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An In vitro Model to Study Immune Responses of Human Peripheral Blood Mononuclear Cells to Human Respiratory Syncytial Virus Infection
Published on: December 10, 2013
Post-infection A77-1726 blocks pathophysiologic sequelae of respiratory syncytial virus infection
Ian C Davis1, Eduardo R Lazarowski, Fu-Ping Chen
1Department of Anesthesiology, University of Alabama at Birmingham, BMR II, Birmingham, AL 35205-3703, USA.
Insights
New research suggests de novo pyrimidine synthesis inhibitors, like A77-1726, may alleviate respiratory syncytial virus (RSV) symptoms. Intranasal treatment improved alveolar fluid clearance and reduced inflammation and hypoxemia in mice, offering potential relief for infants with RSV bronchiolitis.
Area of Science:
- Virology
- Immunology
- Pharmacology
Background:
- Respiratory syncytial virus (RSV) bronchiolitis is a leading cause of infant respiratory illness globally.
- Current treatments for RSV bronchiolitis have seen limited advancement in recent decades.
- Impaired alveolar fluid clearance (AFC) and hypoxemia are key pathophysiological consequences of RSV infection.
Purpose of the Study:
- To investigate the efficacy of de novo pyrimidine synthesis inhibitors in preventing RSV-induced reductions in AFC and hypoxemia.
- To determine if post-infection administration of these inhibitors could offer therapeutic benefits.
Main Methods:
- BALB/c mice were intranasally infected with RSV strain A2.
- Alveolar fluid clearance (AFC) was measured in ventilated mice.
- Leflunomide and its active metabolite A77-1726 were administered systemically or intranasally post-infection.
Main Results:
- Intranasal A77-1726 administration at Day 1 improved AFC and reduced lung water content by Day 2.
- A77-1726 treatment decreased bronchoalveolar lavage nucleotide levels, lung inflammation, and hypoxemia.
- The therapeutic effect was specific to de novo pyrimidine synthesis inhibition and did not impede viral replication or clearance.
Conclusions:
- Post-infection intranasal treatment with de novo pyrimidine synthesis inhibitors, such as A77-1726, shows promise for managing RSV-induced alveolar fluid clearance impairment.
- These findings suggest a potential therapeutic strategy for symptomatic relief in children with RSV bronchiolitis.
Abstract:
Despite respiratory syncytial virus (RSV) bronchiolitis remaining the most common cause of lower respiratory tract disease in infants worldwide, treatment has progressed little in the past 30 years. The aim of our study was to determine whether post-infection administration of de novo pyrimidine synthesis inhibitors could prevent the reduction in alveolar fluid clearance (AFC) and hypoxemia that occurs at Day 2 after intranasal infection of BALB/c mice with RSV. BALB/c mice were infected intranasally with RSV strain A2. AFC was measured in anesthetized, ventilated mice after instillation of 5% bovine serum albumin into the dependent lung. Post-infection systemic treatment with leflunomide has no effect on AFC. However, when added to the AFC instillate, leflunomide's active metabolite, A77-1726, blocks RSV-mediated inhibition of AFC at Day 2. This block is reversed by uridine (which allows pyrimidine synthesis via the scavenger pathway) and not recapitulated by genistein (which mimics the tyrosine kinase inhibitor effects of A77-1726), indicating that the effect is specific for the de novo pyrimidine synthesis pathway. More importantly, when administered intranasally at Day 1, A77-1726, but not its vehicle dimethyl sulfoxide, maintains its beneficial effect on AFC and lung water content until Day 2. Intranasal instillation of A77-1726 at Day 1 also reduces bronchoalveolar lavage nucleotide levels, lung inflammation, and hypoxemia at Day 2 without impairing viral replication at Day 2 or viral clearance at Day 8. Post-infection intranasal or aerosolized treatment with pyrimidine synthesis inhibitors may provide symptomatic relief from the pathophysiologic sequelae of impaired AFC in children with RSV bronchiolitis.
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