Bone Morphogenetic Protein-2 Binds As Multilayers To A Collagen Delivery Matrix: An Equilibrium Thermodynamic Analysis — Randy Morin (2005) | RDL Network
Recombinant human bone morphogenetic protein-2 (rhBMP-2) promotes bone growth but must be retained at the delivery site for optimal efficacy in vivo. rhBMP-2 release from a collagen-based matrix has shown favorable pharmacokinetics. The present study assessed binding affinity and binding saturation of rhBMP-2 to a collagen matrix as a function of solution and rhBMP-2 isoform variables. Results indicate that rhBMP-2 binds to the collagen matrix with affinities on the order of 103 to 104 M-1. Maximum binding, ν, was primarily a function of pH for heterogeneous rhBMP-2 and the extended (T266/T266) isoform. However, binding saturation of the <Q283/<Q283 isoform was unaffected by pH. Overall, binding saturation was higher than the calculated saturation of a rhBMP-2 monolayer, suggesting both hydrophobic and ionic interactions in a multilayer formation. The contributions of pH and ionic strength to the linkage free energy of interaction was on the order of 1.3 kcal mol-1 and ∼0.3 kcal mol-1, respectively. This thermodynamic approach can serve to optimize interactions between therapeutic proteins and delivery systems.
Menna Azzam, Sara El Safy, Sarah A. Abdelgelil, Ralf Weiskirchen, Anastasia Asimakopoulou, Federica De Lorenzi, Twan Lammers, Samar Mansour, Salma N. Tammam
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