BNT162b2
BiologicalIntramuscular injection
NCT Number: NCT04713553
This is a Phase 3, randomized, observer-blind study in healthy individuals.
The primary study will evaluate the safety, tolerability, and immunogenicity of the SARS-CoV-2 RNA vaccine candidate (BNT162b2):
* As a 30-microgram dose, administered from 1 of 4 manufacturing lots (batches) * As a 20-microgram dose, administered from 1 of the manufacturing lots * As a 2-dose (separated by 21 days) schedule * In people 12 through 50 years of age
The booster study will evaluate the safety, tolerability, and immunogenicity of 2 SARS-CoV-2 RNA vaccine candidates (BNT162b2 and BNT162b2.B.1.351):
* Each as a 30-microgram dose * Each as a 1-dose booster vaccine, administered approximately 3 months after Dose 2 * In people 18 through 50 years of age
Looking for future studies?
Notify Me12 year–50 year
All sexes
Interventional
Phase 3
Kaiser Permanente Oakland, Oakland, California, United States
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
. Immunocompromised individuals with known or suspected immunodeficiency, as determined by history and/or laboratory/physical examination.
Additional Exclusion Criteria for the Booster study:
Intramuscular injection
Intramuscular injection
Time frame: 1 Month after Dose 2
Geometric mean concentration of full-length S-binding IgG level for individual US lots (US lots 1, 2, and 3) was determined and reported in the descriptive section. Assay results below the lower limit of quantitation (LLOQ) were set to 0.5*LLOQ. GMRs were reported in the statistical analysis section and was calculated as ratio of Geometric Mean Concentrations (GMCs) of individual US Lots BNT162b2 30 mcg: US Lot 1, BNT162b2 30 mcg: US Lot 2 and BNT162b2 30 mcg: US Lot 3.
Time frame: 1 Month after Dose 2
Geometric mean concentration of full-length S-binding IgG level for EU lot and pooled US lots (BNT162b2 30 mcg: US Lot 1, BNT162b2 30 mcg: US Lot 2 and BNT162b2 30 mcg: US Lot 3 reporting arm) were determined and reported in the descriptive section. Assay results below the LLOQ were set to 0.5*LLOQ. GMRs were reported in the statistical analysis section and was calculated as ratios of GMCs of BNT162b2 30 mcg: EU Lot and pooled US Lots (BNT162b2 30 mcg: US Lot 1, BNT162b2 30 mcg: US Lot 2 and BNT162b2 30 mcg: US Lot 3 reporting arm).
Time frame: 1 Month after Dose 2
Geometric mean titer for SARS-CoV-2 neutralizing titers for 20 mcg dose and 30 mcg dose of US Lot 1 was determined and reported in the descriptive section. GMTs and 2-sided 95% CIs were calculated by exponentiating the least square (LS) mean of the titers and corresponding CIs based on linear regression model. Assay results below the LLOQ were set to 0.5*LLOQ. GMRs were reported in the statistical analysis section and were calculated as the ratio of geometric mean titer of the 20-mcg dose (US Lot 1) to the geometric mean titer of the 30 mcg dose (US Lot 1).
Time frame: Within 7 days after Dose 1
Local reactions were collected by the participant using an electronic diary. Local reactions included redness, swelling, and pain at injection site after Dose 1. Redness, swelling, and pain at injection site after Dose 1 were reported.
Time frame: Within 7 days after Dose 2
Local reactions were collected by the participant using an electronic diary. Local reactions included redness, swelling, and pain at injection site after Dose 2. Redness, swelling, and pain at injection site after Dose 2 were reported.
Time frame: Within 7 days after any dose
Local reactions were collected by the participant using an electronic diary. Local reactions included redness, swelling, and pain at injection site after each vaccination. Redness, swelling, and pain at injection site after any dose were reported.
Time frame: Within 7 days after Dose 3
Local reactions were collected by the participant using an electronic diary. Local reactions included redness, swelling, and pain at injection site after Dose 3. Redness, swelling, and pain at injection site after Dose 3 were reported.
Time frame: Within 7 days after Dose 1
Systemic events were reported using an electronic diary. Fever was defined as temperature >=38.0 degree Celsius (C) and categorized as >=38.0 to 38.4 C; >38.4 to 38.9 C; >38.9 to 40.0 C; >40.0 C. Systemic events including fever, fatigue, headache, chills, new or worsened muscle pain, new or worsened joint pain, vomiting, diarrhea, and use of antipyretic/analgesic medication after Dose 1 were reported.
Time frame: Within 7 days after Dose 2
Systemic events were reported using an electronic diary. Fever was defined as temperature >=38.0 C and categorized as >=38.0 to 38.4 C; >38.4 to 38.9 C; >38.9 to 40.0 C; >40.0 C. Systemic events including fever, fatigue, headache, chills, new or worsened muscle pain, new or worsened joint pain, vomiting, diarrhea, and use of antipyretic/analgesic medication after Dose 2 were reported.
Time frame: Within 7 days after any dose
Systemic events were reported using an electronic diary. Fever was defined as temperature >=38.0 C and categorized as >=38.0 to 38.4 C; >38.4 to 38.9 C; >38.9 to 40.0 C; >40.0 C. Systemic events including fever, fatigue, headache, chills, new or worsened muscle pain, new or worsened joint pain, vomiting, diarrhea, and use of antipyretic/analgesic medication after any dose were reported.
Time frame: Within 7 days after Dose 3
Systemic events were reported using an electronic diary. Fever was defined as temperature >=38.0 C and categorized as >=38.0 to 38.4 C; >38.4 to 38.9 C; >38.9 to 40.0 C; >40.0 C. Systemic events including fever, fatigue, headache, chills, new or worsened muscle pain, new or worsened joint pain, vomiting, diarrhea, and use of antipyretic/analgesic medication after Dose 3 were reported.
Time frame: Day 1 of Dose 1 up to 1 Month after Dose 2 (for a maximum of 2 months)
An AE was any untoward medical occurrence in a participant who received investigational product without regard to possibility of causal relationship. SAE was an AE resulting in any of the following outcomes or deemed significant for any other reason: death; initial or prolonged inpatient hospitalization; life-threatening experience (immediate risk of dying); persistent or significant disability/incapacity; congenital anomaly or that was considered to be an important medical event.
Time frame: From Dose 3 to 1 Month after Dose 3 (for a maximum of 35 days)
An AE was any untoward medical occurrence in a participant who received investigational product without regard to possibility of causal relationship. SAE was an AE resulting in any of the following outcomes or deemed significant for any other reason: death; initial or prolonged inpatient hospitalization; life-threatening experience (immediate risk of dying); persistent or significant disability/incapacity; congenital anomaly or that was considered to be an important medical event.
Time frame: Baseline (prior to Dose 1 of Primary study)
GMTs and 2-sided 95% CIs were calculated by exponentiating the mean logarithm of the titers and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5 × LLOQ.
Time frame: 1 Month after Dose 2 of primary study
GMTs and 2-sided 95% CIs were calculated by exponentiating the mean logarithm of the titers and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5 × LLOQ.
Time frame: Before Dose 3
GMTs and 2-sided 95% CIs were calculated by exponentiating the mean logarithm of the titers and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5 × LLOQ.
Time frame: 1 Week after Dose 3
GMTs and 2-sided 95% CIs were calculated by exponentiating the mean logarithm of the titers and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5 × LLOQ.
Time frame: 1 Month after Dose 3
GMTs and 2-sided 95% CIs were calculated by exponentiating the mean logarithm of the titers and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5 × LLOQ.
Time frame: Baseline (prior to Dose 1 of Primary study)
GMTs and 2-sided 95% CIs were planned to be calculated by exponentiating the mean logarithm of the titers and the corresponding CIs (based on the Student t distribution).
Time frame: 1 Month after Dose 2 of primary study
GMTs and 2-sided 95% CIs were planned to be calculated by exponentiating the mean logarithm of the titers and the corresponding CIs (based on the Student t distribution).
Time frame: Before Dose 3
GMTs and 2-sided 95% CIs were calculated by exponentiating the mean logarithm of the titers and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5 × LLOQ.
Time frame: 1 Week after Dose 3
GMTs and 2-sided 95% CIs were calculated by exponentiating the mean logarithm of the titers and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5 × LLOQ.
Time frame: 1 Month after Dose 3
GMTs and 2-sided 95% CIs were calculated by exponentiating the mean logarithm of the titers and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5 × LLOQ.
Time frame: Baseline (prior to Dose 1 of Primary study)
GMCs were calculated by exponentiating the mean logarithm of the concentrations and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: 1 Month after Dose 2 of primary study
GMCs were calculated by exponentiating the mean logarithm of the concentrations and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: Before Dose 3
GMCs were calculated by exponentiating the mean logarithm of the concentrations and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: 1 Week after Dose 3
GMCs were calculated by exponentiating the mean logarithm of the concentrations and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: 1 Month after Dose 3
GMCs were calculated by exponentiating the mean logarithm of the concentrations and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: From 1 Month after Dose 2 to 1 Week after Dose 3
GMFRs were defined as ratios of the geometric mean concentration of IgG at 1 week after Dose 3 to the geometric mean concentration of IgG at 1 month after dose 2. GMFRs were calculated by exponentiating the mean logarithm of fold rises and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: From 1 Month after Dose 2 to 1 Month after Dose 3
GMFRs were defined as ratios of the geometric mean concentration of IgG at 1 month after Dose 3 to the geometric mean concentration of IgG at 1 month after dose 2. GMFRs were calculated by exponentiating the mean logarithm of fold rises and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: Before Dose 3 to 1 Week after Dose 3
GMFRs were defined as ratios of the geometric mean concentration of IgG at 1 week after Dose 3 to the geometric mean concentration of IgG before dose 3. GMFRs were calculated by exponentiating the mean logarithm of fold rises and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: Before Dose 3 to 1 Month after Dose 3
GMFRs were defined as ratios of the geometric mean concentration of IgG at 1 month after Dose 3 to the geometric mean concentration of IgG before dose 3. GMFRs were calculated by exponentiating the mean logarithm of fold rises and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: From 1 Month after Dose 2 to 1 Week after Dose 3
GMFRs were defined as ratios of the geometric mean titers of SARS-CoV-2 reference-strain at 1 week after Dose 3 to the geometric mean titers of SARS-CoV-2 reference-strain at 1 month after dose 2. GMFRs were calculated by exponentiating the mean logarithm of fold rises and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: From 1 Month after Dose 2 to 1 Month after Dose 3
GMFRs were defined as ratios of the geometric mean titers of SARS-CoV-2 reference-strain at 1 month after Dose 3 to the geometric mean titers of SARS-CoV-2 reference-strain at 1 month after dose 2. GMFRs were calculated by exponentiating the mean logarithm of fold rises and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: Before Dose 3 to 1 Week after Dose 3
GMFRs were defined as ratios of the geometric mean titers of SARS-CoV-2 reference-strain at 1 week after Dose 3 to the geometric mean titers of SARS-CoV-2 reference-strain before dose 3. GMFRs were calculated by exponentiating the mean logarithm of fold rises and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: Before Dose 3 to 1 Month after Dose 3
GMFRs were defined as ratios of the geometric mean titers of SARS-CoV-2 reference-strain at 1 month after Dose 3 to the geometric mean titers of SARS-CoV-2 reference-strain before dose 3. GMFRs were calculated by exponentiating the mean logarithm of fold rises and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: From 1 Month after Dose 2 to 1 Week after Dose 3
GMFRs were defined as ratios of the geometric mean titers of SARS-CoV-2 B.1.351-strain at 1 week after Dose 3 to the geometric mean titers of SARS-CoV-2 B.1.351-strain at 1 month after dose 2. GMFRs were planned to be calculated by exponentiating the mean logarithm of fold rises and the corresponding CIs (based on the Student t distribution).
Time frame: From 1 Month after Dose 2 to 1 Month after Dose 3
GMFRs were defined as ratios of the geometric mean titers of SARS-CoV-2 B.1.351-strain at 1 month after Dose 3 to the geometric mean titers of SARS-CoV-2 B.1.351-strain at 1 month after dose 2. GMFRs were planned to be calculated by exponentiating the mean logarithm of fold rises and the corresponding CIs (based on the Student t distribution).
Time frame: Before Dose 3 to 1 Week after Dose 3
GMFRs were defined as ratios of the geometric mean titers of SARS-CoV-2 B.1.351-strain at 1 week after Dose 3 to the geometric mean titers of SARS-CoV-2 B.1.351-strain before dose 3. GMFRs were calculated by exponentiating the mean logarithm of fold rises and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: Before Dose 3 to 1 Month after Dose 3
GMFRs were defined as ratios of the geometric mean titers of SARS-CoV-2 B.1.351-strain at 1 month after Dose 3 to the geometric mean titers of SARS-CoV-2 B.1.351-strain before dose 3. GMFRs were calculated by exponentiating the mean logarithm of fold rises and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: 1 Month after Dose 2
Seroresponse was defined as greater than equal to (>=) 4-fold increase from baseline (before Dose 1 in primary study) to the specified time point. If the baseline measurement was below LLOQ, a post vaccination measurement of >=4*LLOQ was considered a seroresponse. Exact 2-sided 95% CI was based on the Clopper and Pearson method.
Time frame: Before Dose 3
Seroresponse was defined as >=4-fold increase from baseline (before Dose 1 in primary study) to the specified time point. If the baseline measurement was below LLOQ, a post vaccination measurement of >=4*LLOQ was considered a seroresponse. Exact 2-sided 95% CI was based on the Clopper and Pearson method.
Time frame: 1 Week after Dose 3
Seroresponse was defined as >=4-fold increase from baseline (before Dose 1 in primary study) to the specified time point. If the baseline measurement was below LLOQ, a post vaccination measurement of >=4*LLOQ was considered a seroresponse. Exact 2-sided 95% CI was based on the Clopper and Pearson method.
Time frame: 1 Month after Dose 3
Seroresponse was defined as >=4-fold increase from baseline (before Dose 1 in primary study) to the specified time point. If the baseline measurement was below LLOQ, a post vaccination measurement of >=4*LLOQ was considered a seroresponse. Exact 2-sided 95% CI was based on the Clopper and Pearson method.
Time frame: 1 Month after Dose 2
Seroresponse was defined as >=4-fold increase from baseline (before Dose 1 in primary study) to the specified time point.
Time frame: Before Dose 3
Seroresponse was defined as >=4-fold increase from baseline (before Dose 1 in primary study) to the specified time point.
Time frame: 1 Week after Dose 3
Seroresponse was defined as >=4-fold increase from baseline (before Dose 1 in primary study) to the specified time point.
Time frame: 1 Month after Dose 3
Seroresponse was defined as >=4-fold increase from baseline (before Dose 1 in primary study) to the specified time point.
Time frame: Baseline (before Dose 1), 1 Month after Dose 2
GMCs were calculated by exponentiating the mean logarithm of the concentrations and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5* LLOQ.
Time frame: From Baseline (before Dose 1) up to 1 Month after Dose 2
GMFRs were defined as ratios of the geometric mean concentration of IgG at 1 month after Dose 2 to the geometric mean concentration of IgG at Baseline. GMFRs were calculated by exponentiating the mean logarithm of fold rises and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5*LLOQ.
Time frame: Baseline (before Dose 1), 1 Month after Dose 2
GMTs and 2-sided 95% CIs were calculated by exponentiating the mean logarithm of the titers and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5* LLOQ.
Time frame: From Baseline (before Dose 1) up to 1 Month after Dose 2
GMFRs were defined as ratios of the geometric mean titers of SARS-CoV-2 at 1 month after Dose 2 to the geometric mean titers of SARS-CoV-2 at Baseline. GMFRs were calculated by exponentiating the mean logarithm of fold rises and the corresponding CIs (based on the Student t distribution). Assay results below the LLOQ were set to 0.5* LLOQ.
BioNTech SE
Industry
A PHASE 3, RANDOMIZED, OBSERVER-BLIND STUDY TO EVALUATE THE SAFETY, TOLERABILITY, AND IMMUNOGENICITY OF MULTIPLE PRODUCTION LOTS AND DOSE LEVELS OF THE VACCINE CANDIDATE BNT162b2 AGAINST COVID-19 IN HEALTHY PARTICIPANTS 12 THROUGH 50 YEARS OF AGE AND THE SAFETY, TOLERABILITY, AND IMMUNOGENICITY OF BNT162b2 RNA-BASED COVID-19 VACCINE CANDIDATES AS A BOOSTER DOSE IN HEALTHY PARTICIPANTS 18 THROUGH 50 YEARS OF AGE
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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