This study will for the first time systematically investigate the immune responses in an elderly cohort challenged with a well-defined RSV inoculum. With a global aging population and continuing difficulties in generating vaccines that can reliably induce protective immunity in the elderly, these data will indicate the targets at which development of vaccines against RSV and other infections should be directed.
Respiratory syncytial virus (RSV) is one of the most common causes of chest infection worldwide, with 64 million episodes and 160,000 deaths each year. Despite this, it remains an underappreciated health problem and there are currently no specific treatments or vaccines against it. Although RSV infection is most frequent in young children, the majority of deaths occur in older adults, particularly in those with underlying heart and lung disease. This is believed to be due in part to the ageing immune system's reduced ability to protect against infection and symptomatic disease. However, little is known about the way human immune responses to RSV infection in older individuals differ from those of younger people. Further understanding of the mechanisms underlying immunity and potential impairments in these higher-risk people are therefore necessary. This project aims to study the role of T cells (which destroy virus-infected cells and are likely to be essential for recovery from infection) in healthy older volunteers after they have been given an RSV-induced common cold. Samples will be taken from the blood and respiratory tract in order to identify the differences in T cell responses that occur in older adults compared with their younger counterparts. Participants will be carefully screened to ensure they do not have any underlying health problems that might make them more at risk of severe disease and will be monitored closely throughout the course of infection. The investigators anticipate that T cell function even in healthy older individuals will be impaired compared to young adults, thus contributing in those with additional health problems to more severe disease. By analysing the networks of genes that are switched on and off, the investigators aim to identify the particular defects underlying these functional defects in order to ultimately define targets for novel treatments and T cell-stimulating vaccines.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
28
Subjects will be inoculated using intra-nasal drops with diluted inoculum at a given dose divided equally between the two nostrils. Dose: Good Manufacturing Practices-certified RSV Memphis 37 10(4) PFU in 1ml, 25% sucrose/Dulbecco's Modification of Eagle's Medium. Inoculations using intranasal drops will be done using a 1mL pipette with subjects supine. This will be done slowly with sufficient interval between each inoculation (2-3 minutes) to ensure maximum contact time between with the nasal and pharyngeal mucosa. Subjects will be asked not to swallow during the procedure to ensure maximal pharyngeal contact. Following inoculation, advice regarding hand hygiene will be given, subjects will be provided with alcohol hand gel and facemasks to reduce spread of virus in the environment.
Imperial College London
London, United Kingdom
Number of Participants With Challenge-related Adverse Events
To determine the safety and tolerability of experimental challenge with RSV Memphis 37, assessed by the number of participants with challenge-related adverse events. This includes any AEs deemed at least possibly related to the study challenge intervention (RSV Memphis 37). Assessed from the time of inoculation to study completion (Day 180).
Time frame: 180 days
Symptom Severity in RSV Infection
This is the total symptom score for the whole 14 day period and is therefore the sum of all the scores from Day 0 to Day 14. Self-reported upper and lower respiratory and systemic symptoms by diary card. A self-completed diary card of upper respiratory tract clinical symptoms was completed on Day 0 and daily for 14 days after inoculation. A total 'upper respiratory clinical symptom score' will be derived using a four-point scale (0-3 for absent, mild, moderate and severe) for each of the following four respiratory symptoms: sneezing, nasal discharge, nasal obstruction, and sore throat, giving a maximum clinical severity score of 12 per day.
Time frame: Day 0 to Day 14 (14 days)
Nasal Viral Load Measurement in RSV Infection
Change from baseline in viral load by qPCR of 28 days post inoculation.
Time frame: Day 0 to Day 28 (28 days)
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