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The malaria vaccine development program in Papua New Guinea.

Through a collaborative project led by the Papua New Guinea Institute of Medical Research (PNGIMR), Papua New Guinea has a significant role in the global effort to develop a malaria vaccine, ensuring that the malaria patterns in Asia and the Pacific region are considered in vaccine development strategies. Some of the major perspectives and achievements of the program are discussed here, one of the most successful being the trial of Combination B, a vaccine comprising three asexual blood-stage proteins [merozoite surface protein (MSP)1, MSP2 and ring-infected erythrocyte surface antigen (RESA)], which led to a considerable reduction of parasite density in the immunized children.

Animals↗

[Current status of vaccine development in sexually transmissible diseases].

A prophylactic vaccine represents a major hope for the control of sexually transmitted diseases. The current general vaccine strategies and the status of vaccine development against infections with Neisseria gonorrhoeae, Treponema pallidum, Chlamydia trachomatis and Herpes simplex virus are described. Vaccines consisting of whole infectious agents are replaced by protective subunits. A subunit vaccine has the advantage to be free from other components, which are not relevant for protection and which may confer unwanted side effects. At the present time vaccine development against infections with Neisseria gonorrhoeae and Herpes simplex virus seems to be the most progressed. With monoclonal antibodies several surface components could be identified, which are of importance for the pathomechanism. With Treponema pallidum and Chlamydia trachomatis the development is delayed by unsolved problems of immunity. For the production of vaccines molecular-biologic methods, like protein synthesis or gene-cloning will be used. Genetically modified live vaccines or polytope hybrid vaccines will gain importance in the future.

Humans↗

Antigenic similarities between brain components and bacteria causing meningitis. Implications for vaccine development and pathogenesis.

Glycopeptides containing polysialic acid units were isolated from human and rat brain and tested for reactivity with antibodies against meningococcal capsules. The polysialosyl glycopeptides bound specifically to horse antiserum against meningococcus group B. The interaction was inhibited by capsular polysaccharides from meningococcus group B but not groups A or C. The capsular polysaccharide of Escherichia coli K1, which is immunochemically similar to the group B polysaccharide, also inhibited binding. These findings could explain the failure to develop efficient vaccines against group B meningococcus or E coli K1 and also suggest that immunological tolerance could be a factor in the pathogenesis of meningitis caused by these bacteria. The presence of the cross-reactive brain component calls for caution in efforts to develop capsular polysaccharide vaccines from these bacteria or the proposed use of passively administered antibodies as immunotherapy of neonatal meningitis.

Animals↗

Infectious bovine keratoconjunctivitis vaccine development.

Infectious bovine keratoconjunctivitis is a common and highly contagious ocular disease affecting cattle worldwide. The tremendous economic losses attributable to this disease warrant continued investigation into methods of prevention. Multiple virulence factors have been linked to the primary aetiologic agent, Moraxella bovis. Efforts to develop an efficacious vaccine have primarily focused upon the use of surface pili or cytolysin to stimulate host immunity; however, M. bovis possesses other virulence determinants that include proteases, fibrinolysins, phospholipases and other cell surface components such as outer membrane proteins. These potentially conserved antigens provide additional possibilities for vaccine development. Examination of appropriate antigen presentation is necessary to attain an adequate immune response. Further, the potential for antigenic diversity as well as epitope conversion requires continuous epidemiological surveillance of isolates recovered from outbreaks. Current work targeting conserved immunogens provides hope for efficacious vaccines that when used in tandem with proper management may control, if not prevent, infectious bovine keratoconjunctivitis.

Animals↗

[Vaccine development for Norwalk virus].

The rationale for developing a vaccine generally is made on the basis of the clinical and socioeconomical significance of a specific viral disease. The disease burden for rotavirus gastroenteritis in infants is well evaluated and several candidate vaccines for rotavirus has now been developing. An increasing recognition of the clinical significance of Norwalk virus causing acute gastroenteritis in humans of all ages, foodborne outbreaks in adults, and relatively severe gastroenteritis in children indicates that an effective vaccine would be useful. This article reviews the immunity for Norwalk virus infection and the development of a candidate vaccine for Norwalk virus.

Adult↗

Gonococcal pilus vaccine development project by Bactex.

Gonococcal pilus vaccine development project by Bactex includes a recently completed clinical trial involving approximately 3500 US army volunteers in Korea. Results of the double-blind, placebo controlled study, conducted during the 1st 8 weeks of 1983, are currently being analyzed. The findings will be confirmed by further testing and if the vaccine proves effective, Bactex plans to apply for a biological license. Bactex was founded in 1974 with the assistance of loans from the Center for Entrepreneurial Development at Carnegie Mellon University. The center at Carnegie, set up and funded by the National Science Foundation, serves to stimulate the transfer of technology from the academic community to industry. Similar centers have been established at MIT and the University of Washington, Bactex President and University of Pittsburgh microbiologist Charles Brinton told "The Blue Sheet" the company is developing additional human vaccines based on pilus technology. He noted that the firm also has a joint agreement with Schering's Animal Health Division for the production of animal vaccines. Under this agreement, Bactex developed a vaccine for neonatal diarrhea in piglets, which Schering began marketing about a month ago. In addition to the study in Korea, Brinton has tested the gonorrhea vaccine in approximately 230 volunteers at the University of Pittsburgh. The Korean trial was partially funded by the US Army Medical Research and Development Command.

Asia↗

Helicobacter pylori vaccine development based on combined subproteome analysis.

Effective vaccines could provide long-term solutions to many important infectious diseases, however, vaccine development has been hampered by the slow identification of protective antigens. Proteomics provides global information about relevant antigen properties and thus might be ideally suited for identifying promising vaccine antigen subsets. Helicobacter pylori proteomics data are stored in a proteomics database (http://www.mpiib-berlin.mpg.de/2D-PAGE/). In this review, we describe how a combined Helicobacter subproteome analysis resulted in the rapid identification of novel, highly protective antigens. This illustrates the great potential of pathogen proteomics for vaccine development.

Antigens, Bacterial↗

Vaccine development for hepatitis C.

Given the global disease burden and public health impact of hepatitis C, the development of an effective vaccine is of paramount importance. However, many challenging obstacles loom ahead of this goal. The hepatitis C virus (HCV), being an RNA virus, can mutate rapidly in adaptation to the environment, thus contributing to the high sequence divergence of multiple viral isolates in the world. The highest heterogeneity has been found in the hypervariable region of the envelope glycoprotein 2, which contains a principal neutralization epitope. HCV also causes persistent infection in a high percentage of immunocompetent hosts despite active immune response. The lack of an efficient tissue culture system for propagating HCV and testing neutralizing antibodies adds further complexity to the task of vaccine development. The immunologic correlates associated with disease progression or protection are yet to be defined, but recent studies suggest that a vigorous multispecific cellular immune response is important in the resolution of infection. Induction of high-titer, long-lasting, and cross-reactive antienvelope antibodies and a vigorous multispecific cellular immune response that includes both helper and cytotoxic T lymphocytes may be necessary for an effective vaccine. Several promising approaches have been used to develop an HCV vaccine. Novel vaccine candidates based on molecular technology such as recombinant proteins, peptides, viruslike particles, naked DNA, and recombinant viruses are being explored. The final vaccine product may require multiple components that target various aspects of protective immunity. Finally, sterilizing immunity may not be necessary if a vaccine can be developed to prevent chronic infection, which is the major cause of morbidity and mortality from this disease.

Antibody Formation↗

Advances in molecular biology: impact on rotavirus vaccine development.

The first candidate rotavirus vaccine was a live attenuated oral vaccine made by the classical empirical method of serial passage of virus in tissue culture cells. Current tetravalent vaccine candidates that are in the final stages of efficacy testing in the United States were made by genetic reassortment. This article briefly highlights how advances in the basic understanding of the molecular biology of rotaviruses have facilitated vaccine development. New approaches for second-generation vaccines and improvements in vaccine efficacy based on further exploitation of the tools and knowledge of rotavirus molecular biology and pathogenesis are discussed.

Animals↗

Review on flavivirus vaccine development. Proceedings of a meeting jointly organised by the World Health Organization and the Thai Ministry of Public Health, 26-27 April 2004, Bangkok, Thailand.

In light of the continuous spread of human pathogenic flaviviruses, in particular the mosquito-transmitted species, vaccine development remains a high priority on the public health agenda. On 26-27 April 2004, a conference was held in Bangkok, Thailand, to review current status of flavivirus vaccine development and related issues, focussing on dengue (DEN) and Japanese encephalitis (JE). This event, co-sponsored by the World Health Organization (WHO) and the Thai Ministry of Public Health, reviewed the progress made with vaccine development, sero-epidemiological studies and other accompanying activities critical for vaccine development and vaccination. The considerable interest in and awareness of the flavivirus diseases and their prevention by public health decision makers, as well as the establishment of two dedicated programmes for dengue and Japanese encephalitis vaccine development raise hopes that new or improved vaccines will become available in the coming years.

Antibodies, Viral↗

HIV-1 polymorphism: a challenge for vaccine development - a review.

The perspective for the development of anti-HIV/AIDS vaccines became a target sought by several research groups and pharmaceutical companies. However, the complex virus biology in addition to a striking genetic variability and the limited understanding of the immunological correlates of protection have made this an enormous scientific challenge not overcome so far. In this review we presented an updating of HIV-1 subtypes and recombinant viruses circulating in South American countries, focusing mainly on Brazil, as one of the challenges for HIV vaccine development. Moreover, we discussed the importance of stimulating developing countries to participate in the process of vaccine evaluation, not only testing vaccines according to already defined protocols, but also working together with them, in order to take into consideration their local information on virus diversity and host genetic background relevant for the vaccine development and testing, as well as including local virus based reagents to evaluate the immunogenicity of the candidate vaccines.

AIDS Vaccines↗

Tuberculosis vaccine development: recent progress.

Recent years have seen a renewed effort to develop new vaccines against tuberculosis. As a result, several promising avenues of research have developed, including the production of recombinant vaccines, auxotrophic vaccines, DNA vaccines and subunit vaccines. In this article we briefly review this work, as well as consider the pros and cons of the animal models needed to test these new vaccines. Screening to date has been carried out in mouse and guinea pig models, which have been used to obtain basic information such as the effect of the vaccine on bacterial load, and whether the vaccine can prevent or reduce lung pathology. The results to date lead us to be optimistic that new candidate vaccines could soon be considered for evaluation in clinical trials.

Animals↗

Herpesvirus vaccines. Development, controversies, and applications.

Herpesviruses present difficult challenges in vaccine development because of their ability to evade immune clearance. Data and recommendations regarding the live-attenuated varicella vaccine are discussed. Approaches to developing vaccines to prevent herpes simplex virus (HSV), cytomegalovirus (CMV), and Epstein-Barr virus (EBV)-associated illnesses also are considered.

Herpesviridae↗

Progress in HIV vaccine development.

Recent advances in HIV vaccine development include initiation of the first efficacy trials and substantial expansion of the preclinical pipeline. Several preclinical candidate vaccines have induced strong cellular immune responses and provided impressive protection against AIDS in non-human primate models; however, candidates that induce broadly neutralizing antibodies remain elusive.

AIDS Vaccines↗

Implications of sequencing bacterial genomes for pathogenesis and vaccine development.

Improvements in homology search methodology and functional predictions are being complemented by the increase in the volume of sequence data with which comparative analyses can be performed. The experimental methods needed for investigation of gene function and expression in a variety of model systems of infection continue to develop. The identification of surface-exposed microbial structures and their conservation in natural populations of pathogenic species offers prospects for developing novel vaccines. A major challenge is the development of efficient screening methods to select the most promising candidates, such as immunisation with DNA.

Bacteria↗

AIDS vaccine development: perspectives, challenges & hopes.

The worldwide quest for an AIDS vaccine represents an unprecedented scientific and human challenge for the 21st century. Preventive vaccines represent our only long-term hope to stop the epidemic. AIDS vaccines must be seen as the ultimate prevention tool that will complement the existing prevention strategies in place. The acceleration of vaccine development through the parallel exploration of several scientific approaches and implementation of clinical trials are the best and probably only way to reach this goal, and the best vaccines have moved into phase II and efficacy trials. Ideally an AIDS vaccine should induce both neutralizing antibodies against HIV-1 primary isolates and cell-mediated responses. AIDS vaccines could prevent either HIV infection or progression to disease and decrease transmission by reducing the HIV viral load. Most of the vaccine approaches developed so far aim at inducing cell-mediated immune responses. New vector-based vaccines include modified vaccinia Ankara, adeno-associated virus, adenovirus and alpha viruses. Considerable efforts are on to develop vaccines that would induce neutralizing antibodies. All vaccines tested so far in humans have proven to be safe. This long-term endeavour requires strong and renewed political leadership and commitment, flexibility of processes, medical and scientific dedication and collaboration on a mission mode along with community participation for immediate action. Recent developments in India highlight clearly the commitment of the Government of India and the scientific community to a long-term global effort to develop an AIDS vaccine.

AIDS Vaccines↗

Drug delivery issues in vaccine development.

Although significant headway has been made in vaccine development, there are several delivery-related issues that must be overcome to advance tomorrow's candidate vaccines. Some of these are in the areas of: single-shot subunit vaccines, therapeutic vaccines for cancer, the use of cytokines as vaccine adjuvants, DNA-based vaccines, and the development of vaccines that provide sterilizing immunity, as might be required for an affective HIV-1 prophylactic vaccine. The hurdles for vaccine advancement in these areas are briefly described.

AIDS Vaccines↗

Novel enabling technologies for vaccine development. 26-27 January 1999, Royal Society, London, UK.

This was a very well-organized meeting with a highly attractive program featuring some of the leading people in current vaccine development. A special focus was given to novel adjuvant research and the possibility of developing combination vaccines. Close to 150 participants from academia and industry gathered in the excellent conference center of the Royal Society and the two-day sessions were superbly chaired by Professor Myron Levine, (Center for Vaccine Development (CVD), University of Maryland, Baltimore, USA) and Dr Ronald Ellis (BioChem Pharma Inc, Boston, MA, USA).

Journal Article↗