BACKGROUND:Current guidelines for post-exposure prophylaxis (PEP) recommend 28 days of daily oral antiretroviral drugs. However, low adherence and inadequate regimen completion represent important challenges. We investigated in macaques whether a single injection of the combination of long-acting cabotegravir and rilpivirine (CAB LA/RPV LA) could serve as an effective PEP regimen. METHODS:Six macaques received a clinically relevant dose of CAB LA/RPV LA 24 h after a single rectal exposure to a high dose of reverse transcriptase simian-human immunodeficiency virus (RT-SHIV). Infection outcome was compared with seven untreated controls. FINDINGS:CAB LA/RPV LA conferred protection against infection, with two of the six treated macaques becoming infected with RT-SHIV compared with all untreated controls (p = 0.021, Fisher's, exact test). The two breakthrough infections were characterized by early detection of proviral DNA, delayed detection of plasma viral RNA and seroconversion within 3-10 months, and emergence of RPV resistance. The remaining four treated macaques tested negative by multiple serological and molecular assays through 16 months of follow-up. The calculated efficacy of CAB LA/RPV LA was 66.7% (95% CI = -3.4%, 89.3%; p = 0.0571) although the large confidence interval adds uncertainty to the point estimate. INTERPRETATION:We document protection in macaques by one-time CAB LA/RPV LA PEP under highly stringent modeling conditions. Delayed breakthrough infections highlight potential diagnostic challenges associated with this PEP modality and underscore the need for prolonged follow-up. FUNDING:This work was funded by CDC intramural funds.
Pre-exposure prophylaxis (PrEP) is crucial for curbing the global HIV epidemic. While daily oral drug regimens serve as the cornerstone of HIV PrEP, inconsistent adherence has highlighted the necessity for long-acting drug delivery systems to enhance user uptake and retention. In this study, we developed a ε-polycaprolactone (PCL) implant designed for sustained release of islatravir (ISL), a potent nucleoside reverse transcriptase translocation inhibitor (NRTTI) utilized in HIV treatment. In pig-tailed macaques, implantation of two ISL implants in the inner arms resulted in persistent ISL concentrations in plasma (median = 3.9 nM [range = 1.2-6.7]) and ISL-triphosphate (ISL-TP) levels in peripheral blood mononuclear cells (PBMCs) (median = 192.4 fmol/106 PBMCs [range = 28.4-362.1]). After removal of one implant, median plasma ISL levels decreased approximately 2.7-fold (1.4 nM [range = 0.4-2.0]). These levels were similar to those observed in humans receiving daily oral ISL dosing of 0.25 mg/day, which is considered safe and effective (1.3 nM). Median ISL-TP levels also showed a decrease of about 2.5-fold (76.3 fmol/106 PBMCs [range = 18.4-148.8]) but remained above the established PrEP protection threshold for up to 8 months. In efficacy studies with repeated vaginal challenges to SHIVSF162P3, placebo controls were infected after a median of two SHIV exposures. After a cumulative total of 144 SHIV exposures, five of six macaques with ISL implants remained protected, resulting in an estimated efficacy of 96.8 % (CI = 74.9-99.6 %). The ISL implants were well-tolerated in macaques and showed no signs of ISL-induced lymphopenia over the 8-month dosing period. These findings support the clinical development of the PCL implant as a safe and effective long-acting drug delivery of ISL or other NRTTIs for long-acting HIV PrEP in women.
HIV particles in the blood largely originate from activated lymphocytes and can overshadow variants which may be expressed from other cell types. Investigations of virus persistence must be able to distinguish cells refractory to viral clearance that serve as reservoirs. To investigate additional cell types that may be associated with in vivo HIV expression we developed a virus particle immunomagnetic capture method targeting several markers of cellular origin that become embedded within virion envelopes during budding. We evaluated the ability of markers to better distinguish cell lineage source subpopulations by assessing combinations of different antibodies with cell-sorted in vitro culture and clinical specimens. Various deductive algorithms were designed to discriminate source cell lineages and subsets. From the particle capture algorithms, we identified distinct variants expressed within individuals that were associated with disparate cellular markers. Among the variants uncovered were minority-level viruses with drug resistance mutations undetected by sequencing and often were associated with markers indicative of myeloid lineage (CD3-/CD10-/CD16+ or /CD14+, and CD3-/CD16-/CD14-/CD11c+ or /HLA-DR+) cell sources. The diverse HIV genetic sequences expressed from different cell types within individuals, further supported by the appearance of distinct drug-resistant variants, highlights the complexity of HIV reservoirs in vivo which must be considered for HIV cure strategies. This approach could also be helpful in examining in vivo host cell origins and genetic diversity in infections involving other families of budding viruses.
As use of human immunodeficiency virus (HIV) integrase strand transfer inhibitors (INSTI) increases and formulations are being developed for maintenance therapies and chemoprophylaxis, assessing virus suppression under INSTI-based regimens in prevention-relevant biologic compartments, such as the male genital tract, is timely. We used cell-source marker virion immunocapture to examine amplification of particle RNA then assessed the phylogenetic relatedness of seminal and blood viral sequences from men with HIV who were prescribed INSTI-based regimens. Seminal plasma immunocaptures yielded amplifiable virion RNA from 13 of 24 (54%) men, and the sequences were primarily associated with markers indicative of macrophage and resident dendritic cell sources. Genetic distances were greatest (>2%) between seminal virions and circulating proviruses, pointing to ongoing low-level expression from tissue-resident cells. While the low levels in semen predict an improbable likelihood of transmission, viruses with large genetic distances are expressed under potent INSTI therapy and have implications for determining epidemiologic linkages if adherence is suboptimal.
The HIV integrase inhibitor, dolutegravir (DTG), in the absence of eliciting integrase (int) resistance, has been reported to select mutations in the virus 3′-polypurine tract (3′-PPT) adjacent to the 3′-LTR U3. An analog of DTG, cabotegravir (CAB), has a high genetic barrier to drug resistance and is used in formulations for treatment and long-acting pre-exposure prophylaxis. We examined whether mutations observed for DTG would emerge in vitro with CAB. HIV-1IIIB was cultured in paired experiments of continuous high (300 nM) CAB initiated 2 h or 24 h after infection. After eight months of CAB treatment, no int resistance was detected. Conversely, HIV RNA 3′-PPT mutants were detected within one month and were the majority virus by day 98. The appearance of 3′-PPT variants coincided with a rapid accumulation of HIV 1-LTR and 2-LTR circles. RNA amplification from the 3′-LTR TAR identified transcripts crossing 2-LTR circle junctions, which incorporated the adjacent U5 sequence identical to the 3′-PPT mutants. 3′-PPT variants were only identified in LTR circles and transcripts. Additionally, we found evidence of linear HIV and LTR circle recombination with human DNA at motifs homologous to 3′-PPT sequences. HIV persistence under CAB was associated with transcription and recombination of LTR circle sequences.
Pre-exposure prophylaxis (PrEP) with a weekly oral regimen of antiretroviral drugs could be a suitable preventative option for individuals who struggle with daily PrEP or prefer not to use long-acting injectables. We assessed in macaques the efficacy of weekly oral tenofovir alafenamide (TAF) at doses of 13.7 or 27.4 mg/kg. Macaques received weekly oral TAF for six weeks and were exposed twice-weekly to SHIV vaginally or rectally on day 3 and 6 after each dose. Median TFV-DP levels in PBMCs following the 13.7 mg/kg dose were 3110 and 1137 fmols/106 cells on day 3 and 6, respectively. With the 27.4 mg/kg dose, TFV-DP levels were increased (~2-fold) on day 3 and 6 (6095 and 3290 fmols/106 cells, respectively). Both TAF doses (13.7 and 27.4 mg/kg) conferred high efficacy (94.1% and 93.9%, respectively) against vaginal SHIV infection. Efficacy of the 27.4 mg/kg dose against rectal SHIV infection was 80.7%. We estimate that macaque doses of 13.7 and 27.4 mg/kg are equivalent to approximately 230 and 450 mg of TAF in humans, respectively. Our findings demonstrate the effectiveness of a weekly oral PrEP regimen and suggest that a clinically achievable oral TAF dose could be a promising option for non-daily PrEP.
The acute retroviral syndrome may present with diverse systemic manifestations and laboratory abnormalities. Here we present a rare case of primary human immunodeficiency virus (HIV) infection causing severe acute hepatitis. Liver histopathology demonstrated a pattern of lymphocytic inflammation consistent with acute hepatitis, high levels of HIV proviral DNA were detected within liver tissue, and immunofluorescence showed HIV p24 antigen within immune and parenchymal cells including hepatocytes. We review the literature pertaining to HIV infection of cell compartments within the liver and discuss the implications for HIV-associated acute liver disease.
As use of HIV integrase strand transfer inhibitors (INSTI) increases and formulations are being developed for maintenance therapies and chemoprophylaxis, assessing virus suppression under INSTI-based regimens in prevention-relevant biologic compartments, such as the male genital tract, is timely. We used cell-source marker virion immunocapture to examine amplification of particle RNA then assessed the phylogenetic relatedness of seminal and blood viral sequences from men with HIV who were prescribed INSTI-based regimens. Seminal plasma immunocaptures yielded amplifiable virion RNA from 13/24 (54%) men, and the sequences were primarily associated with markers indicative of macrophage and resident dendritic cell sources. Genetic distances were greatest (>2%) between seminal virions and circulating proviruses, pointing to ongoing low-level expression from tissue-resident cells. While the low levels in semen predict an improbable likelihood of transmission, viruses with large genetic distances are expressed under potent INSTI therapy and have implications for determining epidemiologic linkages if adherence is suboptimal.
Vaginal inserts that can be used on demand before or after sex may be a desirable human immunodeficiency virus (HIV) prevention option for women. We recently showed that inserts containing tenofovir alafenamide fumarate (TAF, 20 mg) and elvitegravir (EVG, 16 mg) were highly protective against repeated simian/human immunodeficiency virus (SHIV) vaginal exposures when administered to macaques 4 hours before or after virus exposure (93% and 100%, respectively). Here, we show in the same macaque model that insert application 8 hours or 24 hours after exposure maintains high efficacy (94.4% and 77.2%, respectively). These data extend the protective window by TAF/EVG inserts and inform their clinical development for on-demand prophylaxis in women.
Vaginal inserts that can be used on demand before or after sex may be a desirable HIV prevention option for women. We recently showed that inserts containing tenofovir alafenamide fumarate (TAF/20mg) and elvitegravir (EVG/16mg) were highly protective against repeated SHIV vaginal exposures when administered to macaques 4h before or after virus exposure (93% and 100%, respectively). Here, we show in the same macaque model that insert application 8h or 24h after exposure maintains high efficacy (94.4% and 77.2%, respectively). These data extend the protective window by TAF/EVG inserts and inform their clinical development for on-demand prophylaxis in women.
We used a novel penile simian-human immunodeficiency virus (SHIV) transmission model to investigate whether long-acting cabotegravir (CAB LA) prevents penile SHIV acquisition in macaques. Twenty-two macaques were exposed to SHIV via the foreskin and urethra once weekly for 12 weeks. Of these, 6 received human-equivalent doses of CAB LA, 6 received oral emtricitabine/tenofovir disoproxil fumarate, and 10 were untreated. The efficacy of CAB LA was high (94.4%; 95% confidence interval, 58.2%-99.3%) and similar to that seen with oral emtricitabine/tenofovir disoproxil fumarate (94.0%; 55.1%-99.2%). The high efficacy of CAB LA in the penile transmission model supports extending the clinical advancement of CAB LA preexposure prophylaxis to heterosexual men.
We used a novel penile simian HIV (SHIV) transmission model to investigate if cabotegravir long-acting (CAB LA) prevents penile SHIV acquisition in macaques. Twenty-two macaques were exposed to SHIV via the foreskin and urethra once-weekly for 12 weeks. Of these, six received human-equivalent doses of CAB LA, six received oral FTC/TDF, and 10 were untreated. The efficacy of CAB LA was high (94.4% [95%CI=58.2%-99.3%]) and similar to that seen with oral FTC/TDF (94.0% [95%CI=55.1%-99.2%]). The high efficacy of CAB LA in the penile transmission model supports extending the clinical advancement of CAB LA PrEP to heterosexual men.
BACKGROUND:Tenofovir alafenamide (TAF)-based regimens are being evaluated for pre-exposure prophylaxis (PrEP). We used a macaque model of repeated exposures to simian human immunodeficiency virus (SHIV) to investigate whether TAF alone or the combination of TAF and emtricitabine (FTC) can prevent vaginal infection.METHODS:Pigtail macaques were exposed vaginally to SHIV162p3 once a week for up to 15 weeks. Animals received clinical doses of FTC/TAF (n = 6) or TAF (n = 9) orally 24 hours before and 2 hours after each weekly virus exposure. Infection was compared with 21 untreated controls.RESULTS:Five of the 6 animals in the FTC/TAF and 4 of the 9 animals in the TAF alone group were protected against infection (P = .001 and P = .049, respectively). The calculated efficacy of FTC/TAF and TAF was 91% (95% confidence interval [CI], 34.9%-98.8%) and 57.8% (95% CI, -8.7% to 83.6%), respectively. Infection in FTC/TAF but not TAF-treated macaques was delayed relative to controls (P = .005 and P = .114). Median tenofovir diphosphate (TFV-DP) levels in peripheral blood mononuclear cells (PBMCs) were similar among infected and uninfected macaques receiving TAF PrEP (351 and 143 fmols/106 cells, respectively; P = .921).CONCLUSIONS:Emtricitabine/TAF provided a level of protection against vaginal challenge similar to FTC/TFV disoproxil fumarate combination in the macaque model. Our results support the clinical evaluation of FTC/TAF for PrEP in women.
Incomplete HIV virologic suppression in the central nervous system (CNS) can cause persisting neurologic disorders even with suppressed plasma viremia. To better understand immune properties that support CNS virus persistence we characterized T cells and virus genotypes from cerebrospinal fluid (CSF) of HIV-infected participants to understand local cell trafficking behavior and the influence of combination antiretroviral therapy (ART). Compared to blood, CSF T cells expressed higher frequencies of CCR5****, CD69****, CX3CR1****, CD39**, and HLADR**(P values:*≤0.05, **≤0.01, ***≤0.001,****≤0.0001). Among CSF T cells, CD4 T cells were more likely to express CCR7****, CX3CR1****, and CD39**, and less likely to express CCR5*. CX3CR1 expression on CSF CD4 T cells correlated with CSF viral load (VL)*, whereas, CD39 expression mirrored CSF** and plasma VL*. In the absence of ART, CSF HIV (VL>900 copies/mL) shared majority sequence similarity to plasma virus demonstrating a migratory influence of susceptible cells into the CNS. However, CSF CD4 T cells from persons on ART expressed decreased CCR5**, CX3CR1****, HLADR****, and CD39***, regardless of viral suppression, while matched-PBMC CD4 T cells did not exhibit these trends. CSF CD4 T cells expressed features consistent with immune-restricted localization but with a migratory profile indicative of immune surveillance function and lymphoid trafficking. ART use associated with reduced migratory properties regardless of CNS viremia, suggesting ongoing CNS HIV replication under therapy involves local susceptible cells distinct from circulation. This CSF cellular profile could serve as a reference to target biomedical interventions that improve HIV suppression in the CNS.
Vaginal microbicides containing antiretrovirals (ARVs) have shown to prevent vaginally acquired human immunodeficiency virus (HIV), but these products may not protect women who engage in anal sex. Intravaginal dosing with ARVs has shown to result in drug exposures in rectal tissues, thus raising the possibility of dual compartment protection. To test this concept, we investigated whether intravaginal dosing with emtricitabine (FTC)/tenofovir (TFV) gel, which fully protected macaques against repeated vaginal exposures to simian human immunodeficiency virus (SHIV), protects against rectal SHIV exposures. Pharmacokinetic studies revealed rapid distribution of FTC and TFV to rectal tissues and luminal fluids, albeit at concentrations 1-2 log10 lower than those in the vaginal compartment. Efficacy measurements against repeated rectal SHIV challenges demonstrated a 4.5-fold reduction in risk of infection in macaques that received intravaginal FTC/TFV compared to placebo gel (P = .047; log-rank test). These data support the concept of dual compartment protection by vaginal dosing and warrants developing ARV-based vaginal products with improved bidirectional dosing.
BACKGROUND:Chlamydia trachomatis and Trichomonas vaginalis, two prevalent sexually transmitted infections, are known to increase HIV risk in women and could potentially diminish preexposure prophylaxis efficacy, particularly for topical interventions that rely on local protection. We investigated in macaques whether coinfection with Chlamydia trachomatis/Trichomonas vaginalis reduces protection by vaginal tenofovir (TFV) gel. METHODS:Vaginal TFV gel dosing previously shown to provide 100 or 74% protection when applied either 30 min or 3 days before simian HIV(SHIV) challenge was assessed in pigtailed macaques coinfected with Chlamydia trachomatis/Trichomonas vaginalis and challenged twice weekly with SHIV162p3 for up to 10 weeks (two menstrual cycles). Three groups of six macaques received either placebo or 1% TFV gel 30 min or 3 days before each SHIV challenge. We additionally assessed TFV and TFV diphosphate concentrations in plasma and vaginal tissues in Chlamydia trachomatis/Trichomonas vaginalis coinfected (n = 4) and uninfected (n = 4) macaques. RESULTS:Chlamydia trachomatis/Trichomonas vaginalis coinfections were maintained during the SHIV challenge period. All macaques that received placebo gel were SHIV infected after a median of seven challenges (one menstrual cycle). In contrast, no infections were observed in macaques treated with TFV gel 30 min before SHIV challenge (P < 0.001). Efficacy was reduced to 60% when TFV gel was applied 3 days before SHIV challenge (P = 0.07). Plasma TFV and TFV diphosphate concentrations in tissues and vaginal lymphocytes were significantly higher in Chlamydia trachomatis/Trichomonas vaginalis coinfected compared with Chlamydia trachomatis/Trichomonas vaginalis uninfected macaques. CONCLUSION:Our findings in this model suggest that Chlamydia trachomatis/Trichomonas vaginalis coinfection may have little or no impact on the efficacy of highly effective topical TFV modalities and highlight a significant modulation of TFV pharmacokinetics.
acceptability by women. evaluation of topical integrase inhibitors for HIV prevention and the assessment of after-sex use for improved macaques when applied 30 min before or 3 hours after vaginal challenge with simian HIV. The study supports model to assess efficacy, the authors further showed that a vaginal gel containing an integrase inhibitor protected hours after virus infection, providing a wide window for dosing with integrase inhibitors after sex. Using a macaque application after HIV exposure during sex. They first confirmed that HIV integration into cellular DNA begins about 6 inhibitors, which belong to a different ARV class that blocks later steps in virus infection, may be more suitable for . in their new study reasoned that HIV integrase et al infection and thus require application before sex. Dobard acceptance. However, all ARV-based gels in development contain ARV drugs that block the early steps in virus sex would be more desirable because it will have more user control and less need for sex anticipation and partner after applied by women before sex, which can interfere with sex practices and limit their use. A gel that can be applied Vaginal gels containing antiretroviral (ARV) drugs are important for HIV prevention but are all designed to be An After-Sex Gel to Protect Against HIV
BACKGROUND Drug resistance mutations (DRMs) can serve as distinct, nonpolymorphic markers for evaluating diversity of expressed HIV-1. We screened for DRMs during early-acute viremia and examined the diversity in reverse transcriptase (RT) relative to envelope (env) in cases of transmitted drug resistance. METHODS We evaluated 111 longitudinal plasma samples collected every 2-7 days from 15 individuals who seroconverted for HIV-1 infection in 1994-2000. The samples were screened with sensitive polymerase chain reaction assays for the commonly transmitted M41L and K70R mutations and for K65R, which was undetected by bulk sequencing. Mutation-positive samples were further characterized by clonal sequencing of RT and env V1-V3. RESULTS Drug resistance mutations were detected in 4 of 15 seroconverters at 5-50 days of viral nucleic acid expression; most mutations disappeared about the time of seroconversion. Clonal sequencing verified low-level K65R at frequencies of 0.4%-4.9%. In each case, K65R coexisted unlinked with variants carrying 2-5 thymidine analog mutations at frequencies of 1.6%-23.0%. In one seroconverter, variants with M184V and nonnucleoside RT inhibitor mutations were also identified at first RNA expression. Each seroconverter displayed a homogeneous V1-V3 env population. CONCLUSIONS Reverse-transcriptase DRMs demonstrate that the breadth of variants in transmission may be greater than what is reflected in envelope sequences.