Viral load Reduction in SHIV-Positive Nonhuman Primates via Long-Acting Subcutaneous Tenofovir Alafenamide Fumarate Release from a Nanofluidic Implant
PHARMACEUTICS
Authors: Pons-Faudoa, Fernanda P.; Di Trani, Nicola; Sizovs, Antons; Shelton, Kathryn A.; Momin, Zoha; Bushman, Lane R.; Xu, Jiaqiong; Lewis, Dorothy E.; Demaria, Sandra; Hawkins, Trevor; Rooney, James F.; Marzinke, Mark A.; Kimata, Jason T.; Anderson, Peter L.; Nehete, Pramod N.; Arduino, Roberto C.; Sastry, K. Jagannadha; Grattoni, Alessandro
Abstract
HIV-1 is a chronic disease managed by strictly adhering to daily antiretroviral therapy (ART). However, not all people living with HIV-1 have access to ART, and those with access may not adhere to treatment regimens increasing viral load and disease progression. Here, a subcutaneous nanofluidic implant was used as a long-acting (LA) drug delivery platform to address these issues. The device was loaded with tenofovir alafenamide (TAF) and implanted in treatment-naive simian HIV (SHIV)-positive nonhuman primates (NHP) for a month. We monitored intracellular tenofovir-diphosphate (TFV-DP) concentration in the target cells, peripheral blood mononuclear cells (PBMC). The concentrations of TFV-DP were maintained at a median of 391.0 fmol/10(6) cells (IQR, 243.0 to 509.0 fmol/10(6) cells) for the duration of the study. Further, we achieved drug penetration into lymphatic tissues, known for persistent HIV-1 replication. Moreover, we observed a first-phase viral load decay of -1.14 +/- 0.81 log(10) copies/mL (95% CI, -0.30 to -2.23 log(10) copies/mL), similar to -1.08 log(10) copies/mL decay observed in humans. Thus, LA TAF delivered from our nanofluidic implant had similar effects as oral TAF dosing with a lower dose, with potential as a platform for LA ART.
Everolimus, an mTORC1/2 inhibitor, in ART-suppressed individuals who received solid organ transplantation: A prospective study
AMERICAN JOURNAL OF TRANSPLANTATION
Authors: Henrich, Timothy J.; Schreiner, Corinna; Cameron, Cheryl; Hogan, Louise E.; Richardson, Brian; Rutishauser, Rachel L.; Deitchman, Amelia N.; Chu, Simon; Rogers, Rodney; Thanh, Cassandra; Gibson, Erica A.; Zarinsefat, Arya; Bakkour, Sonia; Aweeka, Francesca; Busch, Michael P.; Liegler, Teri; Baker, Christopher; Milush, Jeffrey; Deeks, Steven G.; Stock, Peter G.
Abstract
Pharmacologic inhibition of the mammalian target of rapamycin (mTOR) in the setting of renal transplantation has previously been associated with lower human immunodeficiency virus 1 (HIV-1) DNA burden, and in vitro studies suggest that mTOR inhibition may lead to HIV transcriptional silencing. Because prospective clinical trials are lacking, we conducted an open-label, single-arm study to determine the impact of the broad mTOR inhibitor, everolimus, on residual HIV burden, transcriptional gene expression profiles, and immune responses in HIV-infected adult solid organ transplant (SOT) recipients on antiretroviral therapy. Whereas everolimus therapy did not have an overall effect on cell-associated HIV-1 DNA and RNA levels in the entire cohort, participants who maintained everolimus time-averaged trough levels >5 ng/mL during the first 2 months of therapy had significantly lower RNA levels up to 6 months after the cessation of study drug. Time-averaged everolimus trough levels significantly correlated with greater inhibition of mTOR gene pathway transcriptional activity. Everolimus treatment also led to decreased PD-1 expression on certain T cell subsets. These data support the rationale for further study of the effects of mTOR inhibition on HIV transcriptional silencing in non-SOT populations, either alone or in combination with other strategies. Trial Registration: ClinicalTrials.gov NCT02429869.