Mucosal Vaccine For Influenza On Inactivated Virus And Mannan
Funder
National Health and Medical Research Council
Funding Amount
$131,993.00
Summary
Influenza is a respiratory disease that causes significant morbidity and mortality worldwide. Current influenza vaccines are a preparation of three currently circulating inactivated influenza strains that induces an antibody response that can combat the virus and therefore infection. Despite the availability of a vaccine new approaches are needed to increase the activity, usage and distribution. To this end several approaches based on using additional agents to increase the immunogenicity and ne ....Influenza is a respiratory disease that causes significant morbidity and mortality worldwide. Current influenza vaccines are a preparation of three currently circulating inactivated influenza strains that induces an antibody response that can combat the virus and therefore infection. Despite the availability of a vaccine new approaches are needed to increase the activity, usage and distribution. To this end several approaches based on using additional agents to increase the immunogenicity and needle free delivery are being explored. We have a natural sugar based compound that can be used to increase the body's immunity to cancers and infectious agents such as bacteria and viruses. When these preparations are applied into the nostril of mice they generate antibody responses to the infectious agent in the lungs, gut, tears, saliva that can act as a barrier to infectious agents. We are incorporating an inactive flu virus with this natural sugar to investigate if it produces antibody that can protect mice and ferrets from the flu virus. This method will be first tried with the human flu virus and if successful will be tried with the bird flu virus. If the preparation can protect mice and ferrets from human or bird flu infection it could develop into a human vaccine against bird flu. Since it can be administered by the nose it will be widely used and can be used readily without qualified personnel in the case of a pandemic.Read moreRead less
Hendra virus (HeV) cause a disease transmitted from bats to horses which in turn infect humans and other horses. There are no drugs or vaccines for HeV. Since humans are infected by inhalation, a vaccine that can generate antibody in the lung and protect from infection will be ideal. We have found that a natural sugar called mannan used with virus proteins and administered via the nostrils to generate such responses. In this project we will prepare this vaccine and use it in a mouse model of HeV ....Hendra virus (HeV) cause a disease transmitted from bats to horses which in turn infect humans and other horses. There are no drugs or vaccines for HeV. Since humans are infected by inhalation, a vaccine that can generate antibody in the lung and protect from infection will be ideal. We have found that a natural sugar called mannan used with virus proteins and administered via the nostrils to generate such responses. In this project we will prepare this vaccine and use it in a mouse model of HeV infection to see if it can protect the mice.Read moreRead less
Enhancement Of Mucosal Immunity And CTL Avidity Against HIV-1
Funder
National Health and Medical Research Council
Funding Amount
$553,070.00
Summary
Production of strong antiviral immunity at the local mucosa (genito-rectal track) is essential for protection against HIV-AIDS. We believe that expression of small hormone-like molecules known as Th2 cytokines IL-4-IL-13 negatively influence the generation of protective immunity against HIV. Thus we aim to counteract these effects by co-expressing proteins known as chemokines together with vaccine antigens to improve the quality of mucosal vaccine immunity.
Sytemic And Mucosal Functional Antibodies In Protection Against HIV
Funder
National Health and Medical Research Council
Funding Amount
$559,501.00
Summary
Only one human HIV vaccine has shown any level of protective efficacy. However the mechanisms behind how this vaccine was protective are still not fully understood. Additionally, HIV is primarily transmitted through mucosal sites, however very little is know about vaccine immune responses at these sites. Thus this proposal aims to further define the mechanisms of antibody protection against HIV at both systemic and mucosal locations, in order to guide future HIV vaccine design efforts.
Development Of A Vaccine For Genital Chlamydial Infection
Funder
National Health and Medical Research Council
Funding Amount
$207,551.00
Summary
Genital Chlamydia infections are the most common sexually transmitted infection in Australia with annual health costs of 90-160 million dollars. Infection rates in 15-29 olds are increasing at 15-20% per year. Antibiotics are currently the treatment of choice, however antibiotic resistance is increasing and most infections are asymptomatic and not treated in the absence of screening programs. This project aims to develop a genital Chlamydia vaccine using a combination of novel antigens.
Understanding And Improving The Non-human Primate Model For Human Immunodeficiency Virus Vaccine-induced Mucosal Immunity.
Funder
National Health and Medical Research Council
Funding Amount
$302,123.00
Summary
The overall aim of this project if to generate a more effective vaccination for HIV, using an animal model of the disease. We will test vaccination methods targeting immunity to the reproductive tract, in order to attack the virus where it is usually first encountered.
The Role Of Apoptosis In Pathogenesis And Immunology Of Salmonella Infections
Funder
National Health and Medical Research Council
Funding Amount
$276,988.00
Summary
Salmonellae are important human pathogens in developed and developing countries. The most severe salmonella disease, typhoid fever, is becoming more difficult to treat because of increasing antibiotic resistance. In addition, current vaccines only provide short-term protection. The studies in this proposal are designed to answer important questions about immunity against typhoid fever, including how this immunity is provoked, and the direct and indirect causes of pathology in the disease. The fo ....Salmonellae are important human pathogens in developed and developing countries. The most severe salmonella disease, typhoid fever, is becoming more difficult to treat because of increasing antibiotic resistance. In addition, current vaccines only provide short-term protection. The studies in this proposal are designed to answer important questions about immunity against typhoid fever, including how this immunity is provoked, and the direct and indirect causes of pathology in the disease. The focus of this project is the induction of host cell apoptosis, an important virulence mechanism shared by many bacteria and viruses. The research will have direct application to human typhoid and may lead to novel therapies and improved vaccines for typhoid fever.Read moreRead less
Towards A Chlamydia Vaccine For Males: The Key Role Of Mucosal IgA
Funder
National Health and Medical Research Council
Funding Amount
$418,978.00
Summary
Genital Chlamydia infections are the most common sexually transmitted infection in Australia with annual health costs of 90-160 million dollars. Infection rates in 15-29 olds are increasing at 15-20% per year in both females and males. Antibiotics are currently the treatment of choice, however antibiotic resistance is increasing and most infections are asymptomatic and not treated in the absence of screening programs. This project aims to develop a Chlamydia vaccine tailored to protect males .
Understanding The Role Of MAIT Cells In Health And Disease
Funder
National Health and Medical Research Council
Funding Amount
$547,593.00
Summary
A specialised set of T lymphocytes called Mucosal Associated Invariant T (MAIT) cells protect us from bacteria and yeast at mucosal sites where the body's immune defences are most easily breached, e.g. gut, oral cavity, airways & reproductive tract. This study investigates the role of MAIT cells in health and in diseases like inflammatory bowel disease, peptic ulceration, periodontitis and tuberculosis. Controlling MAIT cells could help in treating these conditions.