Vanderbilt University - Pediatric - Vanderbilt Vaccine Research Center
Nashville, Tennessee, 37232-2573, United States
NCT Number: NCT03541499
This is a randomized, partially blind, placebo controlled, clinical trial evaluating a single intranasal dose of BPZE1 in healthy adults. The study will evaluate a lyophilized formulation of the product, with the goal of testing for the optimal dose for subsequent clinical trials. Fifty healthy adults, 18-49 years of age will be randomized to one of the four following treatment groups in a 3:3:3:1 ratio: 10^7 colony forming units (CFU) of BPZE1 administered by VaxINator device, 10^9 CFU of BPZE1 administered by VaxINator device, placebo administered by VaxINator device, 10^9 CFU of BPZE1 administered by needleless tuberculin syringe. Study duration will be approximately 12 months with a subject participation duration of approximately 6 months. The primary objective of this study is to assess the safety and tolerability of a single intranasal dose of either 10^7 or 10^9 CFU of lyophilized BPZE1 vaccine.
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Notify Me18 year–49 year
All sexes
Interventional
Phase 2
Nashville, Tennessee, 37232-2573, United States
This is a phase 2a, single center, randomized, partially blind, placebo controlled, clinical trial evaluating a single intranasal dose of either 10^7 colony forming units (CFU) or 10^9 CFU of BPZE1 in healthy adults. The study will evaluate a lyophilized formulation of the product, with the goal of testing for the optimal dose for subsequent clinical trials. Fifty healthy adults, 18-49 years of age will be randomized to one of the four following treatment groups in a 3:3:3:1 ratio: 10^7 CFU of BPZE1 administered by VaxINator device, 10^9 CFU of BPZE1 administered by VaxINator device, placebo administered by VaxINator device, 10^9 CFU of BPZE1 administered by needleless tuberculin syringe. Study duration will be approximately 12 months with a subject participation duration of approximately 6 months. The primary objective of this study is to assess the safety and tolerability of a single intranasal dose of either 10^7 or 10^9 CFU of lyophilized BPZE1 vaccine. The secondary objectives of this study are: 1) to assess the humoral immunogenicity of lyophilized BPZE1 vaccine at Day 15, Day 29 and Day 181 following receipt of one intranasal dose of 10^7 or 10^9 CFU of BPZE1; 2) to assess mucosal immunogenicity of lyophilized BPZE1 vaccine at Day 29 and Day 181 following receipt of one intranasal dose of 10^7 or 10^9 CFU of BPZE1; 3) to evaluate nasal clearance of BPZE1 by culture at Day 29 (and if still positive, at Day 46) following receipt of one intranasal dose of lyophilized BPZE1 vaccine of 10^7 or 10^9 CFU of BPZE1.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Subjects eligible to participate in this study must meet all inclusion criteria:
*As determined by medical history and physical examination to evaluate acute or currently ongoing chronic medical diagnoses or conditions, defined as those that have been present for at least 90 days that would affect the assessment of the safety of subjects or the immunogenicity of study vaccinations. Chronic medical diagnoses or conditions should be stable for the last 60 days. This includes no change in chronic prescription medication, dose, or frequency because of deterioration of the chronic medical diagnosis or condition in the 60 days prior to enrollment. Any prescription change that is due to change of health care provider, insurance company, etc., or that is done for financial reasons, if it is in the same class of medication, will not be considered a deviation of this inclusion criterion. Any change in prescription medication due to improvement of a disease outcome, as determined by the site principal investigator or appropriate sub-investigator, will not be considered a deviation of this inclusion criterion. Subjects may be on chronic or as needed (prn) medications if, in the opinion of the site principal investigator or appropriate sub-investigator, they pose no additional risk to subject safety or assessment of reactogenicity and immunogenicity and do not indicate a worsening of medical diagnosis or condition. Similarly, medication changes after enrollment and study vaccination are acceptable provided there was no deterioration in the subject's chronic medical condition that necessitated a medication change, and there is no additional risk to the subject or interference with the evaluation of responses to study vaccination. Note: Topical and inhaled medications (with the exception of inhaled or nasal corticosteroids within 30 days prior to enrollment), herbals, vitamins, and supplements are permitted.
*Abnormalities in white blood count, hemoglobin, platelet count, alanine aminotransferase, and serum creatinine that are suspected to be due to laboratory anomalies may be repeated once to ensure accuracy; additionally, otherwise eligible subjects with grade 1 abnormalities in these values may be considered for enrollment if, in the opinion of the investigator (or clinician on the 1572), the abnormalities are not clinically significant and do not pose additional risk to the study or the volunteer.
*Abnormalities in white blood count, hemoglobin, platelet count, alanine aminotransferase, and serum creatinine that are suspected to be due to laboratory anomalies may be repeated once to ensure accuracy; additionally, otherwise eligible subjects with grade 1 abnormalities in these values may be considered for enrollment if, in the opinion of the investigator (or clinician on the 1572), the abnormalities are not clinically significant and do not pose additional risk to the study or the volunteer.
*Abnormalities in white blood count, hemoglobin, platelet count, alanine aminotransferase, and serum creatinine that are suspected to be due to laboratory anomalies may be repeated once to ensure accuracy; additionally, otherwise eligible subjects with grade 1 abnormalities in these values may be considered for enrollment if, in the opinion of the investigator (or clinician on the 1572), the abnormalities are not clinically significant and do not pose additional risk to the study or the volunteer.
*Abnormalities in white blood count, hemoglobin, platelet count, alanine aminotransferase, and serum creatinine that are suspected to be due to laboratory anomalies may be repeated once to ensure accuracy; additionally, otherwise eligible subjects with grade 1 abnormalities in these values may be considered for enrollment if, in the opinion of the investigator (or clinician on the 1572), the abnormalities are not clinically significant and do not pose additional risk to the study or the volunteer.
*Not sterilized via tubal ligation, bilateral oophorectomy, salpingectomy, hysterectomy, or successful Essure(R) placement (permanent, non-surgical, non-hormonal sterilization) with documented radiological confirmation test at least 90 days after the procedure, and still menstruating or < 1 year has passed since the last menses if menopausal.
Exclusion criteria
*If a patient has a history of nasopharyngeal surgery such as, but not limited to rhinoplasty, tonsillectomy or sinus surgery, adequate healing time per the judgement of the investigator must occur prior to enrollment.
*Close contact includes sharing a household, serving as a healthcare worker, or working professionally in settings with repeated exposures.
*B. pertussis active antibiotics include macrolides, fluoroquinolones, trimethoprim-sulfamethoxazole, tetracyclines.
Lyophilized, live-attenuated Bordetella pertussis vaccine reconstituted with sterile water for injection (SWFI) and administered as a single intranasal dose of either 10^7 colony forming units (CFU) or 10^9 CFU.
The placebo consists of the same constituents in the same quantities as the BPZE1 investigational vaccines, absent the attenuated B. pertussis cells, reconstituted with sterile water for injection (SWFI).
Time frame: Day 1 through Day 29
AESIs included medically attended wheezing events given the route of study product administration and the nature of the study product.
Time frame: Day 1 through Day 181
NOCMCs are defined as new medical conditions, not present at the time of screening or enrollment, that require ongoing medical care and intervention.
Time frame: Day 1 through Day 181
An adverse event was considered serious if, in the view of either the site principal investigator or sponsor, it resulted in any of the following outcomes: death, a life-threatening adverse event, inpatient hospitalization or prolongation of existing hospitalization, a persistent or significant incapacity or substantial disruption of the ability to conduct normal life functions, or a congenital anomaly/birth defect, or, when, based upon appropriate medical judgment they may jeopardize the participant and may require medical or surgical intervention to prevent one of the outcomes listed in this definition.
Time frame: Day 1 through Day 15
The solicited local reactogenicity events included runny nose, stuffy nose/congestion, nasal pain/irritation, epistaxis, sneezing, sinus pressure/pain, sore/irritated throat, cough, and shortness of breath/wheezing.
Time frame: Day 1 through Day 15
The solicited systemic reactogenicity events included fever, feverishness, fatigue, malaise, myalgia, arthralgia, headache, and rash/hypersensitivity.
Time frame: Day 1 through Day 29
Adverse events were defined as any untoward medical occurrence in a patient or clinical investigation participant administered a pharmaceutical product regardless of its causal relationship to the study treatment. Unsolicited non-serious AEs were documented and reported from the time of vaccination through Day 29.
Time frame: Day 1 through Day 15
Solicited local reactogenicity events include runny nose, stuffy nose/congestion, nasal pain/irritation, epistaxis, sneezing, sinus pressure/pain, sore/irritated throat, cough, and shortness of breath/wheezing. They were graded as grade 1 (mild), grade 2 (moderate), or grade 3 (severe). Severe local events were those that required medical care or caused significant discomfort that prevented daily activity, including sore/irritated throat preventing eating or drinking and cough preventing sleep. Severe epistaxis events were bleeding events that required a medical encounter. Severe stuffy nose/congestion events caused the participant to be unable to breathe through the nose or to seek medical care.
Time frame: Day 1 through Day 15
Solicited systemic reactogenicity events include fever, feverishness, fatigue, malaise, myalgia, arthralgia, headache, and rash/hypersensitivity. They were graded as grade 1 (mild), grade 2 (moderate), and grade 3 (severe). For all symptoms except rash and fever, an event was considered severe if it caused significant interference and prevented daily activity. Severe rash/hypersensitivity events were those that caused generalized urticaria, anaphylaxis, or angioedema or localized urticaria that required medical encounter. Severe fever was a temperature exceeding 38.9°C.
Time frame: Screening, Day 29, Day 181
Nasal aspirate samples were collected from all participants at screening (baseline), Day 29, and Day 181 to measure total mucosal IgA levels via ELISA assay and mucosal IgA levels to filamentous hemagglutinin (FHA) pertussis antigen via a bead-based assay. Total mucosal IgA levels were reported in µg/mL; antigen-specific IgA results were reported in ELISA units/mL.
The ratio of FHA-IgA to total mucosal IgA was computed for each participant at each time point, and the fold rise from baseline of this ratio was subsequently calculated for each participant. The geometric mean fold rise of the ratio was calculated for each study arm.
Time frame: Screening, Day 29, and Day 181
Nasal aspirate samples were collected from all participants at screening (baseline), Day 29, and Day 181 to measure total mucosal IgA levels via ELISA assay and mucosal IgA levels to fimbriae 2/3 (FIM) pertussis antigen via a bead-based assay. Total mucosal IgA levels were reported in µg/mL; antigen-specific IgA results were reported in ELISA units/mL.
The ratio of FIM-IgA to total mucosal IgA was computed for each participant at each time point, and the fold rise from baseline of this ratio was subsequently calculated for each participant. The geometric mean fold rise of the ratio was calculated for each study arm.
Time frame: Screening, Day 29, and Day 181
Nasal aspirate samples were collected from all participants at screening (baseline), Day 29, and Day 181 to measure total mucosal IgA levels via ELISA assay and mucosal IgA levels to pertactin (PRN) pertussis antigen via a bead-based assay. Total mucosal IgA levels were reported in µg/mL; antigen-specific IgA results were reported in ELISA units/mL.
The ratio of PRN-IgA to total mucosal IgA was computed for each participant at each time point, and the fold rise from baseline of this ratio was subsequently calculated for each participant. The geometric mean fold rise of the ratio was calculated for each study arm.
Time frame: Screening, Day 29, and Day 181
Nasal aspirate samples were collected from all participants at screening (baseline), Day 29, and Day 181 to measure total mucosal IgA levels via ELISA assay and mucosal IgA levels to pertussis toxin (PT) pertussis antigen via a bead-based assay. Total mucosal IgA levels were reported in µg/mL; antigen-specific IgA results were reported in ELISA units/mL.
The ratio of PT-IgA to total mucosal IgA was computed for each participant at each time point, and the fold rise from baseline of this ratio was subsequently calculated for each participant. The geometric mean fold rise of the ratio was calculated for each study arm.
Time frame: Day 1, Day 15, Day 29, and Day 181
Approximately 10 mL of venous blood was collected from participants immediately prior to the first study vaccination on Day 1 (baseline), Day 15, Day 29, and Day 181 to perform a bead-based assay to measure serum IgA and serum IgG levels (in ELISA units/mL) to filamentous hemagglutinin (FHA) pertussis antigen.
The fold rise in FHA-IgA from baseline was calculated for each participant and the geometric mean of the fold rise was calculated for each study arm.
Time frame: Day 1, Day 15, Day 29, and Day 181
Approximately 10 mL of venous blood was collected from participants immediately prior to the first study vaccination on Day 1 (baseline), Day 15, Day 29, and Day 181 to perform a bead-based assay to measure serum IgA levels and serum IgG levels (in ELISA units/mL) to fimbriae 2/3 (FIM) pertussis antigen.
The fold rise in FIM-IgA and FIM-IgG from baseline was calculated for each participant and the geometric mean of the fold rise was calculated for each study arm.
Time frame: Day 1, Day 15, Day 29, and Day 181
Approximately 10 mL of venous blood was collected from participants immediately prior to the first study vaccination on Day 1 (baseline), Day 15, Day 29, and Day 181 to perform a bead-based assay to measure serum IgA and serum IgG levels (in ELISA units/mL) to pertactin (PRN) pertussis antigen.
The fold rise in PRN-IgA and PRN-IgG from baseline was calculated for each participant and the geometric mean of the fold rise was calculated for each study arm.
Time frame: Day 1, Day 15, Day 29, and Day 181
Approximately 10 mL of venous blood was collected from participants immediately prior to the first study vaccination on Day 1 (baseline), Day 15, Day 29, and Day 181 to perform a bead-based assay to measure serum IgA and serum IgG levels (in ELISA units/mL) to pertussis toxin (PT) pertussis antigen.
The fold rise in PT-IgA and PT-IgG from baseline was calculated for each participant and the geometric mean of the fold rise was calculated for each study arm.
Time frame: Day 1, Day 15, Day 29, and Day 181
Approximately 10 mL of venous blood was collected from participants immediately prior to the first study vaccination on Day 1 (baseline), Day 15, Day 29, and Day 181 to measure serum IgA and serum IgG levels (in ELISA units/mL) to fimbriae 2/3 (FIM) pertussis antigen via a bead-based assay. The geometric mean FIM-IgA titer and FIM-IgG titer were calculated for each study arm.
Time frame: Day 1, Day 15, Day 29, and Day 181
Approximately 10 mL of venous blood was collected from participants immediately prior to the first study vaccination on Day 1 (baseline), Day 15, Day 29, and Day 181 to measure serum IgA levels and serum IgG levels (in ELISA units/mL) to pertactin (PRN) pertussis antigen via a bead-based assay. The geometric mean PRN-IgA titer and PRN-IgG titer were calculated for each study arm.
Time frame: Day 1, Day 15, Day 29, and Day 181
Approximately 10 mL of venous blood was collected from participants immediately prior to the first study vaccination on Day 1 (baseline), Day 15, Day 29, and Day 181 to measure serum IgA levels and serum IgG levels (in ELISA units/mL) to pertussis toxin (PT) pertussis antigen via a bead-based assay. The geometric mean PT-IgA titer and PT-IgG titer were calculated for each study arm.
Time frame: Day 15, Day 29, and Day 181
Approximately 10 mL of venous blood was collected from participants immediately prior to the first study vaccination on Day 1 (baseline), Day 15, Day 29, and Day 181 to measure via a bead-based assay serum IgA and serum IgG levels (in ELISA units/mL) to pertussis toxin, filamentous hemagglutinin, pertactin, and fimbriae 2/3 pertussis antigens.
Seroconversion was defined as at least a 2-fold rise in antigen-specific IgA or antigen-specific IgG levels post-baseline compared to baseline levels. The percentage of participants who seroconverted to at least one pertussis antigen at each and across immunogenicity timepoints (Day 15, Day 29, and Day 181) was calculated.
Time frame: Day 15, Day 29, and Day 181
Approximately 10 mL of venous blood was collected from participants immediately prior to the first study vaccination on Day 1 (baseline), Day 15, Day 29, and Day 181 to measure via a bead-based assay serum IgA and serum IgG levels (in ELISA units/mL) to pertussis toxin, filamentous hemagglutinin, pertactin, and fimbriae 2/3 pertussis antigens.
Seroconversion was defined as at least a 2-fold rise in antigen-specific IgA levels or antigen-specific IgG levels post-baseline compared to baseline levels. The percentage of participants who seroconverted to at least two pertussis antigens at each and across all immunogenicity timepoints (Day 15, Day 29, and Day 181) was calculated.
Time frame: Day 29 and Day 181
Nasal aspirate samples were collected from all participants at screening (baseline), Day 29, and Day 181 to measure total mucosal IgA levels via ELISA assay and mucosal IgA levels to pertussis vaccine antigens via a bead-based assay. Total mucosal IgA levels were reported in µg/mL; antigen-specific IgA results were reported in ELISA units/mL.
The titer ratio of antigen-specific IgA to total mucosal IgA was computed for each participant at each time point, and the fold rise from baseline of this ratio was subsequently calculated for each participant.
Seroconversion was defined as at least a 2-fold rise in antigen-specific titer ratios post-baseline compared to baseline titer ratios. The percentage of participants who seroconverted to at least one pertussis antigen at each and any immunogenicity timepoint was calculated.
Time frame: Day 29 and Day 46
Colonization of live B. pertussis organism was assessed from a nasopharyngeal swab performed 28 days after vaccine administration (Day 29) to ensure all participants were cleared of colonization. Standard microbiologic techniques were used to assess the presence of B. pertussis by culture.
If any participants were positive for B. pertussis culture at Day 29, they were asked to return at Day 46 for a repeat culture. If the participant was not positive for B. pertussis at Day 29, no subsequent nasopharyngeal samples for culture were collected.
Time frame: Day 15, Day 29, and Day 181
Approximately 10 mL of venous blood was collected from participants immediately prior to the first study vaccination on Day 1 (baseline), Day 15, Day 29, and Day 181 to measure via a bead-based assay serum IgA levels and serum IgG levels (in ELISA units/mL) to filamentous hemagglutinin (FHA) pertussis antigen.
Seroconversion was defined as at least a 2-fold rise in antigen-specific IgA and IgG levels post-baseline compared to baseline levels. The percentage of participants who seroconverted to FHA-IgA and FHA-IgG at any and each immunogenicity timepoint (Day 15, Day 29, and Day 181) was calculated.
Time frame: Day 15, Day 29, and Day 181
Approximately 10 mL of venous blood was collected from participants immediately prior to the first study vaccination on Day 1 (baseline), Day 15, Day 29, and Day 181 to measure via a bead-based assay serum IgA and serum IgG levels (in ELISA units/mL) to fimbriae 2/3 (FIM) pertussis antigen.
Seroconversion was defined as at least a 2-fold rise in antigen-specific IgA levels and IgG levels post-baseline compared to baseline levels. The percentage of participants who seroconverted to FIM-IgA or FIM-IgG at any and each immunogenicity timepoint (Day 15, Day 29, or and Day 181) was calculated.
Time frame: Screening, Day 29, Day 181
Nasal aspirate samples were collected from all participants at screening (baseline), Day 29, and Day 181 to measure total mucosal IgA levels via ELISA assay and mucosal IgA levels to filamentous hemagglutinin (FHA) pertussis antigen via a bead-based assay. Total mucosal IgA levels were reported in µg/mL; antigen-specific IgA results were reported in ELISA units/mL.
The ratio of FHA-IgA to total mucosal IgA was computed for each participant and the geometric mean of the ratio was calculated for each study arm.
Time frame: Screening, Day 29, Day 181
Nasal aspirate samples were collected from all participants at screening (baseline), Day 29, and Day 181 to measure total mucosal IgA levels via ELISA assay and mucosal IgA levels to fimbriae 2/3 (FIM) pertussis antigen via a bead-based assay. Total mucosal IgA levels were reported in µg/mL; antigen-specific IgA results were reported in ELISA units/mL.
The ratio of FIM-IgA to total mucosal IgA was computed for each participant and the geometric mean of the ratio was calculated for each study arm.
Time frame: Screening, Day 29, Day 181
Nasal aspirate samples were collected from all participants at screening (baseline), Day 29, and Day 181 to measure total mucosal IgA levels via ELISA assay and mucosal IgA levels to pertactin (PRN) pertussis antigen via a bead-based assay. Total mucosal IgA levels were reported in µg/mL; antigen-specific IgA results were reported in ELISA units/mL.
The ratio of PRN-IgA to total mucosal IgA was computed for each participant and the geometric mean of the ratio was calculated for each study arm.
Time frame: Screening, Day 29, and Day 181
Nasal aspirate samples were collected from all participants at screening (baseline), Day 29, and Day 181 to measure total mucosal IgA levels via ELISA assay and mucosal IgA levels to pertussis toxin (PT) pertussis antigen via a bead-based assay. Total mucosal IgA levels were reported in µg/mL; antigen-specific IgA results were reported in ELISA units/mL.
The ratio of PT-IgA to total mucosal IgA was computed for each participant and the geometric mean of the ratio was calculated for each study arm.
Time frame: Day 1, Day 15, Day 29, and Day 181
Approximately 10 mL of venous blood was collected from participants immediately prior to the first study vaccination on Day 1 (baseline), Day 15, Day 29, and Day 181 to measure serum IgA and serum IgG levels (in ELISA units/mL) to filamentous hemagglutinin (FHA) pertussis antigen via a bead-based assay. The geometric mean FHA-IgA titer and FHA-IgG titer were calculated for each study arm.
Time frame: Day 15, Day 29, and Day 181
Approximately 10 mL of venous blood was collected from participants immediately prior to the first study vaccination on Day 1 (baseline), Day 15, Day 29, and Day 181 to measure via a bead-based assay serum IgA and serum IgG levels (in ELISA units/mL) to pertactin (PRN) pertussis antigen.
Seroconversion was defined as at least a 2-fold rise in antigen-specific IgA and antigen-specific IgG levels post-baseline compared to baseline levels. The percentage of participants who seroconverted to PRN-IgA and PRN-IgG at any and each immunogenicity timepoint (Day 15, Day 29, or Day 181) were calculated.
Time frame: Day 15, Day 29, and Day 181
Approximately 10 mL of venous blood was collected from participants immediately prior to the first study vaccination on Day 1 (baseline), Day 15, Day 29, and Day 181 to measure via a bead-based assay serum IgA and serum IgG levels (in ELISA units/mL) to pertussis toxin (PT) antigen.
Seroconversion was defined as at least a 2-fold rise in antigen-specific IgA/IgG levels post-baseline compared to baseline levels. The percentage of participants who seroconverted to PT-IgA and PT-IgG at any and each immunogenicity timepoint (Day 15, Day 29, or and Day 181) was calculated.
Time frame: Day 29 and Day 181
Nasal aspirate samples were collected from all participants at screening (baseline), Day 29, and Day 181 to measure total mucosal IgA levels via ELISA assay and mucosal IgA levels to filamentous hemagglutinin (FHA) pertussis antigen via a bead-based assay. Total mucosal IgA levels were reported in µg/mL; antigen-specific IgA results were reported in ELISA units/mL.
The titer ratio of antigen-specific IgA to total mucosal IgA was computed for each participant at each time point, and the fold rise from baseline of this ratio was subsequently calculated for each participant.
Seroconversion was defined as at least a 2-fold rise in antigen-specific titer ratios post-baseline compared to baseline titer ratios. The percentage of participants who seroconverted FHA-IgA at each and any immunogenicity timepoint (Day 29 or Day 181) was calculated.
Time frame: Day 29 and Day 181
Nasal aspirate samples were collected from all participants at screening (baseline), Day 29, and Day 181 to measure total mucosal IgA levels via ELISA assay and mucosal IgA levels to fimbriae 2/3 (FIM) pertussis antigen via a bead-based assay. Total mucosal IgA levels were reported in µg/mL; antigen-specific IgA results were reported in ELISA units/mL.
The titer ratio of antigen-specific IgA to total mucosal IgA was computed for each participant at each time point, and the fold rise from baseline of this ratio was subsequently calculated for each participant.
Seroconversion was defined as at least a 2-fold rise in antigen-specific titer ratios post-baseline compared to baseline titer ratios. The percentage of participants who seroconverted FIM-IgA at each and any immunogenicity timepoint (Day 29 and Day 181) was calculated.
Time frame: Day 29 and Day 181
Nasal aspirate samples were collected from all participants at screening (baseline), Day 29, and Day 181 to measure total mucosal IgA levels via ELISA assay and mucosal IgA levels to pertactin (PRN) pertussis antigen via a bead-based assay. Total mucosal IgA levels were reported in µg/mL; antigen-specific IgA results were reported in ELISA units/mL.
The titer ratio of antigen-specific IgA to total mucosal IgA was computed for each participant at each time point, and the fold rise from baseline of this ratio was subsequently calculated for each participant.
Seroconversion was defined as at least a 2-fold rise in antigen-specific titer ratios post-baseline compared to baseline titer ratios. The percentage of participants who seroconverted PRN-IgA at each and any immunogenicity timepoint (Day 29 and Day 181) was calculated.
Time frame: Day 29 and Day 181
Nasal aspirate samples were collected from all participants at screening (baseline), Day 29, and Day 181 to measure total mucosal IgA levels via ELISA assay and mucosal IgA levels to pertussis toxin (PT) pertussis antigen via a bead-based assay. Total mucosal IgA levels were reported in µg/mL; antigen-specific IgA results were reported in ELISA units/mL.
The titer ratio of antigen-specific IgA to total mucosal IgA was calculated for each participant at each time point, and the fold rise from baseline of this ratio was subsequently calculated for each participant.
Seroconversion was defined as at least a 2-fold rise in antigen-specific titer ratios post-baseline compared to baseline titer ratios. The percentage of participants who seroconverted PT-IgA at each immunogenicity timepoint (Day 29 and Day 181) was calculated.
National Institute of Allergy and Infectious Diseases (NIAID)
Nih
A Phase 2A Partially-Blind Placebo Controlled Trial to Evaluate the Safety and Immunogenicity of Live Attenuated, Intranasal B. Pertussis Vaccine (BPZE1) in Healthy Adults
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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