Abstract:
The present invention provides very high affinity antibodies, or antigen-binding fragments thereof, that neutralize mature human TGF-β1, TGF-β2, and TGF-β3. The antibodies of the invention are useful for treating cell proliferative disorders in a mammal.
Abstract:
The present invention provides very high affinity antibodies, or antigen-binding fragments thereof, that neutralize mature human TGF-β1, TGF-β2, and TGF-β3. The antibodies of the invention are useful for treating cell proliferative disorders in a mammal.
Abstract:
The invention provides twenty-one butyrylcholinesterase variants having increased cocaine hydrolysis activity as well as the corresponding encoding nucleic acids. The invention further provides methods of hydrolyzing a cocaine-based butyrylcholinesterase substrate as well as methods of treating a cocaine-induced condition.
Abstract:
The invention provides a butyrylcholinesterase variant having increased cocaine hydrolysis activity as well as the corresponding encoding nucleic acid. The invention further provides methods of hydrolyzing a cocaine-based butyrylcholinesterase substrate as well as methods of treating a cocaine-induced condition with the invention variant.
Abstract:
The present invention provides very high affinity antibodies, or antigen-binding fragments thereof, that neutralize mature human TGF-β1, TGF-β2, and TGF-β3. The antibodies of the invention are useful for mating cell proliferative disorders in a mammal.
Abstract:
The present invention provides very high affinity antibodies, or antigen-binding fragments thereof, that neutralize mature human TGF-β1, TGF-β2, and TGF-β3. The antibodies of the invention are useful for treating cell proliferative disorders in a mammal.