Systematic review of drug effects in humans and models with surfactant-processing disease

Dymph Klay1, Thijs W Hoffman1, Ankie M Harmsze2

  • 1Interstitial Lung Disease Center of Excellence, Dept of Pulmonology, St Antonius Hospital, Nieuwegein, The Netherlands.

Insights

This review of fibrotic interstitial pneumonias found that treatments like SP600125, hydroxychloroquine, and 4-phenylbutyric acid show variable outcomes in models with surfactant-processing mutations, suggesting mutation-dependent effects.

Area of Science:

  • Pulmonary Medicine
  • Genetics
  • Pharmacology

Background:

  • Fibrotic interstitial pneumonias (FIPs) are rare, progressive lung diseases.
  • Mutations in surfactant-processing genes (e.g., SFTPC, ABCA3) cause FIPs, often leading to fatal respiratory insufficiency.
  • Optimal treatment strategies for FIPs with surfactant-processing mutations remain largely unknown.

Purpose of the Study:

  • To systematically review drug effects in models of surfactant-processing mutations.
  • To summarize outcome parameters for future research and clinical trials.

Main Methods:

  • Systematic literature review of 73 articles (55 clinical, 16 experimental).
  • Included studies describing drug effects in patients, cell, or mouse models with surfactant-processing mutations.
  • Analyzed clinical parameters (lung function, radiology, symptoms) and experimental outcomes (cytokines, trafficking, cell death).

Main Results:

  • SP600125 (JNK inhibitor), hydroxychloroquine, and 4-phenylbutyric acid were frequently studied in disease models.
  • Observed variable treatment outcomes, indicating a potential mutation-dependent effect.
  • Identified key parameters for assessing treatment efficacy in these disorders.

Conclusions:

  • Treatment efficacy for fibrotic interstitial pneumonias with surfactant-processing mutations appears to be mutation-specific.
  • This review provides a foundation for future studies and clinical trials targeting these rare lung diseases.
  • Further research is needed to develop effective, personalized treatment strategies.

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