Patent classifications
C12N2760/18462
Modulation of replicative fitness by deoptimization of synonymous codons
Methods of producing a pathogen with reduced replicative fitness are disclosed, as are attenuated pathogens produced using the methods. In particular examples, the method includes deoptimizing one or more codons in a coding sequence, thereby reducing the replicative fitness of the pathogen. Methods of using the attenuated pathogens as immunogenic compositions are also disclosed.
MODULATION OF REPLICATIVE FITNESS BY DEOPTIMIZATION OF SYNONYMOUS CODONS
Methods of producing a pathogen with reduced replicative fitness are disclosed, as are attenuated pathogens produced using the methods. In particular examples, the method includes deoptimizing one or more codons in a coding sequence, thereby reducing the replicative fitness of the pathogen. Methods of using the attenuated pathogens as immunogenic compositions are also disclosed.
MODULATION OF REPLICATIVE FITNESS BY DEOPTIMIZATION OF SYNONYMOUS CODONS
Methods of producing a pathogen with reduced replicative fitness are disclosed, as are attenuated pathogens produced using the methods. In particular examples, the method includes deoptimizing one or more codons in a coding sequence, thereby reducing the replicative fitness of the pathogen. Methods of using the attenuated pathogens as immunogenic compositions are also disclosed.
Use of a genetically modified infectious measles virus with enhanced pro-apoptotic properties (MV-deltaC virus) in cancer therapy
The invention relates to a genetically modified infectious measles virus derived from a live-attenuated measles virus strain, in which the gene encoding the viral accessory C protein has been knocked out (MV-deltaC). It concerns in particular the use of said genetically modified infectious MV-deltaC in the treatment of malignant tumour or cancer conditions, and for the preparation of agents or compositions for such treatment.
Tunable vaccine platform against pathogens of the paramyxovirus family
Disclosed herein is a strategy for the engineering of recombinant vaccines against major human and animal pathogens of the paramyxovirus family. Also disclosed are recombinant virus able to replicate without being pathogenic. Also disclosed is a method of immunizing a subject against infection with a that involves administering to the subject a recombinant vaccine disclosed herein.
MODULATION OF REPLICATIVE FITNESS BY DEOPTIMIZATION OF SYNONYMOUS CODONS
Methods of producing a pathogen with reduced replicative fitness are disclosed, as are attenuated pathogens produced using the methods. In particular examples, the method includes deoptimizing one or more codons in a coding sequence, thereby reducing the replicative fitness of the pathogen. Methods of using the attenuated pathogens as immunogenic compositions are also disclosed.
Modulation of replicative fitness by deoptimization of synonymous codons
Methods of producing a pathogen with reduced replicative fitness are disclosed, as are attenuated pathogens produced using the methods. In particular examples, the method includes deoptimizing one or more codons in a coding sequence, thereby reducing the replicative fitness of the pathogen. Methods of using the attenuated pathogens as immunogenic compositions are also disclosed.
USE OF A GENETICALLY MODIFIED INFECTIOUS MEASLES VIRUS WITH ENHANCED PRO-APOPTOTIC PROPERTIES (MV-DELTAC VIRUS) IN CANCER THERAPY
The invention relates to a genetically modified infectious measles virus derived from a live-attenuated measles virus strain, in which the gene encoding the viral accessory C protein has been knocked out (MV-deltaC). It concerns in particular the use of said genetically modified infectious MV-deltaC in the treatment of malignant tumour or cancer conditions, and for the preparation of agents or compositions for such treatment.
Use of a genetically modified infectious measles virus with enhanced pro-apoptotic properties (MV-deltaC virus) in cancer therapy
The invention relates to a genetically modified infectious measles virus derived from a live-attenuated measles virus strain, in which the gene encoding the viral accessory C protein has been knocked out (MV-deltaC). It concerns in particular the use of said genetically modified infectious MV-deltaC in the treatment of malignant tumor or cancer conditions, and for the preparation of agents or compositions for such treatment.
TUNABLE VACCINE PLATFORM AGAINST PATHOGENS OF THE PARAMYXOVIRUS FAMILY
Disclosed herein is a strategy for the engineering of recombinant vaccines against major human and animal pathogens of the paramyxovirus family. Also disclosed are recombinant virus able to replicate without being pathogenic. Also disclosed is a method of immunizing a subject against infection with a that involves administering to the subject a recombinant vaccine disclosed herein.