• Skip to main content
  • Skip to header right navigation
  • Skip to site footer
News and impact
NIHR Biomedical Research Centre Leicester

NIHR Biomedical Research Centre Leicester

  • Home
  • About Us
    • Leadership Team
    • Our Impact
    • Our NIHR infrastructure
    • Governance
    • Inclusion
    • Strategies
    • Contact us
  • Our Research
    • Our Impact
    • Spotlight on our researchers
    • Cardiovascular
    • Data Innovation for Multiple Long-Term Health Conditions and Ethnic Health
    • Environment
    • Lifestyle
    • Personalised Cancer Prevention and Treatment
    • Respiratory and Infection
  • Patients and Public
    • Get Involved
    • Upcoming Public Involvement opportunities
    • Our approach to Public Involvement
    • Join the BioResource and Be Part of Research
    • Taking part in Clinical Trials
  • Industry and Partners
    • What we offer to industry
    • Collaborate with the Leicester BRC
    • Our partnerships
      • The NIHR Diet and Activity Research Translation (DART) Collaboration
  • For Researchers
    • Training
    • The Internal Resource Hub
    • Acknowledging and communicating your research
    • Guidance on Public Involvement (PPIE) for researchers
    • Advancing inclusion: transforming research culture in Leicester and beyond
    • PPI for Statistical Methodology and Research Techniques
  • News and Impact

Asthma pill targets airway muscles to decrease attacks

Feb 13, 2019

Results from a phase II clinical trial, experimental work on cells and computational modelling have together shown why the first pill for asthma in 20 years can help reduce asthma attacks.

Researchers from Leicester (UK) and Vancouver (Canada) have shown that the investigational drug, Fevipiprant (an oral, selective prostaglandin D2 receptor antagonist), reduces the amount of smooth muscle in the airway lining. The findings are published in Science Translational Medicine today (13 February).

Professor Chris Brightling, a consultant respiratory physician at Leicester’s Hospitals and professor of respiratory medicine at the University of Leicester, said: “Our research shows for the first time that Fevipiprant not only reduces inflammation in the airways, but also reduces the amount of muscle in the lining of the airway. This is likely to explain some of the effects seen in the symptoms and breathing tests following treatment.”

An increase in airway smooth muscle is the strongest predictor of reduced airflow into the lungs due to airway narrowing. It significantly increases the likelihood of more frequent asthma attacks and even asthma-related deaths.

The research was supported by the National Institute for Health Research (NIHR) Leicester Biomedical Research Centre. Professor Brightling, who is also an NIHR senior investigator, added: “From previous trials conducted we found that Fevipiprant led to improvements in symptoms, breathing tests, inflammation and also helped to repair the lining of patients’ airways.

“Our latest research gives us a better understanding of the mechanisms behind the efficacy of the drug and how changes in one part of the airway wall can impact on others. Our findings suggest that Fevipiprant could have positive long-term effects upon the progression of the disease through remodelling, as well as improve symptoms and reduce attacks.”

Dr Ruth Saunders, a research fellow at the University of Leicester who led the experimental laboratory-based work in the study, said: “One novel aspect of our study was the way we combined information from a clinical trial, laboratory experiments and computer based models to give insights that would not have been possible with any of these approaches alone.”

Dr Himanshu Kaul, who is now a postdoctoral fellow in the School of Biomedical Engineering at the University of British Columbia, led the computational modelling. He said: “Our computer model represents a milestone towards patient-specific models in respiratory medicine that has the potential to help design new drugs and optimise existing therapies. Eventually, it could play a role in furthering precision medicine by helping predict the optimal intervention tailored to individual patients given their genomic information.”

Asthma affects over 300 million people worldwide and its prevalence is on the increase. There are around half a million people with moderate to severe forms of asthma in the UK.

There is currently no routinely-available drug on the NHS that targets smooth muscle mass to reduce asthma symptoms. For people with severe asthma, a procedure called thermoplasty, which uses thermal energy to decrease the amount of smooth muscle in the airways, may be offered. This requires sedation in hospital and is not a cure, nor suitable for everyone. Most patients with severe asthma rely on high dose inhaled or oral steroids to manage their symptoms.

Fevipiprant’s potential to reduce the need for patients to take oral steroids either continuously or for attacks could be seen as a positive step, given the range of possible side-effects associated with steroids. These include weight gain, osteoporosis, diabetes and high blood pressure. The more patients take steroids to manage their asthma symptoms, the less effective the same doses become in future.

The research, including the cellular experimental work and computational modelling, was funded by the Swiss pharmaceutical company, Novartis, AirPROM* and the NIHR Leicester Biomedical Research Centre.

“Fevipiprant has the potential to significantly improve the treatment of asthma patients who do not achieve disease control on optimised inhaled therapy,” said Linda Armstrong, MD, Head Respiratory Development Unit, Novartis. “This trial result is an encouraging step forward. We look forward to the completion of our currently ongoing phase 3 clinical development program and hope to make this once daily oral treatment with Fevipiprant available to patients as quickly as possible.”

Ends

More information, including a copy of the paper, can be found online at the Science Translational Medicine press package at http://www.eurekalert.org/jrnls/scitransmed. You will need your user ID and password to access this information.

The A2208 Phase II study is reported by Gonem S et al in Lancet Resp Med 2016, NCT01545726.

*AirPROM stands for ‘Airway Disease Predicting Outcomes through Patient Specific Computational Modelling’. This is the technical name for the 5 year European-wide project that aims to produce computer and physical models of the whole airway system for people with asthma and chronic obstructive pulmonary disease. It is part of the European Lung Foundation. For more information: https://www.europeanlung.org/en/projects-and-research/projects/airprom/home

Science Media Centre labels:
Peer-reviewed
Type of study: RCT / experimental study / simulation / computational modelling
Subject: Humans; human cells

Category: Press ReleasesTag: Press Release

Recent News

Leicester health specialists receive NIHR prizes for excelling in their fields

Respiratory researcher awarded Asthma + Lung UK Junior Fellowship

Weight-loss drug users turn to social media over doctors for advice

Read more news stories

The NIHR Leicester BRC is part of the NIHR and hosted by the University Hospitals of Leicester NHS Trust in partnership with the University of Leicester,  Loughborough University and the University Hospitals of the Northamptonshire NHS Group.

Get in touch

NIHR Leicester Biomedical Research Centre

University Hospitals of Leicester NHS Trust
Research & Innovation
Leicester General Hospital
Gwendolen Road
Leicester, LE5 4PW

Contact us

Our Research

Spotlight on our researchers

Cardiovascular

Data Innovation for Multiple Long-Term Health Conditions and Ethnic Health

Environment

Personalised Cancer Prevention and Treatment

Lifestyle

Respiratory and Infection

About BRC

Our NIHR infrastructure

BRC clinical research during COVID-19

Our 2022 – 2028 strategy documents

Governance

Useful links

Our partnerships

Inclusion

Privacy notice

Cookie Policy

Copyright © NIHR Biomedical Research Centre: Leicester

  • LinkedIn
  • X
  • Facebook
Manage Consent
To provide the best experiences, we use technologies like cookies to store and/or access device information. Consenting to these technologies will allow us to process data such as browsing behavior or unique IDs on this site. Not consenting or withdrawing consent, may adversely affect certain features and functions.
Functional Always active
The technical storage or access is strictly necessary for the legitimate purpose of enabling the use of a specific service explicitly requested by the subscriber or user, or for the sole purpose of carrying out the transmission of a communication over an electronic communications network.
Preferences
The technical storage or access is necessary for the legitimate purpose of storing preferences that are not requested by the subscriber or user.
Statistics
The technical storage or access that is used exclusively for statistical purposes. The technical storage or access that is used exclusively for anonymous statistical purposes. Without a subpoena, voluntary compliance on the part of your Internet Service Provider, or additional records from a third party, information stored or retrieved for this purpose alone cannot usually be used to identify you.
Marketing
The technical storage or access is required to create user profiles to send advertising, or to track the user on a website or across several websites for similar marketing purposes.
  • Manage options
  • Manage services
  • Manage {vendor_count} vendors
  • Read more about these purposes
View preferences
  • {title}
  • {title}
  • {title}