
Staying One Step Ahead of Resistance
How bacteria develop resistance to antisense antibiotics - and how future therapies can be designed to reduce the risk of resistance

TWINCORE was founded in 2008 by the Helmholtz Centre for Infection Research and the Hannover Medical School. We combine the expertise of medical professionals and scientists from a wide range of disciplines to find answers to the pressing questions in infection research. Our focus: translational research – the bridge between basic science and clinical application.
This year's TWINCORE Symposium
Pathways to infection resilience
will take place on 3 - 4 September.

How bacteria develop resistance to antisense antibiotics - and how future therapies can be designed to reduce the risk of resistance

A team of researchers from Hamburg, Berlin, Göttingen and Hannover has provided evidence of possible cross-protection offered by an already authorised Zaire Ebola virus vaccine.

Memory B cells play a key role in adapting to new coronavirus variants
We conduct translational infection research to improve the prevention, diagnosis and treatment of infectious diseases in humans. We focus on three areas that characterize our research work. Find out here how we proceed and what results we achieve.
Under the leadership of our best scientists, various labs are working on different projects within our research topics.
Xie E, Schubert M, Reeb J, Seligmann B, Schaks M, Müsken M, Steffen A, Stradal T, Haid S, Rottner K, Sieben C
Baydemir I, Nikolka F, Bulut Ö, Ferreira A, Kilic G, Geckin B, Kramer R, Cuenca-Escalona J, Floor E, Báez-Magaña M, Matzaraki V, Deckers J, Anbergen T, van Elsas Y, Beldman T, Moorlag S, Charlotte J de Bree L, Spanou V, Andriopoulou T, Li Y, Karagianni E, Novakovic B, Sohrabi Y, Joosten L, Hiller K, Domínguez-Andrés J
Tapken I, Rahmel-Stein K, Ehlers C, Cieri F, Detering N, Schüning T, Bjelica B, Mindermann C, Neuhoff S, Schmitt L, Leo M, Hagenacker T, Illsinger S, Di Schiavi E, Graalmann T, Petri S, Kalinke U, Claus P
The project will investigate the immunological and genetic causes of vaccination failure in 5% of HBV-vaccinated individuals in order to develop new strategies to improve vaccination protection.
Human, potentially neutralizing antibodies against HEV have advanced the development of new detection methods for the virus in patient samples. Serological and functional analyses are used to determine markers for the course and treatment of chronic infections.
The CoViPa consortium uses computer-assisted high-throughput virus discovery and evolutionary analyses to identify RNA viruses with high spillover risk and potential animal host reservoirs and to investigate new pathogenicity factors.
Thanks to high-throughput sequencing, genome sequences of hundreds of bacterial strains can be analyzed efficiently, revealing differences of up to 60 % in gene content, as in E. coli. With the help of machine learning, we want to better predict the functions of accessory genes and decipher their contribution to survival in specialized niches.

