An interventional study of Salmonella enterica serovar Paratyphi A (strain NVGH308) in Enteric Fever Caused by Salmonella Enterica Serovar Paratyphi A, sponsored by University of Oxford. Completed at 1 site in United Kingdom. Open to participants aged 18 Years to 60 Years, including healthy volunteers. Per ClinicalTrials.gov, last updated 2022-03-14.
Sponsored by University of Oxford · Not applicable, Interventional, and Basic science
Enteric fever is responsible for over 20 million illnesses and 200,000 deaths each year. S. Paratyphi A accounts for a substantial and increasing proportion of these cases, as high as 90% in some regions of Asia. There are currently no vaccines directed against S. Paratyphi A, although there some candidates in preclinical and phase 1 trials. This study is funded by the European Vaccine Initiative and the Bill and Melinda Gates Foundation. Paratyphoid is a human-restricted infection, for which there are currently no small animal models available. In order to further our understanding of the host-pathogen interactions, this study will develop a novel human challenge model in which to investigate this infection, using a recent successful typhoid challenge model as its template.
Healthy subjects to ingest a dose of Salmonella enterica serovar Paratyphi A, strain NVGH308, after drinking a bicarbonate buffer. Intensive follow up over 14 days will establish whether each participant meets clearly defined criteria for diagnosis of paratyphoid infection. Statistical analysis will be performed on this outcome will determine if it consistently gives an attack rate of 60 to 75%. If this is not reached with the first cohort of 20 participants, the dose will be escalated and the process repeated. A maximum of 80 participants will be enrolled. Total follow up will be over the course of one year. Descriptive clinical and laboratory data collected from participant observations, samples of blood, faeces, urine and saliva will allow insights into the disease and the host response. These insights will forward our knowledge of paratyphoid disease and may help discover or develop diagnostic methods.
This study is funded by the European Vaccine Initiative and the Bill and Melinda Gates Foundation. Paratyphoid is a human-restricted infection, for which there are currently no small animal models available. In order to further our understanding of the host-pathogen interactions, this study will develop a novel human challenge model in which to investigate this infection, using a recent successful typhoid challenge model as its template.
Healthy subjects will ingest a dose of Salmonella enterica serovar Paratyphi A, strain NVGH308, after drinking a bicarbonate buffer. Intensive follow up over 14 days will establish whether each participant meets clearly defined criteria for diagnosis of paratyphoid infection. Statistical analysis will be performed on this outcome will determine if it consistently gives an attack rate of 60 to 75%. If this is not reached with the first cohort of 20 participants, the dose will be escalated and the process repeated. A maximum of 80 participants will be enrolled. Total follow up will be over the course of one year. Descriptive clinical and laboratory data collected from participant observations, samples of blood, faeces, urine and saliva will allow insights into the disease and the host response. These insights will forward our knowledge of paratyphoid disease and may help discover or develop diagnostic methods. Anticipating the development of a successful live challenge model through this study, there will be the possibility of evaluating novel paratyphoid vaccines that are currently in early clinical phase testing. This serves an important function because field trials in endemic areas are expensive and time consuming. Speeding up this process using our model will be of great benefit to endemic areas.
74 studies on the registry are indexed under Typhoid Fever; 10 are open to participants now.
This study's planned enrollment of 80 is below the median of 149 across 64 interventional studies indexed under Typhoid Fever.
Browse Typhoid Fever studies →University of Oxford is the lead sponsor of 794 studies on the registry; 117 are open to participants now.
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Exclusion Criteria:
History of significant organ/system disease that could interfere with trial conduct or completion. Including, for example, but not restricted to:
Have any known or suspected impairment of immune function, alteration of immune function, or prior immune exposure that may alter immune function to paratyphoid resulting from, for example:
Full-time, part-time or voluntary occupations involving:
Full time, part time or voluntary occupations involving:
o Commercial food handling (involving preparing or serving unwrapped foods not subjected to further heating)
Close household contact with:
Any other social, psychological or health issues which, in the opinion of the study investigator, may
A dose of S.paratyphi will be given to up to 20 participants to determine the attack rate.
Biological: Salmonella enterica serovar Paratyphi A (strain NVGH308)
Ingestion of 1-5x10³ to 1-5x10⁵ colony forming units (CFU) of the challenge strain after bicarbonate buffer solution.
Clinical or microbiologically proven paratyphoid infection.
Clinical or microbiologically proven paratyphoid infection following oral challenge with Salmonella Paratyphi A, strain NVGH308, delivered with sodium bicarbonate solution.
Time frame: Up to 14 days after challenge dose administered
Human physiological response
Description of the clinical course after challenge using, for example, participant symptom profiles, temperature measurements and other recorded clinical and laboratory observations. The outcomes will be measured in terms of number of participants and/or proportion of participants developing a certain clinical observation. For certain observations mean time from dosing to the development of that observation (e.g. development of a temperature \>38C).
Time frame: Clinical signs and solicited symptoms measured in the 21 day period after challenge; laboratory and unsolicited symptoms followed up over the course of one year
Evaluation of the sensitivity of paratyphoid diagnostic criteria
Determination of challenge dose/kg (dose/surface area) actually ingested by those developing and those not developing paratyphoid infection at each dose level. Analysis of the attack rate using alternative criteria including, for example, passive field surveillance definitions, alternative temperature thresholds and adjunctive microbiological and laboratory diagnostic assays.
Time frame: Up to one year after challenge
Describe the characteristics of bacterial dynamics post challenge
Microbiological assays to detect and characterise Salmonella Paratyphi after challenge in blood, stool and urine.
Time frame: Up to one year after challenge
Describe the human immune response to S. Paratyphi
Immunological laboratory assays to measure innate, humoral, cell-mediated and mucosal responses to challenge.
Time frame: Up to one year after challenge
Genetic features
Laboratory and high-throughput assays to measure genetic factors affecting susceptibility, gene expression and protein translation.
Time frame: Up to one year after challenge
Discovery/ development of diagnostic methods
Exploratory analysis of blood, faeces, saliva and urine samples using experimental assays and diagnostics. For example, identification of molecules in urine associated with disease using mass spectrometry.
Time frame: Up to one year after challenge
Exploration of participants' motivation for involvement in challenge studies
Participant responses using questionnaires during the course of the study.
Time frame: Up to one year after challenge
This study is completed, as verified in Mar 2022. You cannot join it, but the record below documents what was studied.
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