New Vaccine Technologies to Combat Outbreak Situations
Новые технологии создания вакцин для борьбы с эпидемическими вспышками
2018-09-19
SCID: 54.1/v3zpbbyk
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mRNA vaccinesnew vaccine technologiesnucleic acid-based vaccinespandemic preparednessviral vector vaccines
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Abstract (AI)
Ever since the development of the first vaccine more than 200 years ago, vaccinations have greatly decreased the burden of infectious diseases worldwide, famously leading to the eradication of small pox and allowing the restriction of diseases such as polio, tetanus, diphtheria, and measles. A multitude of research efforts focuses on the improvement of established and the discovery of new vaccines such as the HPV (human papilloma virus) vaccine in 2006. However, radical changes in the density, age distribution and traveling habits of the population worldwide as well as the changing climate favor the emergence of old and new pathogens that bear the risk of becoming pandemic threats. In recent years, the rapid spread of severe infections such as HIV, SARS, Ebola, and Zika have highlighted the dire need for global preparedness for pandemics, which necessitates the extremely rapid development and comprehensive distribution of vaccines against potentially previously unknown pathogens. What is more, the emergence of antibiotic resistant bacteria calls for new approaches to prevent infections. Given these changes, established methods for the identification of new vaccine candidates are no longer sufficient to ensure global protection. Hence, new vaccine technologies able to achieve rapid development as well as large scale production are of pivotal importance. This review will discuss viral vector and nucleic acid-based vaccines (DNA and mRNA vaccines) as new approaches that might be able to tackle these challenges to global health.
Key Findings
1
Antibiotic-resistant bacteria create an additional need for innovative infection-prevention strategies beyond conventional approaches.
2
Established vaccine-candidate identification methods are insufficient for global protection; viral-vector and DNA or mRNA vaccines are highlighted as technologies enabling faster development and large-scale production.
3
Population changes, increased travel, and climate change are facilitating the emergence of pathogens with pandemic potential, including previously unknown threats.
4
Rapid outbreaks of HIV, SARS, Ebola, and Zika demonstrate the need for global pandemic preparedness and extremely rapid vaccine development and distribution.
5
Vaccination has substantially reduced global infectious-disease burden, including eradicating smallpox and restricting polio, tetanus, diphtheria, and measles.
Research Object
new vaccine technologies, specifically viral vector and nucleic acid-based vaccines (DNA and mRNA vaccines)
Research Subject
their potential for the rapid development and large-scale production of vaccines to combat emerging and pandemic pathogens
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2018-09-19
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