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Showing 2 results for Hemokinin-1

Kaveh Sadeghi, Shahla Shahsavandi, Mohammad Majid Ebrahimi, Homayoon Mahravani, Hadi Fazel,
Volume 17, Issue 11 (2-2015)
Abstract

Background: The outbreaks of new antigenic variants of influenza viruses in human populations have increased necessity the improvement of controlling programs. Influenza vaccines are formulated with adjuvant to enhance and direct the host immune responses. Currently, much effort is devoted to designing molecular adjutants. Hemokinin-1 (HK-1) activates T and B cells for proliferation, survival, differentiation into plasma cells, and antibody production. In this study, the effect of HK-1 as a molecular adjuvant for inducing humoral immune response against influenza virus was investigated.

Materials and Methods: The HK-1 coding sequence was cloned into pcDNA3.1 vector and used as adjuvant. Groups of mice were immunized with an inactivated influenza vaccine formulated with HK-1. The sera of vaccinated mice were collected prior to priming and boosting injections and at defined weeks, and analyzed with serological assays.

Results: The results showed that HK-1 was able to increase antibody titer against virus vaccine. The mice immunized with the adjuvanted vaccine produced higher antibody titers against influenza comparing to vaccine alone immunized group. Number of boosting had no effect on the enhancing of antibody titer.

Conclusion: These data revealed that HK-1 as a molecular adjuvant induces stronger humoral and memory responses against influenza immunization.


Shahla Shahsavandi, Mohammad Majid Ebrahimi, Mohammad Reza Samiee,
Volume 21, Issue 3 (6-2018)
Abstract

Background and Aim: The inactivated vaccines are formulated with adjuvant to direct the host immune responses and also increase stability of the antigen. In recent years, the development of biological adjuvants and the evaluation of their ability in elicitation of immune responses against influenza virus have been considered. Hemokinin-1 (HK-1) activates T and B cells for differentiation into plasma cells, and antibody production. In this study, the effect of HK-1 for inducing humoral immune response against influenza chitosan based-nano vaccine was investigated.
Materials and Methods: Chitosan nanoparticle containing inactivated influenza antigen and chitosan nanoparticle containing the inactivated antigen formulated with HK-1 were prepared. Immune response following influenza nanoparticles vaccinations with and without the adjuvant was assessed in SPF chickens after prime and boost immunizations. Specific antibody levels against influenza were evaluated in serum samples of treatment and control groups by serological tests.
Findings: The chickens immunized with the HK-1 adjuvanted nano vaccine produced higher specific antibody titers that were sustained until the end of experiment comparable either with inactivated antigen alone or the H9N2 nanoparticles without HK-1 adjuvant. Administration of boosting had no effect on the enhancing of antibody titer.
Conclusion: The data show that the chitosan nanoparticles provide better absorption conditions and more stability and release of the influenza antigen in the presence of HK-1 biological adjuvant.


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