Abstract:
Engineered multivalent and multispecific binding proteins, methods of making, and specifically to their uses in the prevention, diagnosis, and/or treatment of disease are provided.
Abstract:
The present invention relates to engineered multivalent and multispecific binding proteins, methods of making, and specifically to their uses in the prevention, diagnosis, and/or treatment of disease.
Abstract:
The present invention relates to engineered multivalent and multispecific binding proteins, methods of making, and specifically to their uses in the prevention, diagnosis, and/or treatment of disease.
Abstract:
Se proporcionan proteínas de unión multivalentes y multiespecíficas diseñadas por ingeniería, métodos para elaborarlas y sus usos en la prevención, el diagnóstico y/o el tratamiento de enfermedades.
Abstract:
The present invention relates to engineered multivalent and multispecific binding proteins, methods of making, and specifically to their uses in the prevention, diagnosis, and/or treatment of disease.
Abstract:
The present invention relates to engineered multivalent and multispecific binding proteins, methods of making, and specifically to their uses in the prevention, diagnosis, and/or treatment of disease.
Abstract:
Disclosed is a binding protein comprising first and second polypeptide chains, each independently comprising VD1-(X1)n-VD2-C-(X2)n, wherein VD1 is a first variable domain; VD2 is a second variable domain; C is a constant domain; X1 is a linker with the proviso that it is not CH1; X2 is an Fc region; n is 0 or 1. Furthermore, the VD1 domains on the first and second polypeptide chains form a first functional target binding site and the VD2 domains on the first and second polypeptide chains form a second functional target binding site and are as defined in the specification. The disclosed binding protein is capable of binding to VEGF with an EC50 of at most about 28.25 nM, as measured by direct bind ELISA, and/or the binding protein is capable of binding to DLL4 with an EC50 of at most about 2.12nM, as measured by direct bind ELISA.