/32 [34%]) with non-B subtypes in MSM was found. Across all non-B subtypes, the majority of MSM MTCs were European. Larger MTCs were observed for MSM than heterosexuals. CONCLUSIONS: We found a substantial increase in HIV-1 non-B subtypes among MSM in Switzerland and the occurrence of large MTCs, highlighting the importance of molecular surveillance in guiding public health strategies targeting the HIV-1 epidemic.


Subject(s)
HIV Infections/epidemiology , HIV Infections/transmission , HIV Infections/virology , HIV-1/classification , Homosexuality, Male/statistics & numerical data , Adult , Cohort Studies , Disease Transmission, Infectious , HIV Seropositivity/epidemiology , HIV-1/genetics , HIV-1/isolation & purification , Humans , Male , Molecular Epidemiology , Phylogeny , Prospective Studies , Switzerland/epidemiology
2.
Clin Pharmacol Ther ; 115(6): 1450-1459, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38519844

ABSTRACT

Long-acting cabotegravir has been studied mainly in the stringent framework of clinical trials, which does not necessarily reflect the situation of people with HIV (PWH) in routine clinical settings. The present population pharmacokinetic analysis aims to build real-world reference percentile curves of cabotegravir concentrations, accounting for patient-related factors that may affect cabotegravir exposure. The second objective is to simulate whether dosing interval adjustments of cabotegravir could be considered in specific subpopulations. Overall, 238 PWH contributed to 1,038 cabotegravir levels (186 during the initial oral administration phase and 852 after intramuscular injection). Cabotegravir pharmacokinetics was best described using a one-compartment model with distinct first order-absorption for oral and intramuscular administrations, and identical volume and clearance. Our model showed almost 40% faster absorption and 30% higher clearance than previously reported, resulting in a time to steady-state of 8 months and an elimination half-life of 4.6 weeks for long-acting cabotegravir. Sex and body mass index significantly influenced absorption, and bodyweight affected clearance. Model-based simulations showed that cabotegravir trough concentrations in females were 25% lower 4 weeks after the intramuscular loading dose, but 42% higher during the late maintenance phase. Finally, simulations indicated that in females, despite significantly higher cabotegravir concentrations, longer intervals between injections may not consistently ensure levels above the 4-fold protein-adjusted 90% inhibitory target concentration.


Subject(s)
HIV Infections , Models, Biological , Pyridones , Humans , Injections, Intramuscular , Female , Male , HIV Infections/drug therapy , Pyridones/pharmacokinetics , Pyridones/administration & dosage , Adult , Administration, Oral , Middle Aged , Anti-HIV Agents/pharmacokinetics , Anti-HIV Agents/administration & dosage , Half-Life , Delayed-Action Preparations/pharmacokinetics , Young Adult , Aged , Diketopiperazines
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