Summary: Pharmexa scientists present data from several ongoing programs at international vaccine conference in Amsterdam Pharmexa scientists present preclinical data from a range of programs at the international scientific conference “Vaccine Congress” which takes place in Amsterdam from 9 - 11th December 2007. Key messages from Pharmexa's presentations: Pharmexa's malaria vaccine EP1300 Pharmexa presents new data from its malaria EP1300 DNA vaccine administered by in vivo electroporation to enhance vaccine potency and utility. The vaccine is based on Pharmexa's polyepitope technology and encodes 38 cytotoxic T lymphocyte (CTL) epitopes and 14 helper T lymphocyte (HTL) epitopes from four Plasmodium falciparum strains. It is designed to invoke a broad immune response targeting infected liver cells and thus, to slow down the infection before large numbers of the parasites reach the blood stream causing the commonly recognized symptoms. The results presented today in Amsterdam show that EP1300 is highly immunogenic and give rise to robust CTL and Helper-cell responses, even at low doses. Furthermore, Pharmexa demonstrates that giving the vaccine with an electroporation device significantly increases the immunogenicity of the vaccine, particularly at lower doses. 1 million people die of malaria each year, a high proportion of which are children. EP1300 is designed to provide world wide population coverage. Pharmexa's influenza vaccines Pharmexa has two preclinical programs aimed at influenza and new results from both programs are presented at the Amsterdam conference. Pharmexa has designed a recombinant protein vaccine based on the influenza antigen hemagglutinin 5 (H5 HA) combined with the PADRE® epitope to increase the immunogenicity of the vaccine. In a pandemic setting, a recombinantly expressed HA vaccine is a highly attractive vaccine option due to the ease of manufacture in large quantities. The results presented show that PADRE® augments the immunogenicity of this vaccine type and that the effect was most evident at the lowest vaccine doses tested. Pharmexa also presents new data from its influenza vaccine candidate EP1450 which is an early stage polyepitope DNA vaccine encoding a large array of highly conserved CTL and HTL epitopes selected via Pharmexa-Epimmune's proprietary Epitope Identification System (EIS®). The vaccine is designed to induce cellular immune responses against all human influenza strains. The vaccine could be used in a pandemic situation, but also as a seasonal influenza vaccine where is could be particularly useful in the elderly population, in which conventional influenza vaccines provide only limited effectiveness. Results of a prototype version of EP1450 showed that the vaccine is immunogenic, giving rise to both CTL and HTL responses. The prototype vaccine also showed protective efficacy against a lethal influenza virus challenge in a mouse model. Approximately 1 billion people are infected by influenza each year of which there are 3-5 million cases of severe illness and 300,000-500,000 deaths. In addition, the recent emergence of avian H5N1 influenza strains has generated concerns that an influenza pandemic could occur in the next few years. Pharmexa's HIV vaccines Pharmexa also gives an update on its HIV programs which include new preclinical data obtained using the EP1233 polyepitope DNA vaccine and the MVA-BN32 (developed with Bavarian Nordic) supporting a heterologous prime-boost strategy. The results show that the combination of DNA and MVA vaccine formats are well-suited for delivery of T-cell epitope-based vaccines. Even very low doses of DNA are effective for priming responses that are boosted by MVA. EP1233 and MVABN32 are currently being evaluated in a clinical Phase I trial and the MVA-BN32 as a stand alone vaccine in two Phase I trials. HIV infection threatens large percentages of the population of many developing countries. In 2006, more than four million people were newly infected with HIV, bringing the total number of people infected close to 40 million worldwide. Pharmexa's CRIPTO cancer vaccine The cancer protein CRIPTO is upregulated in many cancers, including breast, ovarian and colorectal cancer and therefore CRIPTO could be an attractive target for a cancer vaccine. Pharmexa has designed a CRIPTO AutoVac™ vaccine combining Pharmexa's proprietary AutoVac™ and PADRE® technologies. At the Amsterdam conference Pharmexa presents data showing that this candidate vaccine leads to the generation of high antibody titers in mice and that these antibodies effectively bind to CRIPTO. More importantly, the CRIPTO AutoVac™ vaccine significantly delayed tumor growth in a recognized murine tumor model. These results once again underline the versatility of Pharmexa's AutoVac™ technology platform, used here with its proprietary PADRE® epitope, for the design of immunotherapeutic cancer vaccine products. Dr. Achim Kaufhold, Pharmexa's Executive Vice President, CSO & CMO, comments: “The research presented at this international vaccine congress underscores Pharmexa's efforts to build a sustainable pipeline of product development candidates to combat cancer and infectious diseases. It requires novel approaches to successfully address these clinical challenges. Towards this goal, we are well positioned because of our experience and validated T-cell epitope platform technologies which we are using to design vaccines to ensure appropriate immunogenicity and human population coverage.” Hørsholm, December 11, 2007 Jakob Schmidt Chief Executive Officer Additional information: Jakob Schmidt, Chief Executive Officer, telephone +45 4516 2525 Claude Mikkelsen, Vice President, Corporate Affairs and Communication, telephone +45 4516 2525 or +45 4060 2558 Note to editors: Pharmexa A/S is a leading company in the field of active immunotherapy and vaccines for the treatment of cancer, serious chronic and infectious diseases. Pharmexa's proprietary technology platforms are broadly applicable, allowing the company to address critical targets in cancer and chronic diseases, as well as serious infectious diseases such as HIV, influenza, hepatitis and malaria. Its leading programs are GV1001, a peptide vaccine that has entered phase III trials in pancreatic cancer and phase II trials in liver cancer, and HIV and hepatitis vaccines in phase I/II. Collaborative agreements include H. Lundbeck, GENimmune, IDM Pharma and Bavarian Nordic. With operations in Denmark, Norway and USA, Pharmexa employs approximately 105 people and is listed on the Copenhagen Stock Exchange under the trading symbol PHARMX.
Pharmexa presents preclinical data to support its product development pipeline at vaccine conference
| Source: Affitech A/S