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Immunogenicity and Safety of Subunit Vaccine of Plague Vaccine With Two Immunization Regimens

Immunogenicity and Safety of Subunit Vaccine of Plague Vaccine (F1+ rV) With Two Immunization Regimens: A Random Phase 2b Clinical Trial

Status
UNKNOWN
Phases
Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05330624
Enrollment
720
Registered
2022-04-15
Start date
2020-05-08
Completion date
2022-09-20
Last updated
2022-04-15

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Plague

Keywords

Plague vaccine, Immunogenicity, Safety

Brief summary

Plague is a potentially fatal infection in humans caused by the bacterium Yersinia pestis. Pneumonic plague is typically diagnosed in humans with high mortality. It has a long history for plague as an agent of biowarfare, and pose a serious threat to international security. Althought the killed whole-cell plague vaccine and live attenuated vaccine has been licensed. They are rarely used today because of toxicities, limited evidence for efficacy to prevent plague, and limited commercial availability. In the last twenty years, it have focused on recombinant subunit vaccines which were formed F1 and V antigens as the main composition provide greater protection than vaccines comprised of either subunit alone. This study was aim to exploring the safety and immunogenicity of a new type plague subunit vaccine which comprised natural F1 antigen and recombined V antigen (F1+rV) in two immunization regimens.

Detailed description

Plague is a potentially fatal infection in humans caused by the bacterium Yersinia pestis, transmitted naturally from rodent reservoirs to humans via fleas. Human disease may also result from contact with blood or tissues of infected animals or exposure to aerosolized droplets containing bacteria. Pneumonic plague is typically diagnosed in humans with with high mortality. It has a long history for plague as an agent of biowarfare, and pose a serious threat to international security. In human history, there were three outbreaks of plague all over the world, about 200 million people died from the disease. The increasing trend of plague epidemic in recent years, some regions and countries in the world still has the outbreak of the plague. It implied that safety and safe and effective vaccine is urgently to developing. Althought the killed whole-cell plague vaccine and live attenuated vaccine has been licensed, these vaccines cause significant adverse reactions, including fever, headache, malaise, lymphadenopathy, erythema and induration at the injection site with high degree of immune variability. They are rarely used today because of toxicities, limited evidence for efficacy to prevent plague, and limited commercial availability. Based on the researches in the last twenty years, it have focused on recombinant subunit vaccines which were formed F1 and V antigens as the main composition provide greater protection than vaccines comprised of either subunit alone. In the primary phase 2a clinical trial, 30μg formulation showed a stronger and sustained immune response. This study was aim to exploring the safety and immunogenicity of a new type plague subunit vaccine which comprised 30μg natural F1 antigen and 30μg recombined V antigen (F1+rV) in two immunization regimens.

Interventions

BIOLOGICALplague vaccine(F1+rV)

plague vaccine(F1+rV) (Lanzhou Institute of Biological Products Co.,Ltd) of 1.0ml, three doses

Sponsors

Jiangsu Province Centers for Disease Control and Prevention
Lead SponsorNETWORK

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 55 Years
Healthy volunteers
Yes

Inclusion criteria

* Healthy adults aged 18-55months old as established by medical history and clinical examination. * The subjects' guardians are able to understand and sign the informed consent. * Subjects who can and will comply with the requirements of the protocol. * Subjects with temperature ≤37.0°C on axillary setting.

Exclusion criteria

* Family history of seizures or progressive neurological disease. * Subject who has a medical history of plague, or had been vaccination of plague vaccine. * Subject that has a medical history of any of the following: allergic history, or allergic to any ingredient of vaccine. * Any confirmed or suspected autoimmune diseases or immune deficiency disorders, including human immunodeficiency virus (HIV) infection. * Dysgenopathy or severe chronic disease. * Pregnant or lactating women, women of reproductive age without contraception. * Thrombocytopenia or other blood coagulation disorder, taboos of intramuscular injection and collection of blood. * Difficulty in blood collection. * Any prior administration of immunodepressant or corticosteroids, and antianaphylactic treatment, cytotoxic therapy in last 6 months. * Any prior administration of blood products in last 3 month. * Any prior administration of other research medicines in last 4 weeks. * Any prior administration of attenuated live vaccine in last 4 weeks. * Any prior administration of subunit or inactivated vaccines in last 2 weeks. * Had fever before vaccination, subjects with temperature \>37.0°C on axillary setting. * Any condition that in the opinion of the investigator, may interferes the evaluation of study objectives.

Design outcomes

Primary

MeasureTime frameDescription
the GMT of antibodies to F1 antigen on Month 7 post-dose 1Month 7 post-dose 1the GMT of antibodies to F1 antigen on Month 7 post-dose 1
the GMT of antibodies to rV antigen on Month 7 post-dose 1Month 7 post-dose 1the GMT of antibodies to rV antigen on Month 7 post-dose 1

Secondary

MeasureTime frameDescription
The GMFI of antibodies to F1 antigen on Month 7 post-dose 1Month 7 post-dose 1The GMFI of antibodies to F1 antigen on Month 7 post-dose 1
The seroconversion of antibodies to rV antigen on Month 7 post-dose 1Month 7 post-dose 1The seroconversion of antibodies to rV antigen on Month 7 post-dose 1
The GMFI of antibodies to rV antigen on Month 7 post-dose 1Month 7 post-dose 1the GMFI of antibodies to rV antigen on Month 7 post-dose 1
The GMT of antibodies to F1 antigen on Month 1 post-dose 1Month 1 post-dose 1The GMT of antibodies to F1 antigen on Month 1 post-dose 1
The GMT of antibodies to rV antigen on Month 1 post-dose 1Month 1 post-dose 1The GMT of antibodies to rV antigen on Month 1 post-dose 1
The seroconversion of antibodies to F1 antigen on Month1 post-dose 1Month 1 post-dose 1The seroconversion of antibodies to F1 antigen on Month1 post-dose 1
The seroconversion of antibodies to rV antigen on Month1 post-dose 1Month 1 post-dose 1The seroconversion of antibodies to rV antigen on Month1 post-dose 1
The GMFI of antibodies to F1 antigen on Month 1 post-dose 1Month 1 post-dose 1The GMFI of antibodies to F1 antigen on Month 1 post-dose 1
The GMFI of antibodies to rV antigen on Month 1 post-dose 1Month 1 post-dose 1The GMFI of antibodies to rV antigen on Month 1 post-dose 1
The GMT of antibodies to rV antigen on Month 2 post-dose 1Month 2 post-dose 1The GMT of antibodies to rV antigen on Month 2 post-dose 1
The seroconversion of antibodies to F1 antigen on Month 2 post-dose 1Month 2 post-dose 1The seroconversion of antibodies to F1 antigen on Month 2 post-dose 1
The seroconversion of antibodies to rV antigen on Month 2 post-dose 1Month 2 post-dose 1The seroconversion of antibodies to rV antigen on Month 2 post-dose 1
The GMFI of antibodies to F1 antigen on Month 2 post-dose 1Month 2 post-dose 1The GMFI of antibodies to F1 antigen on Month 2 post-dose 1
The GMFI of antibodies to rV antigen on Month 2 post-dose 1Month 2 post-dose 1The GMFI of antibodies to rV antigen on Month 2 post-dose 1
The GMT of antibodies to F1 antigen on Month 3 post-dose 1Month 3 post-dose 1The GMT of antibodies to F1 antigen on Month 3 post-dose 1
The GMT of antibodies to rV antigen on Month 3 post-dose 1Month 3 post-dose 1The GMT of antibodies to rV antigen on Month 3 post-dose 1
The seroconversion of antibodies to F1 antigen on Month 3 post-dose 1Month 3 post-dose 1The seroconversion of antibodies to F1 antigen on Month 3 post-dose 1
The seroconversion of antibodies to rV antigen on Month 3 post-dose 1Month 3 post-dose 1The seroconversion of antibodies to rV antigen on Month 3 post-dose 1
The GMFI of antibodies to F1 antigen on Month 3 post-dose 1Month 3 post-dose 1The GMFI of antibodies to F1 antigen on Month 3 post-dose 1
The GMFI of antibodies to rV antigen on Month 3 post-dose 1Month 3 post-dose 1The GMFI of antibodies to rV antigen on Month 3 post-dose 1
The GMT of antibodies to F1 antigen on Month 6 post-dose 1Month 6 post-dose 1The GMT of antibodies to F1 antigen on Month 6 post-dose 1
The GMT of antibodies to rV antigen on Month 6 post-dose 1Month 6 post-dose 1The GMT of antibodies to rV antigen on Month 6 post-dose 1
The seroconversion of antibodies to F1 antigen on Month 6 post-dose 1Month 6 post-dose 1The seroconversion of antibodies to F1 antigen on Month 6 post-dose 1
The seroconversion of antibodies to rV antigen on Month 6 post-dose 1Month 6 post-dose 1The seroconversion of antibodies to rV antigen on Month 6 post-dose 1
The GMFI of antibodies to F1 antigen on Month 6 post-dose 1Month 6 post-dose 1The GMFI of antibodies to F1 antigen on Month 6 post-dose 1
The GMFI of antibodies to rV antigen on Month 6 post-dose 1Month 6 post-dose 1The GMFI of antibodies to rV antigen on Month 6 post-dose 1
The GMT of antibodies to F1 antigen on Month 9 post-dose 1Month 9 post-dose 1The GMT of antibodies to F1 antigen on Month 9 post-dose 1
The GMT of antibodies to rV antigen on Month 9 post-dose 1Month 9 post-dose 1The GMT of antibodies to rV antigen on Month 9 post-dose 1
The seroconversion of antibodies to F1 antigen on Month 9 post-dose 1Month 9 post-dose 1The seroconversion of antibodies to F1 antigen on Month 9 post-dose 1
The seroconversion of antibodies to rV antigen on Month 9 post-dose 1Month 9 post-dose 1The seroconversion of antibodies to rV antigen on Month 9 post-dose 1
The GMFI of antibodies to F1 antigen on Month 9 post-dose 1Month 9 post-dose 1The GMFI of antibodies to F1 antigen on Month 9 post-dose 1
The GMFI of antibodies to rV antigen on Month 9 post-dose 1Month 9 post-dose 1The GMFI of antibodies to rV antigen on Month 9 post-dose 1
The GMT of antibodies to F1 antigen on Month12 post-dose 1Month 12 post-dose 1The GMT of antibodies to F1 antigen on Month12 post-dose 1
The GMT of antibodies to rV antigen on Month12 post-dose 1Month 12 post-dose 1The GMT of antibodies to rV antigen on Month12 post-dose 1
The seroconversion of antibodies to F1 antigen on Month 12 post-dose 1Month 12 post-dose 1The seroconversion of antibodies to F1 antigen on Month 12 post-dose 1
The seroconversion of antibodies to rV antigen on Month 12 post-dose 1Month 12 post-dose 1The seroconversion of antibodies to rV antigen on Month 12 post-dose 1
The GMFI of antibodies to F1 antigen on Month 12 post-dose 1Month 12 post-dose 1The GMFI of antibodies to F1 antigen on Month 12 post-dose 1
The GMFI of antibodies to rV antigen on Month 12 post-dose 1Month 12 post-dose 1The GMFI of antibodies to rV antigen on Month 12 post-dose 1
The GMT of antibodies to F1 antigen on Month18 post-dose 1Month 18 post-dose 1The GMT of antibodies to F1 antigen on Month18 post-dose 1
The GMT of antibodies to rV antigen on Month18 post-dose 1Month 18 post-dose 1The GMT of antibodies to rV antigen on Month18 post-dose 1
The seroconversion of antibodies to F1 antigen on Month 18 post-dose 1Month 18 post-dose 1The seroconversion of antibodies to F1 antigen on Month 18 post-dose 1
The seroconversion of antibodies to rV antigen on Month 18 post-dose 1Month 18 post-dose 1The seroconversion of antibodies to rV antigen on Month 18 post-dose 1
The GMFI of antibodies to F1 antigen on Month 18 post-dose 1Month 18 post-dose 1The GMFI of antibodies to F1 antigen on Month 18 post-dose 1
The GMFI of antibodies to rV antigen on Month 18 post-dose 1Month 18 post-dose 1The GMFI of antibodies to rV antigen on Month 18 post-dose 1
The GMT of antibodies to F1 antigen on Month24 post-dose 1Month 24 post-dose 1The GMT of antibodies to F1 antigen on Month24 post-dose 1
The GMT of antibodies to rV antigen on Month24 post-dose 1Month 24 post-dose 1The GMT of antibodies to rV antigen on Month24 post-dose 1
The GMT of antibodies to F1 antigen on Month 2 post-dose 1Month 2 post-dose 1The GMT of antibodies to F1 antigen on Month 2 post-dose 1
The seroconversion of antibodies to rV antigen on Month 24 post-dose 1Month 24 post-dose 1The seroconversion of antibodies to rV antigen on Month 24 post-dose 1
The GMFI of antibodies to F1 antigen on Month 24 post-dose 1Month 24 post-dose 1The GMFI of antibodies to F1 antigen on Month 24 post-dose 1
The GMFI of antibodies to rV antigen on Month 24 post-dose 1Month 24 post-dose 1The GMFI of antibodies to rV antigen on Month 24 post-dose 1
Proportion of subjects reporting adverse eventsDay 30 post-each doseProportion of subjects reporting adverse events within 30 days post-each dose
Proportion of subjects with serious adverse events (SAE)occurring throughout the trialDay 0 up to month 12 post dose 1Proportion of subjects with serious adverse events (SAE)occurring throughout the trial from day 0 to month 12.
The seroconversion of antibodies to F1 antigen on Month 24 post-dose 1Month 24 post-dose 1The seroconversion of antibodies to F1 antigen on Month 24 post-dose 1
The seroconversion of antibodies to F1 antigen on Month 7 post-dose 1Month 7 post-dose 1The seroconversion of antibodies to F1 antigen on Month 7 post-dose 1

Countries

China

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026