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Assistant Professor of Medicine (Infectious Diseases) and of Microbiology and Immunology
  1. An overview on avian influenza
  2. Review ARTICLE
  3. Review ARTICLE
  4. Influenza Vaccine

Analysis of cell surface receptors. Progress in Immunology, 3; Cytotoxic T cells in the lungs of mice infected with an influenza A virus.

An overview on avian influenza

Braciale, T. Functional and structural considerations in the recognition of virus-infected cells by cytotoxic T lymphocytes. In: Cont. The recovery of mice from influenza virus infection: Adoptive transfer of immunity with immune T lymphocytes. Blanden, R.


A dual recognition model for cytotoxic T cells based on thymic selection of precursors with low affinity for self H-2 antigens. Transfer of specific cytotoxic T lymphocytes protects mice inoculated with influenza virus. The recovery of mice from influenza A virus infection: adoptive transfer of immunity with influenza virus-specific cytotoxic T lymphocytes recognising a common virion antigen.

Are cytotoxic T cells a common homeostatic mechanism in response to viruses, homografts and tumors? Blood Cells. Ada, G,. The measurement of haemagglutinin and matrix protein present on the surface of influenza virus infected P mastocytoma cells. Role of T cell function in recovery from murine influenza infection. The production and role of cytotoxic T cells in influenza virus infection in mice; do the same rules apply in the response to any foreign antigen? The effect of specific antibody on the generation of cytotoxic T lymphocytes and the recovery of mice from influenza virus infection.

Genetic engineering research: evaluation and containment of potential risks.

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In: Scientific Advances and Community Risk. White, Australian Academy of Science, Canberra. Leung, K-N, Ada, G. Specificity, Ly phenotype and H-2 compatibility requirements of effector cells in delayed-type hypersensitivity responses to murine influenza virus infection. Leung, K-N. Production of DTH in the mouse to influenza virus: a comparison with conditions for stimulation of cytotoxic T cells. Cells mediating delayed-type hypersensitivity in the lungs of mice infected with an influenza A virus.

Generation of influenza virus-specific delayed-type hypersensitivity T cells in vitro. Secondary effector cells. Leung, K-N, Ashman, R. The selective suppression of the cytotoxic T cell response to influenza virus in mice.


Leung, K. Two T cell populations mediate delayed- type hypersensitivity to murine influenza virus infection. The effect of helper T cells on the primary in vitro production of delayed-type hypersensitivity to influenza virus. Ertl, H. Roles of influenza virus activity and glycosylation of viral antigen for recognition of target cells by cytolytic T lymphocytes.

Immunobiology, ; International science and the Australian scientist. Foreign Affairs Bulletin. The inductive requirements for the primary in vitro generation of delayed-type hypersensitivity response to influenza virus in mice. Immunology, 44; 17 - An analysis of effector T cell generation and function in mice exposed to influenza A or Sendai viruses. Controlling influenza epidemics. Live virus vaccines offer the best prospect.

Influenza Vaccine

Today, 2; Recombinant DNA Technology - is it safe? What can it achieve? Current Affairs Bull. Induction of natural killer cells during murine influenza virus infection.


Different functions and pathological effects of subsets of effector T cells in murine influenza virus infection. In vivo collaboration between precursor T cells and helper T cells in the development of delayed-type hypersensitivity reactions to influenza virus in mice. Medical applications of recombinant DNA technology. Gazette, ; Mak, N. The generation of 'cytotoxic' macrophages in mice during infection with influenza A or Sendai virus. The humoral and cellular response of mice to infection with a cold-adapted influenza A virus variant.

Vaccines for the future? Host factors important in immune surveillance against tumours. In: Host Factors in Human Carcinogenesis. Bartsch and B. Mak, N-K, Schiltknecht, E. Protection of mice against influenza virus infection: enhancement of non-specific cellular responses by Corynebacterium parvum. The regulation of influenza virus infection. The newer approaches to vaccines. In: "New Approaches to Vaccine Development. The sensitisation of mice with a wild-type and cold-adapted variant of influenza A virus. Secondary cytotoxic T cell responses.

Immunology, 51; Mullbacher, A. Allo-reactive cytotoxic T lymphocytes lyse syngeneic influenza virus-infected tumour cell targets.

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  • Current Topics in Microbiology and Immunology, Volume 333: Vaccines for Pandemic Influenza.

The aquisition of anti-influenza virus activity by macrophages. Vaccination against influenza viruses. In: New Approaches to Vaccine Development. Bell and G. Schwabe and Co. Schiltknecht, E. Macrophage pro- coagulant-inducing activity of influenza-virus specific effector T cells. Tao, San-ju. Sensitisation of mice with wild- type and cold-adapted influenza virus variants: immune response to two H1N1 and H3N2 viruses. The generation of effector T cells in influenza A virus-infected, cyclosporin A-treated mice.

Influenza virus-specific T cells fail to reduce lung virus titres in cyclosporin-treated, infected mice. In vivo effects of cyclosporin on influenza virus -infected mice. Are peptides good antigens? Ada, G, L. Prospects for developing vaccines to control fertility. Recognition of antigen by T cells. In: "Progress towards Better Vaccines. Oxford University Press, Oxford. Antigen presentation and enhancement of immunity.

In: "Modern Approaches to Vaccines. Brown, R. Chanock and R. The immune response to influenza virus infection. In: "Options for the Control of Influenza. Kendall and P. Liss, New York.