Abstract Background The interfacial molecular mechanisms that regulate mammalian cell growth and differentiation have important implications for biotechnology (production of cells and cell products) and medicine (tissue engineering, prosthetic implants, cancer and developmental biology). We demonstrate here that engineered protein motifs can be robustly displayed to mammalian cells in vitro in a highly controlled manner using a soluble protein scaffold designed to self assemble on a gold surface. Results A protein was engineered to contain a C-terminal cysteine that would allow chemisorption to gold, followed by 12 amino acids that form a water soluble coil that could switch to a hydrophobic helix in the presence of alkane thiols. Bioactive...
Cell-extracellular matrix (ECM) interactions play a central role in tissue architecture and turnover...
Abstract: Cell interactions with the extracellular matrix play important roles in guiding tissue mor...
Engineering the osteochondral tissue presents some challenges mainly relying in its function of tran...
Surface modification stands out as a versatile technique to create instructive biomaterials that are...
Different therapeutic strategies for the treatment of non-healing long bone defects have been intens...
Bone extracellular matrix consists of a network of proteins in which growth factors, like bone morph...
Bone morphogenetic protein 2 (BMP-2) has been known for decades as a strong osteoinductive factor an...
Cell–material interactions are regulated by mimicking bone extracellular matrix on the surface of bi...
Cell adhesion on surfaces is a fundamental process in the emerging biomaterials field and developmen...
Cell adhesion on surfaces is a fundamental process in the emerging biomaterials field and developmen...
Bone morphogenetic protein (BMP)-2 has a critical role in bone formation and regeneration. Therefore...
Engineered scaffolds for bone tissue regeneration are designed to promote cell adhesion, growth, pro...
Recreating the healing microenvironment is essential to regulate cell-material interactions and ensu...
Within the native microenvironment, extracellular matrix (ECM) components are thought to display a c...
Limitations of current clinical treatments for critical size bone defects have motivated the develop...
Cell-extracellular matrix (ECM) interactions play a central role in tissue architecture and turnover...
Abstract: Cell interactions with the extracellular matrix play important roles in guiding tissue mor...
Engineering the osteochondral tissue presents some challenges mainly relying in its function of tran...
Surface modification stands out as a versatile technique to create instructive biomaterials that are...
Different therapeutic strategies for the treatment of non-healing long bone defects have been intens...
Bone extracellular matrix consists of a network of proteins in which growth factors, like bone morph...
Bone morphogenetic protein 2 (BMP-2) has been known for decades as a strong osteoinductive factor an...
Cell–material interactions are regulated by mimicking bone extracellular matrix on the surface of bi...
Cell adhesion on surfaces is a fundamental process in the emerging biomaterials field and developmen...
Cell adhesion on surfaces is a fundamental process in the emerging biomaterials field and developmen...
Bone morphogenetic protein (BMP)-2 has a critical role in bone formation and regeneration. Therefore...
Engineered scaffolds for bone tissue regeneration are designed to promote cell adhesion, growth, pro...
Recreating the healing microenvironment is essential to regulate cell-material interactions and ensu...
Within the native microenvironment, extracellular matrix (ECM) components are thought to display a c...
Limitations of current clinical treatments for critical size bone defects have motivated the develop...
Cell-extracellular matrix (ECM) interactions play a central role in tissue architecture and turnover...
Abstract: Cell interactions with the extracellular matrix play important roles in guiding tissue mor...
Engineering the osteochondral tissue presents some challenges mainly relying in its function of tran...