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Recruiting

NCT Number: NCT06355232

Covid-19 and Influenza Oral Vaccine Study

The purpose of the current study is to assess the effectiveness of protein-based COVID-19 or influenza vaccines when given individually or together via oral/ sublingual mucosal route instead of intramuscular delivery. The comparator will be a seasonal influenza vaccine which will also be administered with Advax-CpG adjuvant via the oral route. This study will use a cross-over design and everyone in the study will over a space of about 4 months receive both the COVID-19 and influenza vaccines.

Recruiting

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 1

Primary location

ARASMI

Adelaide, South Australia, 5042, Australia

Location status: Recruiting

Location contact

Dimitar Sajkov, MBBS

PRINCIPAL_INVESTIGATOR

Sharen Pringle, GradCert

CONTACT

[email protected]

0437033400

About this study

The SARS-CoV-2 outbreak has caused millions of deaths globally. It has a particularly high mortality rate in elderly people and those with chronic disease. SARS-COV-2 vaccines remain a key priority to help fight the current pandemic as they help reduce symptomatic infection and disease severity. However, vaccine immunity starts to wane as early as 3 months following the most recent immunisation. This rapidly waning vaccine immunity is a particular problem for the newer Omicron variants. Spikogen® vaccine is an Advax-CpG55.2 adjuvanted recombinant protein vaccine that was shown to significantly reduce infection and serious disease in a pivotal Phase 3 trial in 16,876 participants who received two intramuscular doses 3 weeks apart. SpikoGen® vaccine was licensed for use in the Middle East as a primary vaccine course in adults in October 2021. Eight million doses of SpikoGen® vaccine have subsequently been supplied to date. A booster study confirmed the safety and immunogenicity of SpikoGen® vaccine when given as a third dose intramuscular booster to adult participants who previously received two doses of either inactivated viral vaccine, adenoviral vector vaccine, mRNA or recombinant protein vaccine. While COVID-19 vaccines such as SpikoGen® vaccine have been shown to reduce the incidence of severe SARS-CoV-2 infection disease, they have less effect on SARS-CoV-2 infection or transmission. This is because intramuscular vaccines largely work by increasing antibody and T cell levels within the body, whereas what is needed to prevent infection and transmission is mucosal immunity, which means increasing immunity at the body surfaces where the virus initially gets access to the body, namely the mucosal surfaces of the nose and upper respiratory tract. To induce mucosal immunity normally requires immune cells at these respiratory tract surfaces to be exposed to the relevant viral antigen, which requires the vaccine to be applied to these surfaces in such a way as to trigger an appropriate immune response.The current study is based on the finding that an adjuvanted protein-based COVID-19 vaccine (SpikoGen®) when given as 2 sublingual doses 2 weeks apart in monkeys that had previously received a primary course of 2 intramuscular doses of the same vaccine, was safe and well tolerated and induced robust protection against challenge with the heterologous Omicron BA.5 virus. The monkeys that received the sublingual boost also showed reduced nasal virus shedding (additional details in the Investigator Brochure). This suggests an oral/ sublingual COVID-19 vaccine may also help block virus transmission. Similarly, mice that received sublingual inactivated influenza vaccine with Advax-CpG adjuvant have demonstrated robust protection against an otherwise lethal influenza infection. The purpose of the current study is to assess the effectiveness of protein-based COVID-19 or influenza vaccines when given individually or together via oral/ sublingual mucosal route instead of intramuscular delivery. The comparator will be a seasonal influenza vaccine which will also be administered with Advax-CpG adjuvant via the oral route. This study will use a cross-over design and everyone in the study will over a space of about 4 months receive both the COVID-19 and influenza vaccines.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Able to provide written informed consent
  • Males or females 18 years of age or older
  • Understand and are likely to comply with planned study procedures and be available for all study visits.
  • Do not plan to have a non-study COVID-19 or influenza vaccine within the next 6 months.

Exclusion criteria

  • Allergy to COVID-19 or seasonal influenza vaccine or one of its components e.g. polysorbate 80.
  • Have received a COVID-19 or influenza vaccine or an experimental agent within 30 days prior to the study vaccination or expect to receive another experimental agent or a COVID-19 or influenza vaccine during the trial reporting period.
  • Any serious medical, social or mental condition which, in the opinion of the investigator, would be detrimental to the subjects or the study.

Treatment and study plan

COVID-19 vaccine

Biological

Recombinant SARS-CoV-2 spike protein with Advax-CpG55.2 adjuvant

Other names: SARS-CoV-2 vaccine

influenza vaccine

Biological

Inactivated seasonal influenza vaccine with Advax-CpG55.2 adjuvant

Primary outcomes

  1. SARS-CoV-2 Seroconversion

    Time frame: Between baseline and 2 weeks post the second dose

    Proportion of study participants who seroconvert (4-fold or greater rise in serum spike antibody) by primary vaccine group

  2. Influenza Seroconversion

    Time frame: Between baseline and 2 weeks post the second dose

    Proportion of study participants who seroconvert (4-fold or greater rise in hemagglutinin antibody) by primary vaccine group

  3. SARS-CoV-2 Seroprotection

    Time frame: Between baseline and 2 weeks post the second dose

    Proportion of study participants who achieve a spike protein neutralisation titer of 32 or greater by primary vaccine group

  4. Influenza Seroprotection

    Time frame: Between baseline and 2 weeks post the second dose

    Proportion of study participants who achieve a hemagglutinin neutralisation titer of 40 or greater by primary vaccine group

  5. SARS-CoV-2 Geometric mean titer fold change

    Time frame: Between baseline and 2 weeks post the second dose

    Increase in Geometric mean titer of spike neutralisation antibodies by primary vaccine group

  6. Influenza geometric mean titer fold change

    Time frame: Between baseline and 2 weeks post the second dose

    Increase in Geometric mean titer of spike neutralisation antibodies by primary vaccine group

  7. Safety assessment 1

    Time frame: Between time of administration of first dose and through study completion, an average of 10 months

    Frequency of Adverse events by primary vaccine group

  8. Safety assessment 2

    Time frame: Between time of administration of first dose and through study completion, an average of 10 months

    Frequency of Serious Adverse events by primary vaccine group

  9. SARS-CoV-2 infection

    Time frame: From 2 weeks post the administration of the second dose and through study completion, an average of 10 months

    Frequency of SARS-CoV-2 infections in study participants by primary vaccine group, age, gender, co-morbidities, and past infection

  10. Influenza infection

    Time frame: From 2 weeks post the administration of the second dose and through study completion, an average of 10 months

    Frequency ofinfluenza infections in study participants by primary vaccine group, age, gender, co-morbidities, and past infection

Secondary outcomes

  1. Antibody durability

    Time frame: From 2 weeks post the administration of the second dose and through study completion, an average of 10 months

    The proportion of subjects who remain seroprotected throughout the duration of the study including broken down by primary vaccine group.

  2. Seroconversion in participants with and without evidence of past infection

    Time frame: From 2 weeks post the administration of the second dose and through study completion, an average of 10 months

    Antibody seroconversion in participants by primary vaccine group

  3. Antibody GMT in participants with and without evidence of past infection

    Time frame: From 2 weeks post the administration of the second dose and through study completion, an average of 10 months

    Antibody GMT in baseline seropositive versus negative participants by primary vaccine group.

  4. Antibody correlates of protection

    Time frame: From 2 weeks post the administration of the second dose and through study completion, an average of 10 months

    antibody levels in subjects with or without breakthrough infection

Study contacts

Contact information is provided by the study sponsor or research team.

Sharen Pringle, GradCert

CONTACT

[email protected]

0437033400

Sponsors and collaborators

Lead sponsor

Vaxine Pty Ltd

Industry

Collaborators

  • Australian Respiratory and Sleep Medicine Institute

Registry information

Official study title

A Binded, Randomised, Controlled Cross-over Trial to Assess the Safety and Efficacy of Mucosal Covid-19 and Influenza Vaccines

Important dates

Study start
2024
Primary completion
2025
Study completion
2026
First posted
Apr 9, 2024
Registry last updated
Sep 17, 2025

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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