Long-Acting Injectable Cabotegravir plus Rilpivirine for HIV Maintenance Therapy: Week 48 Pooled Analysis of Phase 3 ATLAS and FLAIR Trials
JAIDS-JOURNAL OF ACQUIRED IMMUNE DEFICIENCY SYNDROMES
Authors: Rizzardini, Giuliano; Overton, Edgar T.; Orkin, Chloe; Swindells, Susan; Arasteh, Keikawus; Gorgolas Hernandez-Mora, Miguel; Pokrovsky, Vadim; Girard, Pierre-Marie; Oka, Shinichi; Andrade-Villanueva, Jaime F.; Richmond, Gary J.; Baumgarten, Axel; Masia, Mar; Latiff, Gulam; Griffith, Sandy; Harrington, Conn M.; Hudson, Krischan J.; St Clair, Marty; Talarico, Christine L.; Patel, Parul; Cutrell, Amy; Van Eygen, Veerle; D'Amico, Ronald; Mrus, Joseph M.; Wu, Sterling; Ford, Susan L.; Chow, Ken; Roberts, Jeremy; Wills, Angela; Walters, Nicola; Vanveggel, Simon; Van Solingen-Ristea, Rodica; Crauwels, Herta; Smith, Kimberly Y.; Spreen, William R.; Margolis, David A.
Abstract
Background: Long-acting (LA) injectable regimens are a potential therapeutic option in people living with HIV-1. Setting: ATLAS (NCT02951052) and FLAIR (NCT02938520) were 2 randomized, open-label, multicenter, multinational phase 3 studies. Methods: Adult participants with virologic suppression (plasma HIV-1 RNA <50 copies/mL) were randomized (1:1) to continue with their current antiretroviral regimen (CAR) or switch to the long-acting (LA) regimen of cabotegravir (CAB) and rilpivirine (RPV). In the LA arm, participants initially received oral CAB + RPV once-daily for 4 weeks to assess individual safety and tolerability, before starting monthly injectable therapy. The primary endpoint of this combined analysis was antiviral efficacy at week 48 (FDA Snapshot algorithm: noninferiority margin of 4% for HIV-1 RNA >= 50 copies/mL). Safety, tolerability, and confirmed virologic failure (2 consecutive plasma HIV-1 RNA >= 200 copies/mL) were secondary endpoints. Results: The pooled intention-to-treat exposed population included 591 participants in each arm [28% women (sex at birth), 19% aged >= 50 years]. Noninferiority criteria at week 48 were met for the primary (HIV-1 RNA >= 50 copies/mL) and key secondary (HIV-1 RNA <50 copies/mL) efficacy endpoints. Seven individuals in each arm (1.2%) developed confirmed virologic failure; 6/7 (LA) and 3/7 (CAR) had resistance-associated mutations. Most LA recipients (83%) experienced injection site reactions, which decreased in incidence over time. Injection site reactions led to the withdrawal of 6 (1%) participants. The serious adverse event rate was 4% in each arm. Conclusion: This combined analysis demonstrates monthly injections of CAB + RPV LA were noninferior to daily oral CAR for maintaining HIV-1 suppression.
APOL1 polymorphism modulates sphingolipid profile of human podocytes
GLYCOCONJUGATE JOURNAL
Authors: Valsecchi, Manuela; Cazzetta, Valentina; Oriolo, Ferdinando; Lan, Xiqian; Piazza, Rocco; Saleem, Moin A.; Singhal, Pravin C.; Mavilio, Domenico; Mikulak, Joanna; Aureli, Massimo
Abstract
Apolipoprotein L1 (APOL1) wild type (G0) plays a role in the metabolism of sphingolipids, glycosphingolipids, sphingomyelin and ceramide, which constitute bioactive components of the lipid rafts (DRM). We asked whether APOL1 variants (APOL1-Vs) G1 and G2 carry the potential to alter the metabolism of sphingolipids in human podocytes. The sphingolipid pattern in HPs overexpressing either APOL1G0 or APOL1-Vs was analysed by using a thin mono- and bi-dimensional layer chromatography, mass-spectrometry and metabolic labelling with [1-H-3]sphingosine. HP G0 and G1/G2-Vs exhibit a comparable decrease in lactosylceramide and an increase in the globotriaosylceramide content. An analysis of the main glycohydrolases activity involved in glycosphingolipid catabolism showed an overall decrease in the activeness of the tested enzymes, irrespective of the type of APOL1-Vs expression. Similarly, the high throughput cell live-based assay showed a comparable increased action of the plasma membrane glycosphingolipid-glycohydrolases in living cells independent of the genetic APOL1 expression profile. Importantly, the most significative modification of the sphingolipid pattern induced by APOL1-Vs occurred in DRM resulted with a drastic reduction of radioactivity associated with sphingolipids. G1/G2-Vs present a decrease amount of globotriaosylceramide and globopentaosylceramide compared to G0. Additionally, ceramide at the DRM site and lactosylceramide in general, showed a greatest fall in G1/G2 in comparison with G0. Additionally, the levels of glucosylceramide decreased only in the DRM of human podocytes overexpressing G1/G2-Vs. These findings suggest that altered sphingolipidsprofiles may contribute to the deranged functionality of the plasma membrane in APOL1 risk milieu.