This study aims to address evidence gaps regarding the safety, reactogenicity and immune responses of a heterologous boost of a single dose of Ad26.COV2.S (half or full dose) at pre-specified time intervals in recipients who are documented to have received either 1-dose or 2-doses (primary series completion) of inactivated COVID-19 vaccines, Sinovac and/or Sinopharm.
This is a prospective, multi-center, observer-blind Phase 1/2 adaptive study to assess the safety, reactogenicity, and immunogenicity of a booster dose of Ad26.COV2.S in adults ≥ 18 years of age in Study Part A and Part B. A total of 690 participants will be recruited. If the optional Group (A4) is feasible and enrolled, the total recruitment will be 800 participants. Priority enrolment is given to Groups A1 and A2, followed by Groups A3 and B1. Enrolment of groups are open-label allocation and assessor-masked. The Study is divided into 2 Parts: Part A and B. Study Part A is a prospective, multi-center, assessor-masked Phase 1/2 study to assess a booster dose (3rd dose) of Ad26.COV2.S as an IM injection in the deltoid muscle in adults who have completed the two-dose homologous primary series of inactivated vaccine of Sinovac or Sinopharm, 21 to 35 days apart and who meet eligibility criteria. Participants will receive either the full-dose (5x10\^10 vp) or half-dose (2.5x10\^10 vp) of the study product, and at early (45-75 days) or later (90-240 days) time interval and followed from Visit 1 (V1) to Visit 7 (V7) at 336 days. A total of 580 adult volunteers aged 18 years or older, who have verified vaccination cards with documented completion of homologous primary vaccination series with either two doses of Adsorbed COVID-19 (inactivated) Sinovac (SV) or Sinopharm (SP) vaccine, against original and novel variants of SARS-CoV-2 will be enrolled. A 20% dropout rate is assumed. Enrolment is increased to 360 (300+20% dropout) for the safety assessment, to detect common adverse events with an event rate of 1%. Part B is a prospective, multi-center, open-label, assessor-masked Phase 1/2 heterologous prime-boost study to assess the Ad26.COV2.S (full dose) as the 2nd vaccination in subjects who are documented to all have received the 1st dose of Sinovac or all received the 1st dose of Sinopharm COVID-19 vaccine, with an interval of 28 days or more, followed from Visit 1 (V1) to Visit 7 (V7) at 336 days. Together with the Sponsor, the PIs will decide on the feasibility of enrolment of participants who all have already received 1 dose of Sinopharm or who all have received 1dose of Sinovac, based on current public health policy and vaccine coverage. For safety assessment: Adverse events (AEs) will be systematically collected at all clinic visits. Solicited AEs will be assessed in all subjects immediately (30 minutes) after each injection. Subjects (or with necessary supports) will record solicited AEs daily in the Diary Card for the seven days following injection. If a solicited AE is ongoing at a 7-day post-injection follow-up visit (Visit 2), or occurs after 7 days post-injection, the event will be recorded as AE and continued to be followed as per AE monitoring requirements. Adverse events and special reporting situations, whether serious or non-serious, that are related to study procedures or that are related to non-investigational sponsor products will be reported from the time a signed and dated informed consent form (ICF) is obtained until the end of the study/early withdrawal. All other unsolicited AEs will be reported from the time of vaccination until completion of the participant's last study-related procedure. All AESIs, SAEs, and AEs leading to discontinuation from the study (regardless of the causal relationship) are to be reported from the moment of vaccination until completion of the participant's last study related procedure. For immunological assessment: Primary objectives 1. To assess the IgG immune response against the Spike protein of SARS-CoV-2, measured by ELISA and compared with baseline (pre-boost titer) at Days 28, 84, 168 and 336 following either half dose (2.5x10\^10 virus particles (vp)) or full dose (5x10\^10 vp) of Ad26.COV2.S vaccination at pre-specified time intervals in adults who have already received either one-dose or two-doses of an inactivated COVID-19 vaccine. 2. To assess a subset for functional (neutralizing) humoral immune responses elicited by each of the regimens as measured by pseudovirus neutralization assay, IgG at baseline, Days 28, 84, 168 and 336 following Ad26.COV2.S vaccination. Secondary objective 1\. To assess a subset for functional (neutralizing) humoral immune responses elicited by each of the regimens as measured by microneutralization neutralization assay, IgG at baseline, Days 28, 84, 168 and 336 following Ad26.COV2.S vaccination. Exploratory Objectives 1. To characterize PCR-confirmed COVID-19 breakthrough infections following booster vaccination by assessing anti-S and anti-N IgG. 2. To characterize cellular immune responses including Th1/Th2. 3. To consider statistical tests of noninferiority in comparing the different study arms. 4. To assess Adenovirus 26 neutralizing antibodies at baseline if feasible. Study duration: Subjects will be followed for approximately 336 days following Ad26.COV2.S vaccination. The total study period will be 18 months, including 12-month follow-up period. The Clinical Data Management System, including eCRFs, statistical analysis and data archival are under the responsibility of the center of excellence for Biomedical and Public Health Informatics (BIOPHICS), the center of data management for clinical research at the Faculty of Tropical Medicine, Mahidol University. Based on the final protocol of the study, a comprehensive set of CRFs/eCRFs will be prepared to capture all the relevant data required for analysis and reporting. Information about COVID-19 disease, correlates of immunity, safety, and local epidemiology and public health context regarding the new SARS-CoV-2 virus are rapidly evolving during the pandemic. Therefore, it is critical to recognize that the approach outlined in this document may be adapted as new data, expert consensus and public health policies evolve.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
PREVENTION
Masking
SINGLE
Enrollment
690
A booster dose (3rd dose) of Ad26.COV2.S as an IM injection in the deltoid muscle in adults.
A booster dose (3rd dose) of Ad26.COV2.S as an IM injection in the deltoid muscle in adults.
A booster dose (2nd dose) of Ad26.COV2.S as an IM injection in the deltoid muscle in adults.
Vaccine Trial Centre, Faculty of Tropical Medicine, Mahidol University, 420/6 Ratchawithi Road, Ratchathewi,
Bangkok, Thailand
RECRUITINGFrequency of solicited reportable local adverse event after vaccination
Frequency and percentage of solicited reportable local adverse events (pain or tenderness, erythema, swelling or induration) of vaccination
Time frame: Day 0 through Day 7
Frequency of solicited reportable systemic adverse event after vaccination
Frequency and percentage of solicited reportable systemic adverse events (fever, headache, fatigue or malaise, myalgia, arthralgia, nausea or vomitting) of vaccination
Time frame: Day 0 through Day 7
Frequency of all unsolicited AEs
Frequency and percentage of all unsolicited AEs
Time frame: : Day 0 through Day 336
GMT Anti-S IgG at baseline
GMT Anti-S IgG at baseline
Time frame: Day 0
GMT Anti-S IgG at 7 days after vaccination in subset subjects
GMT Anti-S IgG at 7 days after vaccination in subset subjects
Time frame: Day 7
GMT Anti-S IgG at 14 days after vaccination in subject subjects
GMT Anti-S IgG at 14 days after vaccination in subset subjects
Time frame: Day 14
GMT Anti-S IgG at 28 days after vaccination
GMT Anti-S IgG at 28 days after vaccination
Time frame: Day 28
GMT Anti-S IgG at 84 days after vaccination
GMT Anti-S IgG at 84 days after vaccination
Time frame: Day 84
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GMT Anti-S IgG at 168 days after vaccination
GMT Anti-S IgG at 168 days after vaccination
Time frame: Day 168
GMT Anti-S IgG at 336 days after vaccination
GMT Anti-S IgG at 336 days after vaccination
Time frame: Day 336
GMFR changed from baseline in anti-S IgG GMT at 28 days after vaccination
GMFR changed from baseline in anti-S IgG GMT at 28 days vaccination
Time frame: Day 28
GMFR changed from baseline in anti-S IgG GMT at 84 days after vaccination
GMFR changed from baseline in anti-S IgG GMT at 84 days vaccination
Time frame: Day 84
GMFR changed from baseline in anti-S IgG GMT at 168 days after vaccination
GMFR changed from baseline in anti-S IgG GMT at 168 days vaccination
Time frame: Day 168
GMFR changed from baseline in anti-S IgG GMT at 336 days after vaccination
GMFR changed from baseline in anti-S IgG GMT at 336 days vaccination
Time frame: Day 336
Anti-S IgG Seroresponses changed from baseline at 28 days after vaccination
Frequency and percentage of participants with seroresponses in anti-S IgG titer as defined by (1) a ≥ 4-fold increase from baseline at 28 days after vaccination
Time frame: Day 28
Anti-S IgG Seroresponses changed from baseline at 84 days after vaccination
Frequency and percentage of participants with seroresponses in anti-S IgG titer as defined by (1) a ≥ 4-fold increase from baseline at 84 days after vaccination
Time frame: Day 84
Anti-S IgG Seroresponses changed from baseline at 168 days after vaccination
Frequency and percentage of participants with seroresponses in anti-S IgG titer as defined by (1) a ≥ 4-fold increase from baseline at 168 days after vaccination
Time frame: Day 168
Anti-S IgG Seroresponses changed from baseline at 336 days after vaccination
Frequency and percentage of participants with seroresponses in anti-S IgG titer as defined by (1) a ≥ 4-fold increase from baseline at 336 days after vaccination
Time frame: Day 336
GMT measured by pseudovirus neutralization assay (pNA) and microneutralization assay (mNA) Neutralizing antibody titer 50 at baseline
GMT measured by pseudovirus neutralization assay (pNA) and microneutralization assay (mNA) Neutralizing antibody titer 50 at baseline
Time frame: Day 0
GMT measured by pseudovirus neutralization assay (pNA) and microneutralization assay (mNA) Neutralizing antibody titer 50 at 28 days after Ad26.COV2.S vaccination
GMT measured by pseudovirus neutralization assay (pNA) and microneutralization assay (mNA) Neutralizing antibody titer 50 at 28 days after Ad26.COV2.S vaccination
Time frame: Day 28
GMT measured by pseudovirus neutralization assay (pNA) and microneutralization assay (mNA) Neutralizing antibody titer 50 at 84 days after Ad26.COV2.S vaccination
GMT measured by pseudovirus neutralization assay (pNA) and microneutralization assay (mNA) Neutralizing antibody titer 50 at 84 days after Ad26.COV2.S vaccination
Time frame: Day 84
GMT measured by pseudovirus neutralization assay (pNA) and microneutralization assay (mNA) Neutralizing antibody titer 50 at 168 days after Ad26.COV2.S vaccination
GMT measured by pseudovirus neutralization assay (pNA) and microneutralization assay (mNA) Neutralizing antibody titer 50 at 168 days after Ad26.COV2.S vaccination
Time frame: Day 168
GMT measured by pseudovirus neutralization assay (pNA) and microneutralization assay (mNA) Neutralizing antibody titer 50 at 336 days after Ad26.COV2.S vaccination
GMT measured by pseudovirus neutralization assay (pNA) and microneutralization assay (mNA) Neutralizing antibody titer 50 at 336 days after Ad26.COV2.S vaccination
Time frame: Day 336
GMFR changed from baseline (pre-boost titer) in NT50 measured by pNA and mNA against SARS-CoV-2 Delta and Wildtype at 28 days after Ad26.COV2.S vaccination
GMFR changed from baseline (pre-boost titer) in NT50 measured by pseudovirus neutralization assay (pNA) and microneutralization assay (mNA) against SARS-CoV-2 Delta and Wildtype) at 28 days after Ad26.COV2.S vaccination among those positives by pNA assay
Time frame: Day 28
GMFR changed from baseline (pre-boost titer) in NT50 measured by pNA and mNA against SARS-CoV-2 Delta and Wildtype at 84 days after Ad26.COV2.S vaccination
GMFR changed from baseline (pre-boost titer) in NT50 measured by pseudovirus neutralization assay (pNA) and microneutralization assay (mNA) against SARS-CoV-2 Delta and Wildtype) at 84 days after Ad26.COV2.S vaccination among those positives by pNA assay
Time frame: Day 84
GMFR changed from baseline (pre-boost titer) in NT50 measured by pNA and mNA against SARS-CoV-2 Delta and Wildtype at 28 days after Ad26.COV2.S vaccination
GMFR changed from baseline (pre-boost titer) in NT50 measured by pseudovirus neutralization assay (pNA) and microneutralization assay (mNA) against SARS-CoV-2 Delta and Wildtype) at 168 days after Ad26.COV2.S vaccination among those positives by pNA assay
Time frame: Day 168
GMFR changed from baseline (pre-boost titer) in NT50 measured by pNA and mNA against SARS-CoV-2 Delta and Wildtype at 28 days after Ad26.COV2.S vaccination
GMFR changed from baseline (pre-boost titer) in NT50 measured by pseudovirus neutralization assay (pNA) and microneutralization assay (mNA) against SARS-CoV-2 Delta and Wildtype) at 336 days after Ad26.COV2.S vaccination among those positives by pNA assay
Time frame: Day 336