A Clinical Trial to Assess the Immunogenicity and Safety Following a Heterologous Booster Dose of Recombinant SARS-CoV-2 Vaccine (CHO Cell) LYB001 in Adults 18-59 Years of Age Completed Two- or Three-dose Inactivated COVID-19 Vaccine
Overview
- Phase
- Early Phase 1
- Intervention
- Not specified
- Conditions
- COVID-19
- Sponsor
- Guangzhou Patronus Biotech Co., Ltd.
- Enrollment
- 120
- Locations
- 1
- Primary Endpoint
- The Geometric Neutralizing titers (GMT) of neutralizing antibodies (Nabs) and S protein-binding antibodies at 28 days after booster vaccination
- Status
- Active, not recruiting
- Last Updated
- 2 years ago
Overview
Brief Summary
The goal of this clinical trial is to assess the immunogenicity and safety following a heterologous booster dose of recombinant SARS-CoV-2 vaccine (CHO cell) LYB001 in adults 18-59 years of age completed two- or three-dose inactivated COVID-19 vaccine. The main questions it aims to answer are:
- whether LYB001 group is better on immunogenicity than the control group of inactivated vaccine?
- whether LYB001 group has better performance on safety than the control group of inactivated vaccine, such as the lower adverse reaction rate?
Detailed Description
Primary Objectives 1. To assess the immunogenicity profile following a heterologous booster dose of LYB001 as compared to a homologous booster dose of inactivated vaccine in adults 18-59 years of age completed two- or three-dose primary series of inactivated vaccine. 2. To assess the safety profile following a heterologous booster dose of LYB001 as compared to a homologous booster dose of inactivated vaccine in adults 18-59 years of age completed two- or three-dose primary series of inactivated vaccine. Secondary Objectives 1) To assess the immune durability following a heterologous booster dose of LYB001 as compared to a homologous booster dose of inactivated vaccine in adults 18-59 years of age completed two- or three-dose primary series of inactivated vaccine. Exploratory objectives 1) To assess the cellular immune response following a heterologous booster dose of LYB001 as compared to a homologous booster dose of inactivated vaccine in adults 18-59 years of age completed two- or three-dose primary series of inactivated vaccine.
Investigators
Eligibility Criteria
Inclusion Criteria
- •Healthy subjects aged 18-59 years, including both males and females;
- •Subjects who agree to participate in this clinical trial voluntarily and sign the informed consent form, are capable of providing valid identification, understanding and complying with the requirements of the clinical protocol.
- •Subjects who have completed two- or three-dose inactivated COVID-19 vaccine at 6-12 months earlier.
- •For female participants of childbearing potential, effective contraception measures should be used within 2 weeks prior to participation in this study and the results of pregnancy test is required to be negative. Participants should voluntarily agree to use effective contraceptive measures from the time of signing the informed consent form to the end of the study (effective contraceptive measures including oral contraceptives (excluding emergency contraceptives), injectable or implantable contraceptives, sustained-release topical contraceptives, hormonal patches, intrauterine device, sterilization, abstinence, condoms (for males), diaphragms, cervical caps, etc.).
Exclusion Criteria
- •Receipt of any COVID-19 prophylactic medication (e.g., receipt history of any approved or under developing COVID-19 vaccines other than inactivated vaccine), or previous vaccination history other than other than two or three doses of inactivated vaccination;
- •Abnormal vital signs with clinical significance prior to enrolment, with systolic blood pressure ≥140 mmHg or diastolic blood pressure ≥90 mmHg, or axillary body temperature ≥ 37.3°C prior to enrolment; abnormal results of laboratory screening tests which was clinically significant judged by clinicians prior to enrolment.
- •Known allergy, or history of anaphylaxis or other serious adverse reactions to vaccines or their excipients;
- •History of severe acute respiratory syndrome (SARS) or Middle East respiratory syndrome (MERS);
- •History of COVID-19, or history of close contact with confirmed/suspected COVID-19 patients, or positive results for SARS-CoV-2 nucleic acid tests at screening;
- •Administration of antipyretics, painkillers or anti-allergy drugs within 24 hours prior to enrolment;
- •Receipt of any live attenuated vaccine within 28 days prior to vaccination and other vaccines, such as subunit and inactivated vaccine within 14 days prior to vaccination;
- •Receipt of blood or blood-related products, including immunoglobulins, within 3 months prior to vaccination; or any planned use during the study period.
- •Subjects with the following diseases:
- •Any acute diseases or acute attacks of chronic diseases within 7 days prior to enrolment;
Outcomes
Primary Outcomes
The Geometric Neutralizing titers (GMT) of neutralizing antibodies (Nabs) and S protein-binding antibodies at 28 days after booster vaccination
Time Frame: 28 days after booster vaccination
The Geometric Neutralizing titers (GMT) with Clopper-Pearson 95% CIs of neutralizing antibodies (Nabs) against prototype SARS-CoV-2 and circulating VOCs using Vesicular stomatitis virus (VSV)-based pseudovirus neutralizing assays, S protein-binding antibodies using ELISA assays, at 28 days after the booster immunization will be calculated for each group, respectively.
The Geometric mean fold rise (GMFR) of neutralizing antibodies (Nabs) and S protein-binding antibodies at 28 days after the booster immunization compared with the baseline
Time Frame: 28 days after booster vaccination
The Geometric mean fold rise (GMFR) with Clopper-Pearson 95% CIs of neutralizing antibodies (Nabs) against prototype SARS-CoV-2 and circulating VOCs using Vesicular stomatitis virus (VSV)-based pseudovirus neutralizing assays, S protein-binding antibodies using ELISA assays, at 28 days after the booster immunization will be calculated for each group, compared with the baseline, respectively.
The Seroconversion (SCRs) of neutralizing antibodies (Nabs) and S protein-binding antibodies at 14 days after the booster immunization
Time Frame: 14 days after booster vaccination
The Seroconversion (SCRs) with Clopper-Pearson 95% CIs of neutralizing antibodies (Nabs) against prototype SARS-CoV-2 and circulating VOCs using Vesicular stomatitis virus (VSV)-based pseudovirus neutralizing assays, S protein-binding antibodies using ELISA assays, at 14 days after the booster immunization will be calculated for each group, respectively.
The frequencies and percentages of unsolicitedadverse events within 8-28 days after booster vaccination
Time Frame: within 8-28 days after booster vaccination
Statistical description of solicited and unsolicited adverse events (AEs) will be listed. Frequencies and percentages of AEs, including overall AEs, AEs related to vaccination, AEs classified as grade 3 or worse, AEs classified as grade 3 or worse that related to vaccination, AEs leading to participant's withdrawal, AEs leading to participant's withdrawal that related to vaccination will be presented. Fisher's exact test will be used to compare the differences between the groups. Unsolicited AEs within 8-28 days after vaccination will be collected.
The Seroconversion (SCRs) of neutralizing antibodies (Nabs) and S protein-binding antibodies at 28 days after the booster immunization
Time Frame: 28 days after booster vaccination
The Seroconversion (SCRs) with Clopper-Pearson 95% CIs of neutralizing antibodies (Nabs) against prototype SARS-CoV-2 and circulating VOCs using Vesicular stomatitis virus (VSV)-based pseudovirus neutralizing assays, S protein-binding antibodies using ELISA assays, at 28 days after the booster immunization will be calculated for each group, respectively.
The Geometric Neutralizing titers (GMT) of neutralizing antibodies (Nabs) and S protein-binding antibodies at 14 days after booster vaccination
Time Frame: 14 days after booster vaccination
The Geometric Neutralizing titers (GMT) with Clopper-Pearson 95% CIs of neutralizing antibodies (Nabs) against prototype SARS-CoV-2 and circulating VOCs using Vesicular stomatitis virus (VSV)-based pseudovirus neutralizing assays, S protein-binding antibodies using ELISA assays, at 14 days after the booster immunization will be calculated for each group, respectively.
The Geometric mean fold rise (GMFR) of neutralizing antibodies (Nabs) and S protein-binding antibodies at 14 days after the booster immunization compared with the baseline
Time Frame: 14 days after booster vaccination
The Geometric mean fold rise (GMFR) with Clopper-Pearson 95% CIs of neutralizing antibodies (Nabs) against prototype SARS-CoV-2 and circulating VOCs using Vesicular stomatitis virus (VSV)-based pseudovirus neutralizing assays, S protein-binding antibodies using ELISA assays, at 14 days after the booster immunization will be calculated for each group, compared with the baseline, respectively.
The frequencies and percentages of adverse events within 30 minutes after booster vaccination
Time Frame: within 30 minutes after booster vaccination
Statistical description of solicited and unsolicited adverse events (AEs) will be listed. Frequencies and percentages of AEs, including overall AEs, AEs related to vaccination, AEs classified as grade 3 or worse, AEs classified as grade 3 or worse that related to vaccination, AEs leading to participant's withdrawal, AEs leading to participant's withdrawal that related to vaccination will be presented. Fisher's exact test will be used to compare the differences between the groups. Solicited and unsolicited AEs within 30 mins after vaccination will be collected.
The frequencies and percentages of adverse events within 7 days after booster vaccination
Time Frame: within 7 days after booster vaccination
Statistical description of solicited and unsolicited adverse events (AEs) will be listed. Frequencies and percentages of AEs, including overall AEs, AEs related to vaccination, AEs classified as grade 3 or worse, AEs classified as grade 3 or worse that related to vaccination, AEs leading to participant's withdrawal, AEs leading to participant's withdrawal that related to vaccination will be presented. Fisher's exact test will be used to compare the differences between the groups. Solicited and unsolicited AEs within 7 days after vaccination will be collected.
Secondary Outcomes
- The Geometric mean fold rise (GMFR) of neutralizing antibodies (Nabs) and S protein-binding antibodies at 12 months after booster vaccination compared with the baseline(12 months after booster vaccination)
- The Seroconversion (SCRs) of neutralizing antibodies (Nabs) and S protein-binding at 3 months after booster vaccination(3 months after booster vaccination)
- The Seroconversion (SCRs) of neutralizing antibodies (Nabs) and S protein-binding at 6 months after booster vaccination(6 months after booster vaccination)
- The Geometric Neutralizing titers (GMT) of neutralizing antibodies (Nabs) and S protein-binding antibodies at 3 months after booster vaccination(3 months after booster vaccination)
- The Geometric Neutralizing titers (GMT) of neutralizing antibodies (Nabs) and S protein-binding antibodies at 6 months after booster vaccination(6 months after booster vaccination)
- The Geometric Neutralizing titers (GMT) of neutralizing antibodies (Nabs) and S protein-binding antibodies at 12 months after booster vaccination(12 months after booster vaccination)
- The Seroconversion (SCRs) of neutralizing antibodies (Nabs) and S protein-binding at 12 months after booster vaccination(12 months after booster vaccination)
- The Geometric mean fold rise (GMFR) of neutralizing antibodies (Nabs) and S protein-binding antibodies at 3 months after booster vaccination compared with the baseline(3 months after booster vaccination)
- The Geometric mean fold rise (GMFR) of neutralizing antibodies (Nabs) and S protein-binding antibodies at 6 months after booster vaccination compared with the baseline(6 months after booster vaccination)