During the past decades, there have been major advances in the field of biomaterials, thereby generating a vast variety of materials for a broad range of tissue engineering and regeneration applications. Although gene expression profiling has been used occasionally in biomaterial research, its usefulness for understanding cell-biomaterial interactions should be further explored for it to fulfill its promise as a tool to assess and improve material properties. Here, the transcriptional landscape induced by 23 materials is explored with a variety of properties within the scope of bone regeneration. An osteoblast cell line is used to identify the gene expression profiles that can be adopted in response to biophysical and chemical cues. It is s...
Stem cells respond to the physicochemical parameters of the substrate on which they grow. Quantitati...
Pure titanium and titanium alloys are materials widely used in orthopedics and dental surgery becaus...
Biomaterials have been utilized routinely during maxillofacial, craniofacial, and orthopaedic recons...
During the past decades, there have been major advances in the field of biomaterials, thereby genera...
New engineering possibilities allow biomaterials to serve as active orchestrators of the molecular a...
Spinal fusions and the repair of large bone defects resulting from trauma, tumors, infections or abn...
Calcium phosphates (CaPs) are extensively used as biomaterials for bone repair and regeneration and ...
Bone is a highly dynamic and specialized tissue, capable of regenerating itself spontaneously when a...
The periosteum is a highly vascularised, collagen-rich tissue that plays a crucial role in directing...
Nanotopographic cues from biomaterials exert powerful effects on the osteogenic differentiation of m...
Contains fulltext : 88529.pdf (publisher's version ) (Closed access)In bone tissue...
BACKGROUND: Mesenchymal stem cells (MSC) represent a particularly attractive cell type for bone tiss...
The regenerative medicine, a new discipline that merges biological sciences and the fundamental of e...
Nanotopographic cues from biomaterials exert powerful effects on the osteogenic differentiation of m...
Stem cells respond to the physicochemical parameters of the substrate on which they grow. Quantitati...
Pure titanium and titanium alloys are materials widely used in orthopedics and dental surgery becaus...
Biomaterials have been utilized routinely during maxillofacial, craniofacial, and orthopaedic recons...
During the past decades, there have been major advances in the field of biomaterials, thereby genera...
New engineering possibilities allow biomaterials to serve as active orchestrators of the molecular a...
Spinal fusions and the repair of large bone defects resulting from trauma, tumors, infections or abn...
Calcium phosphates (CaPs) are extensively used as biomaterials for bone repair and regeneration and ...
Bone is a highly dynamic and specialized tissue, capable of regenerating itself spontaneously when a...
The periosteum is a highly vascularised, collagen-rich tissue that plays a crucial role in directing...
Nanotopographic cues from biomaterials exert powerful effects on the osteogenic differentiation of m...
Contains fulltext : 88529.pdf (publisher's version ) (Closed access)In bone tissue...
BACKGROUND: Mesenchymal stem cells (MSC) represent a particularly attractive cell type for bone tiss...
The regenerative medicine, a new discipline that merges biological sciences and the fundamental of e...
Nanotopographic cues from biomaterials exert powerful effects on the osteogenic differentiation of m...
Stem cells respond to the physicochemical parameters of the substrate on which they grow. Quantitati...
Pure titanium and titanium alloys are materials widely used in orthopedics and dental surgery becaus...
Biomaterials have been utilized routinely during maxillofacial, craniofacial, and orthopaedic recons...