C.W. Mandl
Institute of Virology
University of Vienna
Austria
Name/email consistency: high
- Adaptation of tick-borne encephalitis virus to BHK-21 cells results in the formation of multiple heparan sulfate binding sites in the envelope protein and attenuation in vivo. Mandl, C.W., Kroschewski, H., Allison, S.L., Kofler, R., Holzmann, H., Meixner, T., Heinz, F.X. J. Virol. (2001)
- Attenuation of tick-borne encephalitis virus by structure-based site-specific mutagenesis of a putative flavivirus receptor binding site. Mandl, C.W., Allison, S.L., Holzmann, H., Meixner, T., Heinz, F.X. J. Virol. (2000)
- Spontaneous and engineered deletions in the 3' noncoding region of tick-borne encephalitis virus: construction of highly attenuated mutants of a flavivirus. Mandl, C.W., Holzmann, H., Meixner, T., Rauscher, S., Stadler, P.F., Allison, S.L., Heinz, F.X. J. Virol. (1998)
- Possible influence of the mutant CCR5 Allele on vertical transmission of HIV-1. Mandl, C.W., Aberle, S.W., Henkel, J.H., Puchhammer-Stöckl, E., Heinz, F.X. J. Med. Virol. (1998)
- In vitro-synthesized infectious RNA as an attenuated live vaccine in a flavivirus model. Mandl, C.W., Aberle, J.H., Aberle, S.W., Holzmann, H., Allison, S.L., Heinz, F.X. Nat. Med. (1998)









