Hull Teaching Hospital NHS Trust
Hull, East Yorkshire, HU3 2JZ, United Kingdom
Location contact
Kristina Emsell-Needham, BSc, MSc
CONTACT
Kristina Emsell-Needham, BSc, MSc
PRINCIPAL_INVESTIGATOR
Sujoy Khan, MD, MBBS, FRCPE
CONTACT
NCT Number: NCT06876506
The goal of this laboratory and observational study is to develop a test to quantify B-regulatory cells in blood. This will be used to detect changes in B-regulatory cell populations in pollen and insect venom allergic patients who are receiving routine allergen immunotherapy treatment. The primary question this study aims to answer is;
1). Are changes in blood B-regulatory cells associated with successful allergen immunotherapy treatment, and therefore do these changes suggest patients have developed a suitable level of allergen tolerance and reduction in their allergic symptoms upon re-exposure to the causal allergen.
Patients will also be asked to complete quality of life questionnaire periodically throughout the study to determine if there are associations between variation in B-regulatory cell populations in blood and allergic symptoms experienced.
Trial opening soon.
Get Notified18 year and older
All sexes
Observational
Hull, East Yorkshire, HU3 2JZ, United Kingdom
Kristina Emsell-Needham, BSc, MSc
CONTACT
Kristina Emsell-Needham, BSc, MSc
PRINCIPAL_INVESTIGATOR
Sujoy Khan, MD, MBBS, FRCPE
CONTACT
Allergen immunotherapy (AIT) is a disease-modifying treatment for allergic disease which promotes immune system tolerance, i.e. reduces clinical manifestations of allergy and is the only known effective treatment to prevent anaphylaxis in patients who have previously had serious reactions to insect venoms. AIT induces a variety of immune system changes to facilitate this process, one mechanism of which is the production of a population of white blood cells called B-regulatory cells (BREGs). These cells release a chemical called interleukin-10 (IL-10) which inhibits (controls) the allergic immune response. The success of AIT is difficult to establish/monitor during treatment. Often treatment success can only be established at the end of a long treatment period (typically 3 years) and currently clinicians rely on patient symptoms upon re-exposure to further allergen post-treatment. Therefore there is a requirement to identify a marker (biomarker) which can be tested for during treatment to help clinicians establish at an earlier time, if the AIT is showing success or if a change to treatment is required. This research will measure the BREG and IL-10 production in patients before and at multiple points during AIT, to establish if there is a relationship between the BREG/IL-10 concentration and the success or failure of AIT in controlling patient symptoms of allergy. The hope is that BREG measurement could be used in the future as a biomarker for AIT efficacy, and therefore provide evidence of AIT success sooner than current protocols, or establishing failure of AIT and therefore expediting a change in treatment. The latter will likely result in saving time in pursuing a treatment which is not working, but also for understanding when the treatment has already reached optimal effectiveness and can be stopped.
Overall Aim:
To develop a flow cytometry assay for the identification and quantitation of human B regulatory cells to allow evaluation of their potential role as a treatment efficacy biomarker in allergen-specific immunotherapy.
Primary Objectives:
Secondary Objectives:
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Control cohort - Participants with:
Test cohort:
Exclusion criteria
Whole blood flow cytometry analysis of T-/B-lymphocyte subsets, regulatory B cells and regulatory T cells. Serological detection (immunoassay) of allergen-specific IgE and IgG4
Test group receiving venom allergen immunotherapy as part of standard and routine care pathway (treatment commencement NOT for study purposes, cohort selected of those who are routinely commencing treatment).
Time frame: From enrolment to 1 year post commencing allergen-specific immunotherapy treatment
To assess whether an increase in regulatory B cell concentration is a useful biomarker to indicate AIT treatment success and specific allergen de-sensitisation.
Time frame: From study commencement (planned May 2025) to end of study data collection (planned May 2027)
Development of a flow cytometry protocol that accurately detects and quantifies the regulatory B cell populations
Contact information is provided by the study sponsor or research team.
Kristina Emsell-Needham, BSc, MSc
CONTACT
Sujoy Khan, MD, MBBS, FRCPE
CONTACT
Hull University Teaching Hospitals NHS Trust
Other Gov
Identification and Quantitation of Human B Regulatory Cells Via Flow Cytometry and Their Potential Role as a Treatment Efficacy Biomarker in Allergen-specific Immunotherapy
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