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Kevin Dhaliwal

2 papers in the library · publishing 2024-2026

Papers

First-in-human intrapulmonary intratarget microdosing of a novel dual inflammasome inhibitor of NLRP 1/ NLRP 3 in ex vivo human lungs and patients with interstitial lung disease

medRxiv Preprint Server May 5, 2026 Tom Quinn, Feng Li, Becky Wheeler et al. preprint

A first-in-human Phase 0 intratarget microdosing study shows that delivering a tiny dose of a new inflammasome inhibitor directly into the lungs of patients with interstitial lung disease is feasible. A 100 microgram microdose of ADS032, a dual NLRP1/NLRP3 inhibitor, was administered to distal airways via bronchoscopy. The drug was detected in plasma, bronchoalveolar lavage fluid, distal airway micro-aspirates, and recovered cells without cross-contamination. Fluorescent labeling allowed direct visualization of alveolar drug uptake in ex vivo human lung tissue. This intrapulmonary microdosing approach offers a human-relevant platform for early pharmacological evaluation of lung therapeutics before Phase 1 trials.

Phase 0 trials/ Intra-Target-Microdosing (ITM) and the lung: a review

BMC Pulmonary Medicine September 1, 2024 Tom M. Quinn, Annya M. Bruce, Tal Burt et al.

Phase 0 trials, positioned between preclinical research and phase I, test sub-clinical microdoses in humans to gather early pharmacokinetic, pharmacodynamic, and mechanistic data, improving drug development efficiency and reducing animal testing. Traditional phase 0 trials use sub-therapeutic microdoses administered intravenously, with readouts from accelerator mass spectrometry, liquid chromatography tandem mass spectrometry, and whole-body positron emission tomography. Mathematical models extrapolate pharmacokinetic data for larger doses but are limited for pharmacodynamic and target engagement data. An Intra-Target Microdosing approach exposes a small body compartment to potentially clinically active local concentrations, enabling pharmacodynamic data collection and target engagement evidence, with potential for rapid, cost-effective development of new and repurposed drugs in the pulmonary system.