H2020Индивидуална стипендия2015–2017

SchmaVirusVacDiag · Novel vaccine and diagnostic strategies against Schmallenberg virus

„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“

Период
2015-06-15 → 2017-06-14
Финансиране от ЕС
158 122 €
Участници
1
Схема
MSCA-IF-EF-ST

Линиите свързват координатора с партньорите.

Накратко на български

Вирусът Шмаленберг и възможностите за създаване на нови ДНК ваксини срещу него се анализират чрез тестове върху мишки. Това е важно, защото болестта причинява масови аборти при овце, кози и говеда в Европа.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Novel vaccine and diagnostic strategies against Schmallenberg virus

The aim of the project was to enable the fellow to gain further insight into the nature of Schmallenberg virus (SBV), a pathogen that continues to threaten the European livestock industry. The project also focussed on therapeutic measures to combat the virus, including the development and validation of novel DNA vaccines against SBV. Our interest in SBV was of particular concern to the European livestock industry, as outbreaks of the disease has resulted widespread abortion of sheep, goats and cattle. It should also be noted that in recent years outbreaks continue to be reported from the Benelux region to the UK and Ireland. The overall objectives could be summarized into three catergories: 1) The elucidation of the structure of SBV: Determination of a high-resolution structure of Schmallenberg virus, as well as determining the structure of the individual protein components of the virus. Determining the structure of SBV is important, as it would enable for the development of better antiviral therapies in order to help combat this disease. Furthermore, the elucidation of the overall structure of the virus would also help in identifying other structurally related viruses in circulation. While the fellow was not successful in this part during the fellowship, he is continuing this line of research during his year-long incorporation into the host laboratory of Dr. Abrescia. 2) The development of novel DNA vaccines to prevent/reduce SBV infection: We contributed to the development of novel DNA vaccine candidates, confirm their expression in vivo, followed by validating their degree of protection in small animal models. This part of the project proved to be highly successful, with two novel DNA vaccine candidates having shown to protect experimental mice from SBV-induced illness. Currently, the use of SBV vaccines among European livestock producers is very limited, due to the cost of the vaccine, as well as the need for constant re-vaccination among herds. As DNA vaccines are considerably cheaper to produce, and their effects having been shown to be long-lasting, novel DNA vaccines to combat SBV infection would greatly encourage prophylactic programs to protect European livestock from this disease. With this in mind, the results that we have obtained during this fellowship may contribute to addressing this increasingly pressing agricultural problem. 3) The development of a rapid diagnostic test for the detection of SBV, including the development of monoclonal antibodies against components of the virus. As Schmallenberg virus is rapidly transmitted through insect vectors, large-scale outbreaks have been shown to occur in a very short period of time. Therefore, the development of a rapid diagnostic test, which could be used by scientists and non-scientists alike, would enable for the rapid identification of the presence of SBV, and would enable for containment measures to enact immediately after SBV detection. While such a diagnostic kit was not developed during the two-year fellowship, the fellow is still continuing this portion of this project, during his year-long incorporation into the host laboratory of Dr. Abrescia.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

Schmallenberg virus (SV) is a pathogen that has been discovered in European livestock 3 years ago. Since then, it has been found that this virus is associated with disease in sheep, goats and cattle across Europe . In livestock, the symptoms associated with the disease include stillbirths and malformations in newborn animals. The presence of the virus in Spain, France, Germany, Italy, the UK, the Netherlands as well as Russia, has shown that this disease is a fast spreading threat to the European livestock industry, and has the potential to cause significant economic impact across the continent. Furthermore, due to high volumes in international trade of livestock, the potential of this disease to spread beyond Europe poses another potential threat to the industry. Recent work using a related bunyavirus (Rift Valley Fever virus) has found that effective DNA vaccines can be generated . These vaccines have the advantage of being administered easily, having low-manufacturing costs, and providing long-lasting efficacy-making it ideal for large-scale vaccination campaigns. Furthermore, studies on related viruses have shown that monoclonal antibodies can be generated for use in diagnostic testing. Using these concepts, we propose to extend this principle to Schmallenberg virus, in order to: i) develop an easy-to-use diagnostic test for Schmallenberg detection; and ii) develop a DNA vaccination strategy that could be used to limit further future outbreaks.

Оригинален текст от CORDIS (на английски).

Участници

  • ASOCIACION CENTRO DE INVESTIGACION COOPERATIVA EN BIOCIENCIAS · DERIO VIZCAYAКоординаторИспания

Връзки

Данни: CORDIS, © Европейски съюз