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Updated: May 2, 2026

Humanized NOG Mice for Intravaginal HIV Exposure and Treatment of HIV Infection
Published on: January 31, 2020
MIV-150-containing intravaginal rings protect macaque vaginal explants against SHIV-RT infection
Louise A Ouattara1, Patrick Barnable, Paul Mawson
1HIV/AIDS Program, Population Council, Center for Biomedical Research, New York, New York, USA.
Abstract:
Recent studies demonstrated that intravaginal rings (IVRs) containing 100 mg of the nonnucleoside reverse transcriptase inhibitor (NNRTI) MIV-150 significantly protect macaques against a chimeric simian-human immunodeficiency virus that expresses the HIV-1 HxB2 reverse transcriptase (SHIV-RT) when present before and after vaginal challenge. The objectives of this study were to (i) evaluate the pharmacodynamics (PD) of MIV-150 in vaginal fluids (VF) and in ectocervical and vaginal tissues following 100-mg MIV-150 IVR exposure and to (ii) gain more insight whether pharmacokinetics (PK) of MIV-150 can predict PD. MIV-150 in VF collected at 1 day and 14 days post-MIV-150 IVR insertion inhibited ex vivo SHIV-RT infection in vaginal biopsy specimens from untreated animals (not carrying IVRs) in a dose-dependent manner. Previous PK studies demonstrated a significant increase of ectocervical and vaginal tissue MIV-150 concentrations 14 days versus 1 day post-IVR insertion, with the highest increase in vaginal tissue. Therefore, we tested PD of MIV-150 in tissues 14 days post-MIV-150 IVR insertion. Ex vivo SHIV-RT infection of vaginal, but not ectocervical, tissues collected 14 days post-MIV-150 IVR insertion was significantly inhibited compared to infection at the baseline (prior to MIV-150 IVR exposure). No changes in vaginal and ectocervical tissue infection were observed after placebo IVR exposure. Overall, these data underscore the use of the ex vivo macaque explant challenge models to evaluate tissue and VF PK/PD of candidate microbicides before in vivo animal efficacy studies. The data support further development of MIV-150-containing IVRs.
Insights
Intravaginal rings with MIV-150 show promising results for HIV prevention. Pharmacokinetic and pharmacodynamic studies in macaques support the development of MIV-150 intravaginal rings for microbicide applications.
Area of Science:
- Pharmacology
- Virology
- Reproductive Health
Background:
- Intravaginal rings (IVRs) containing MIV-150 demonstrated protection against simian-human immunodeficiency virus (SHIV-RT) in macaques.
- Understanding the pharmacokinetics (PK) and pharmacodynamics (PD) of MIV-150 is crucial for developing effective microbicides.
Purpose of the Study:
- Evaluate MIV-150 pharmacodynamics in vaginal fluids and tissues after IVR use.
- Determine if PK of MIV-150 can predict its PD.
Main Methods:
- MIV-150 concentrations in vaginal fluids and tissues were measured after IVR insertion.
- Ex vivo SHIV-RT infection assays were performed on vaginal biopsy specimens.
Main Results:
- MIV-150 in vaginal fluids inhibited ex vivo SHIV-RT infection in a dose-dependent manner.
- Vaginal tissues showed significant inhibition of SHIV-RT infection 14 days post-IVR insertion.
- Placebo IVRs did not alter infection rates.
Conclusions:
- Ex vivo macaque explant models are valuable for evaluating microbicide PK/PD.
- Data support the further development of MIV-150-containing IVRs for HIV prevention.
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