Mayo Clinic in Rochester
Rochester, Minnesota, 55905, United States
NCT Number: NCT03603509
The purpose of this research study is to better understand the immune response to the Adjuvanted Subunit flu vaccine (MF59) and the High Dose flu vaccine (HDFlu) in people 65 years of age and older. The research team will be studying why immune response diminishes as people get older in both men and women. The ultimate goal is to understand how flu immunity develops after vaccination. This information may lead to the development of more effective flu vaccines in the future.
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Notify Me65 year and older
All sexes
Interventional
Phase 4
Rochester, Minnesota, 55905, United States
The overall goal of this proposal is to determine how vaccine type, sex, and gene expression influence both innate and T helper cell immune responses using systems biology and bioinformatics as tools to comprehensively assess the human transcriptome. We will evaluate sex-dependent immune responses to two unique influenza vaccines in a population of older adults; the recently FDA-licensed MF59-adjuvanted influenza subunit vaccine and the high-dose split virion influenza virus vaccine. The influence of sex on immune response to vaccination has been observed across multiple vaccines (including standard dose influenza vaccines, but the mechanisms are unknown, it affects all age groups regardless of hormonal status, and existing studies focus almost exclusively on humoral immune responses. Relatively little is known about the effect of sex on innate and T helper responses following vaccination and we are unaware of any studies evaluating the effect of sex on immune responses to adjuvanted influenza vaccine. The presence of adjuvant (MF59Flu) or higher antigen (Ag) dose leads to greater immunogenicity through mechanisms that have not been fully deciphered and are likely to be different. Further, a direct comparison of innate and T helper immune responses between adjuvanted and high dose influenza vaccines has not been reported.
The study design will include 200 generally healthy individuals (ages ≥65) who meet all inclusion criteria. 100 subjects will receive each vaccine with equal sex representation in each subgroup (a factorial design for sex by vaccine type). Subjects will undergo venipuncture for blood samples (~100 mL each, sufficient for the proposed assays) before vaccination and at three timepoints after vaccination (Day 1, Day 8, Day 28).
The clinical characterization of our study subjects will include demographic information, height, weight, BMI, waist circumference, medications, and medical conditions that do not meet exclusion criteria (see Protection of Human Subjects). We will also quantify blood leukocyte populations (CBC, WBC differential).
Immunosenescence and cytomegalovirus (CMV) infection can affect influenza vaccine-induced immune responses. We will evaluate whether CMV seropositivity or other measures of immunosenescence are associated with immune response and whether they interact with vaccine type/sex.
We will monitor/characterize transcriptional changes (mRNA and miRNA) as well as measures of immune function (cytokine secretion, leukocyte surface phenotype, hemagglutination inhibiting antibody titer, and memory B cell ELISPOT) at each time point.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
FLUAD is an inactivated influenza vaccine indicated for active immunization against influenza. disease caused by influenza virus subtypes A and type B contained in the vaccine. FLUAD is. approved for use in persons 65 years of age and older.
Other names: adjuvanted influenza vaccine
FLUZONE® HIGH-DOSE vaccine is indicated for people 65 years of age and older to help prevent influenza disease caused by influenza A and B strains contained in the vaccine.
Other names: high dose influenza vaccine
Time frame: Baseline, Day 1
Cytokine secretion (interferon alpha 2a) after in vitro stimulation with influenza virus
Time frame: Baseline and Day 28
Reciprocal of the serum dilution exhibiting no hemagglutination (the larger the number, the more agglutinating antibodies the subject has. A titer of equal to more than 1:40 and above is considered a protective antibody titer)
Time frame: Baseline, Day 28
Gene expression counts. The number shown is the total number of RNA molecules whose sequence matches a human gene. This is a measure of how much gene expression is occurring in the cells in each subject's blood sample.
Time frame: Baseline, Day 8, Day 28
Next generation sequencing of purified T cells' miRNA
Time frame: Baseline, Day 8
IFNAR1 gene counts (the number of molecules of RNA whose sequence matches the interferon alpha receptor 1 gene that were present in the subject's blood sample).
Time frame: Baseline, Day 1, Day 8
Next generation sequencing of purified innate cells' miRNA
Time frame: Day 28
Number of influenza-specific Ab producing memory B cells. Spot Forming Units (SFUs) are the frequency of Ab secreting B cells in an ELISPOT assay.
Time frame: Day 28
influenza-specific, IFNg producing, memory T cells. Spot Forming Units (SFUs) are the frequency of IFN-g secreting T cells in an ELISPOT assay.
Time frame: Day 28
Flow cytometry analysis of T cells. The results show the percentage of specific white blood cell types are present in each subject's blood sample. Reported as a % of the total peripheral blood mononuclear cells.
Time frame: Day 1 (stim)
Flow cytometry analysis of innate cells. The results show the percentage of classical monocytes in each subject's blood sample. The data are reported as a percentage of the peripheral blood mononuclear cells.
Time frame: Baseline
Serum CMV-specific IgG level. Number reported as Sample Index (the optical density in an ELISA). The Sample Index is a semi-quantitative measure of how much CMV-specific IgG antibodies are in each subject's blood sample. The values range from 0 to 4. Values between 0 and 3 are relative measures of the amount of antibody (0 = no antibody, 1 = a low level of antibody, 3 = a high level of antibody). Values from 3-4 all reflect high levels of antibody but typically exceed the linear range of the assay and cannot be used to quantify exact amounts of antibody.
Time frame: Day 28
Flow cytometry analysis of T cells. The results show the ratio of CD4+ T cells compared to CD8+ T cells present in each subject's PBMCs.
Mayo Clinic
Other
Transcriptomic Signatures of Influenza Vaccine Responses
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