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Updated: Jul 27, 2025

Assessment of Respiratory Function in Conscious Mice by Double-chamber Plethysmography
Published on: July 10, 2018
A potent MAPK13-14 inhibitor prevents airway inflammation and mucus production
Shamus P Keeler1, Kangyun Wu1, Yong Zhang1
1Pulmonary and Critical Care Medicine, Department of Medicine, Washington University School of Medicine, St. Louis, MO 63110.
Abstract:
Common respiratory diseases continue to represent a major public health problem, and much of the morbidity and mortality is due to airway inflammation and mucus production. Previous studies indicated a role for mitogen-activated protein kinase 14 (MAPK14) in this type of disease, but clinical trials are unsuccessful to date. Our previous work identified a related but distinct kinase known as MAPK13 that is activated in respiratory airway diseases and is required for mucus production in human cell-culture models. Support for MAPK13 function in these models came from effectiveness of MAPK13 versus MAPK14 gene-knockdown and from first-generation MAPK13-14 inhibitors. However, these first-generation inhibitors were incompletely optimized for blocking activity and were untested in vivo. Here we report the next generation and selection of a potent MAPK13-14 inhibitor (designated NuP-3) that more effectively down-regulates type-2 cytokine-stimulated mucus production in air-liquid interface and organoid cultures of human airway epithelial cells. We also show that NuP-3 treatment prevents respiratory airway inflammation and mucus production in new minipig models of airway disease triggered by type-2 cytokine challenge or respiratory viral infection. The results thereby provide the next advance in developing a small-molecule kinase inhibitor to address key features of respiratory disease.
Insights
A new inhibitor, NuP-3, effectively reduces airway inflammation and mucus production in respiratory diseases. This small-molecule kinase inhibitor shows promise for treating common airway conditions.
Area of Science:
- Biochemistry
- Immunology
- Pharmacology
Background:
- Respiratory diseases cause significant public health issues, primarily through airway inflammation and mucus overproduction.
- Mitogen-activated protein kinase 14 (MAPK14) was previously implicated, but clinical trials failed; MAPK13 is a distinct, relevant kinase.
- MAPK13 is activated in airway diseases and essential for mucus production, as shown in cell models.
Approach:
- Developed and selected a potent next-generation inhibitor, NuP-3, targeting MAPK13 and MAPK14.
- Evaluated NuP-3's efficacy in down-regulating type-2 cytokine-stimulated mucus production in human airway epithelial cell cultures (air-liquid interface and organoids).
- Assessed NuP-3's in vivo effectiveness in minipig models of airway disease induced by type-2 cytokines or viral infection.
Key Points:
- NuP-3 significantly inhibits mucus production in human airway cell culture models.
- NuP-3 treatment effectively prevents airway inflammation and mucus production in minipig models.
- This study advances the development of small-molecule kinase inhibitors for respiratory diseases.
Conclusions:
- MAPK13 is a critical target for managing airway inflammation and mucus production.
- NuP-3 represents a promising therapeutic candidate for respiratory diseases.
- Further development of MAPK13 inhibitors could address unmet needs in respiratory medicine.
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