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Updated: Apr 8, 2026

Generation, Amplification, and Titration of Recombinant Respiratory Syncytial Viruses
Published on: April 4, 2019
Benzimidazole analogs inhibit respiratory syncytial virus G protein function
Carrie W Evans1, Colm Atkins1, Ashish Pathak1
1Southern Research, Birmingham, AL, USA.
Insights
New benzimidazole analogs show potent in vitro inhibition of human respiratory syncytial virus (hRSV). However, the lead compound SRI 29365 did not demonstrate efficacy in vivo, suggesting the viral G-protein may not be a viable drug target.
Area of Science:
- Virology
- Medicinal Chemistry
- Drug Discovery
Background:
- Human respiratory syncytial virus (hRSV) is a major cause of infant respiratory illness, with limited therapeutic options.
- Existing treatments for hRSV are restricted to high-risk pediatric populations, highlighting the need for novel therapies.
Purpose of the Study:
- To identify novel benzimidazole analogs with in vitro activity against hRSV.
- To investigate the mechanism of action and in vivo efficacy of promising compounds.
Main Methods:
- High-throughput screening of benzimidazole analogs for hRSV inhibition.
- Time-of-addition assays and resistance mutation analysis to determine mechanism of action.
- In vivo efficacy studies in a cotton rat model.
Main Results:
- SRI 29365 demonstrated potent in vitro inhibition of hRSV with an EC50 of 66µM.
- Mechanism of action studies suggested inhibition of G-protein mediated viral attachment.
- SRI 29365 failed to reduce hRSV titers or morbidity/mortality in cotton rats.
Conclusions:
- Benzimidazole analogs can potently inhibit hRSV replication in vitro.
- The viral G-protein may not be a suitable in vivo drug target for hRSV despite in vitro findings.
Abstract:
Human respiratory syncytial virus (hRSV) is a highly contagious Paramyxovirus that infects most children by age two, generating an estimated 75,000-125,000 hospitalizations in the U.S. annually. hRSV is the most common cause of bronchiolitis and pneumonia among infants and children under 1year of age, with significant mortality among high-risk groups. A regulatory agency-approved vaccine is not available, and existing prophylaxis and therapies are limited to use in high-risk pediatric patients; thus additional therapies are sorely needed. Here, we identify a series of benzimidazole analogs that inhibit hRSV infection in vitro with high potency, using a previously-reported high-throughput screening assay. The lead compound, SRI 29365 (1-[6-(2-furyl)[1,2,4]triazolo[3,4-b][1,3,4]thiadiazol-3-yl]methyl-1H-benzimidazole), has an EC50 of 66μM and a selectivity >50. We identified additional compounds with varying potencies by testing commercially-available chemical analogs. Time-of-addition experiments indicated that SRI 29365 effectively inhibits viral replication only if present during the early stages of viral infection. We isolated a virus with resistance to SRI 29365 and identified mutations in the transmembrane domain of the viral G protein genomic sequence that suggested that the compound inhibits G-protein mediated attachment of hRSV to cells. Additional experiments with multiple cell types indicated that SRI 29365 antiviral activity correlates with the binding of cell surface heparin by full-length G protein. Lastly, SRI 29365 did not reduce hRSV titers or morbidity/mortality in efficacy studies using a cotton rat model. Although SRI 29365 and analogs inhibit hRSV replication in vitro, this work suggests that the G-protein may not be a valid drug target in vivo.
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