Abstract 4364307: VS-041, a narrow-spectrum, matrix metalloproteinase (MMP) inhibitor and novel drug candidate for heart failure with preserved ejection fraction (HFpEF), demonstrates target engagement and is safe and well-tolerated in healthy participants.
Abstract
Introduction: VS-041 is a novel drug candidate for HFpEF that inhibits key MMPs implicated in cardiac fibroinflammation, and diastolic dysfunction. VS-041 also inhibits formation of endotrophin, a collagen 6α–derived peptide, associated with increased risk of poor outcomes (heart failure hospitalization or death) in HFpEF. We conducted a phase 1 single- and multiple-ascending dose (SAD/MAD) safety, tolerability and pharmacokinetics (PK) study, and measured suppression of MMP9 activity in clinical plasma samples to estimate target engagement by VS-041. Methods: A randomized, double-blinded, placebo-controlled study enrolled 70 healthy participants. The study was comprised of two parts: both SAD and MAD were conducted with 8 participants (6 active, 2 placebo) per cohort. In the SAD, 5 cohorts received VS-041 orally as immediate release tablets at dosages ranging from 30 mg to 500 mg. In the MAD part, 4 cohorts received 50mg – 400mg once- or twice-daily dosing for 7 days. Safety evaluation included assessment of adverse events (AE), vital signs, ECGs, and clinical laboratory tests. Blood samples were collected for PK analysis. A novel ex-vivo MMP9 activity assay in human plasma was performed using fluorescein-labeled gelatin conjugate as a physiological and specific substrate for MMP9. Results: VS-041 was well tolerated across the dose range tested. No serious adverse events or dose-limiting toxicities were observed. There were few treatment-emergent AEs, all classified as mild and unrelated to test article administration. There were no ECG changes. VS-041 demonstrated dose-dependent increases in exposure up to 400mg, and steady state was achieved within 2 days with no accumulation. Terminal half-life ranged between 6-9 hrs. Serum levels achieved were within target range of the estimated minimally efficacious dose. In the ex-vivo assay, the gelatinolytic activity of MMP9 in plasma was inhibited by VS-041 in a concentration-dependent manner. The exposure of VS-041 modeled at a dose of 200mg BID is predicted to be continuously above or at the IC 50 for MMP9 (~90nM). Conclusions: VS-041 is safe and well tolerated at doses that effectively inhibit key MMPs implicated in cardiac pathophysiology, offering promising therapeutic potential for patients with HFpEF.
Article Details
Authors (8)
Noreen Henig
Vasa Therapeutics, Inc., Encinitas, California, United States
Wieslaw Bochenek
Vasa Therapeutics, Inc., Encinitas, California, United States
Magdalena Krupa
Vasa Therapeutics, sp. z o.o., Wroclaw, Poland
Joel Berger
Vasa Therapeutics, Inc., Encinitas, California, United States
Benjamin Pratt
Vasa Therapeutics, Inc., Encinitas, California, United States
John Vekich
Vasa Therapeutics, Inc., Encinitas, California, United States
Christopher Larson
Vasa Therapeutics, Inc., Encinitas, California, United States
Artur Plonowski
Vasa Therapeutics, sp. z o.o., Wroclaw, Poland