Phase 1b ATMOS trial of the inhaled sGC activator mosliciguat in patients with PAH/CTEPH

BACKGROUND: Mosliciguat, a soluble guanylate cyclase (sGC) activator, is designed for lung-targeted delivery via dry powder inhalation. Nitric oxide (NO) binds sGC's prosthetic heme group, catalysing cyclic guanosine monophosphate (cGMP) production, resulting in increased vasodilation, reduced inflammation/apoptosis, reverse vascular remodelling and antifibrotic effects. sGC is redox sensitive, losing heme in pulmonary hypertension (PH) oxidative stress conditions. Mosliciguat's novel 'activator' mechanism directly binds the sGC heme-binding pocket to induce cGMP, allowing it to target NO-insensitive heme-free sGC, potentially rescuing additional enzymatic activity. METHODS: A Proof-of-Concept Trial of Inhaled Mosliciguat, a First-in-Class Soluble Guanylate Cyclase Activator (ATMOS; non-randomised, open-label phase 1b trial) assessed single-dose escalation of mosliciguat in participants with pulmonary arterial hypertension or chronic thromboembolic PH. 38 participants received mosliciguat. The per protocol set (PPS, n=20) included NO-non-responsive participants with baseline pulmonary vascular resistance (PVR) ≥5 Wood units (n=4/dose). The pharmacodynamic set (PDS, n=37) included NO-responsive participants. Five PPS participants underwent a ≥24-hour washout from background therapy. RESULTS: In the PPS, doses of 0.24, 0.48, 1.0, 2.0 and 4.0 mg resulted in mean peak per cent PVR reductions from baseline (95% CI) of 21.0% (31.6% to 10.4%), 16.1% (32.8% to -0.7%), 25.9% (60.3% to -8.4%), 38.1% (55.9% to 20.3%) and 36.3% (48.3% to 24.4%), respectively, and generally persisted over the 3-hour observation period. Similar effects were seen in the PDS. The majority of adverse events were mild; most frequently reported were headache (n=3/38; 7.9%), decreased oxygen saturation and fatigue (n=2/38; 5.3% each). No safety-relevant changes were seen in systemic vascular resistance or blood pressure. CONCLUSIONS: Mosliciguat demonstrated a favourable safety profile and sustained, clinically meaningful reductions in PVR in participants with PH. TRIAL REGISTRATION NUMBER: NCT03754660.

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Journal
Thorax
Published
2026-09-11
DOI
https://doi.org/10.1136/thorax-2025-224583
Primary Topic
Pulmonary Hypertension Research and Treatments
Type
article
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article

Phase 1b ATMOS trial of the inhaled sGC activator mosliciguat in patients with PAH/CTEPH

Markus Woischnik, Hikmet Al‐Hiti, Grzegorz Kopeć, Hanno Leuchte et al.
Thorax
Pulmonary Hypertension Research and Treatments
article

Phase 1b ATMOS trial of the inhaled sGC activator mosliciguat in patients with PAH/CTEPH

Markus Woischnik, Hikmet Al‐Hiti, Grzegorz Kopeć, Hanno Leuchte, Johannes Nagelschmitz, Pavel Jansa, Sandra Ligges, Horst Olschewski, Khodr Tello, Soundos Saleh, Sudhir Penugonda, Tobias Lange, Hossein-Ardeschir Ghofrani, Paula Vesterinen, Eva Becker‐Pelster, Michael Halank, David Jung, Sylvia Nikkho
article en

Abstract

BACKGROUND: Mosliciguat, a soluble guanylate cyclase (sGC) activator, is designed for lung-targeted delivery via dry powder inhalation. Nitric oxide (NO) binds sGC's prosthetic heme group, catalysing cyclic guanosine monophosphate (cGMP) production, resulting in increased vasodilation, reduced inflammation/apoptosis, reverse vascular remodelling and antifibrotic effects. sGC is redox sensitive, losing heme in pulmonary hypertension (PH) oxidative stress conditions. Mosliciguat's novel 'activator' mechanism directly binds the sGC heme-binding pocket to induce cGMP, allowing it to target NO-insensitive heme-free sGC, potentially rescuing additional enzymatic activity. METHODS: A Proof-of-Concept Trial of Inhaled Mosliciguat, a First-in-Class Soluble Guanylate Cyclase Activator (ATMOS; non-randomised, open-label phase 1b trial) assessed single-dose escalation of mosliciguat in participants with pulmonary arterial hypertension or chronic thromboembolic PH. 38 participants received mosliciguat. The per protocol set (PPS, n=20) included NO-non-responsive participants with baseline pulmonary vascular resistance (PVR) ≥5 Wood units (n=4/dose). The pharmacodynamic set (PDS, n=37) included NO-responsive participants. Five PPS participants underwent a ≥24-hour washout from background therapy. RESULTS: In the PPS, doses of 0.24, 0.48, 1.0, 2.0 and 4.0 mg resulted in mean peak per cent PVR reductions from baseline (95% CI) of 21.0% (31.6% to 10.4%), 16.1% (32.8% to -0.7%), 25.9% (60.3% to -8.4%), 38.1% (55.9% to 20.3%) and 36.3% (48.3% to 24.4%), respectively, and generally persisted over the 3-hour observation period. Similar effects were seen in the PDS. The majority of adverse events were mild; most frequently reported were headache (n=3/38; 7.9%), decreased oxygen saturation and fatigue (n=2/38; 5.3% each). No safety-relevant changes were seen in systemic vascular resistance or blood pressure. CONCLUSIONS: Mosliciguat demonstrated a favourable safety profile and sustained, clinically meaningful reductions in PVR in participants with PH. TRIAL REGISTRATION NUMBER: NCT03754660.

Thorax
Jagiellonian University (PL), Justus-Liebig-Universität Gießen (DE), Medical University of Graz (AT), ClearMotion (United States) (US), John Paul II Hospital (PL), Institute of Clinical and Experimental Medicine (CZ), German Center for Lung Research (DE), Universities of Giessen and Marburg Lung Center (DE), Kerckhoff Klinik (DE), Klinik Bad Reichenhall (DE), Cardio-Pulmonary Institute (DE), General University Hospital in Prague (CZ), University Hospital Carl Gustav Carus (DE), Imperial College London (GB), University of Regensburg (DE), Bayer (Germany) (DE), Ludwig-Maximilians-Universität München (DE)
Bayer
Clean water and sanitation
Openalex Percentile: Top 12%
Pulmonary Hypertension Research and Treatments
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