Target intelligence / Profile preview

Respiratory syncytial virus A (Memphis 37 strain) (RSV A Memphis 37)

Target
RSV A Memphis 37
Molecular classification
Virus, Orthopneumovirus, Paramyxoviridae
01

Overview

Respiratory syncytial virus A (Memphis 37 strain) is a clinical isolate of the human respiratory syncytial virus used extensively as a challenge agent in controlled human infection models (CHIM) (DeVincenzo et al., 2010, PubMed: 20431046). It is not a therapeutic target but rather a live, infectious virus administered to healthy volunteers to test the prophylactic or therapeutic efficacy of new drugs and vaccines (DeVincenzo et al., 2014, PubMed: 25140959). Originally isolated from an infant with bronchiolitis, the Memphis 37 strain has been standardized and produced under regulatory guidelines for clinical research (ClinicalTrials.gov, NCT00496821). In these studies, the strain induces a mild to moderate upper respiratory tract infection, allowing for the precise measurement of viral kinetics and host immune responses (DeVincenzo et al., 2010, PubMed: 20431046). This model provides a controlled environment to evaluate how interventions like fusion inhibitors or monoclonal antibodies affect viral shedding and clinical symptoms (DeVincenzo et al., 2014, PubMed: 25140959). Consequently, Memphis 37 is a foundational tool in RSV drug development, helping to bridge the gap between animal models and large-scale clinical trials (Bagga et al., 2015, PubMed: 25833113). The strain is characterized by its ability to produce consistent infection rates and symptoms in seronegative or low-antibody adults (DeVincenzo et al., 2010, PubMed: 20431046). Researchers monitor biomarkers such as viral load via quantitative PCR and symptom scores to determine the potency of the investigational product (DeVincenzo et al., 2014, PubMed: 25140959).

Other names
RSV-A M37Memphis 37Human respiratory syncytial virus A Memphis 37RSV M37
02

Mechanism of action

Not a therapeutic target; serves as a challenge agent to evaluate drugs that inhibit viral fusion, replication, or entry (DeVincenzo et al., 2014, PubMed: 25140959).

03

Biological functions

Viral replicationHost cell attachmentMembrane fusionImmune evasion
04

Disease associations

Respiratory syncytial virus infectionBronchiolitisPneumonia
05

Safety considerations

Risk of severe lower respiratory tract infectionTransmission to vulnerable populationsPotential for secondary bacterial infection
06

Interacting drugs

ALN-RSV01

4 more in the full profile.

07

Biomarkers

Viral load (RT-qPCR)Total symptom score (TSS)Nasal wash cytokine levelsRSV-specific antibody titers

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