Nanotopography with length scales of the order of extracellular matrix elements offers the possibility of regulating cell behavior. Investigation of the impact of nanotopography on cell response has been limited by the inability to precisely control geometries, especially at high spatial resolutions and across practically large areas. In this paper, we demonstrate well-controlled and periodic nanopillar arrays of silicon and investigate their impact on osteogenic differentiation of human mesenchymal stem cells (hMSCs). Silicon nanopillar arrays with critical dimensions in the range of 40-200 nm, exhibiting standard deviations below 15% across full wafers, were realized using the self-assembly of block copolymer colloids. Immunofluorescence ...
Nanotopographic cues from biomaterials exert powerful effects on the osteogenic differentiation of m...
The ability to influence stem cell differentiation is highly desirable as it would help us improve c...
Surface nanostructuring of bioresorbable polymers is a promising solution for tissue regeneration th...
International audienceNanotopography with length scales of the order of extracellular matrix element...
Nanotopography with length scales of the order of extracellular matrix elements offers the possibili...
Nanotopography with length scales of the order of extracellular matrix elements offers the possibili...
Numerous studies have determined that physical cues, especially the nanotopography of materials, pla...
Background: Patterning medical devices at the nanoscale level enables the manipulation of cell behav...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
Advanced medical devices, treatments and therapies demand an understanding of the role of interfacia...
The localized irradiation of Si allows a precise patterning at the microscale of nanostructured mate...
We aimed to assess osteogenesis in osteoprogenitor cells by nanopits and to assess optimal feature d...
In bone tissue engineering, it is desirable to use materials to control the differentiation of mesen...
Micro and nanopatterned surfaces are powerful experimental platforms for investigating the mechanism...
Controlling cell organization is still a major bottleneck in biointerface engineering when the mater...
Nanotopographic cues from biomaterials exert powerful effects on the osteogenic differentiation of m...
The ability to influence stem cell differentiation is highly desirable as it would help us improve c...
Surface nanostructuring of bioresorbable polymers is a promising solution for tissue regeneration th...
International audienceNanotopography with length scales of the order of extracellular matrix element...
Nanotopography with length scales of the order of extracellular matrix elements offers the possibili...
Nanotopography with length scales of the order of extracellular matrix elements offers the possibili...
Numerous studies have determined that physical cues, especially the nanotopography of materials, pla...
Background: Patterning medical devices at the nanoscale level enables the manipulation of cell behav...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
Advanced medical devices, treatments and therapies demand an understanding of the role of interfacia...
The localized irradiation of Si allows a precise patterning at the microscale of nanostructured mate...
We aimed to assess osteogenesis in osteoprogenitor cells by nanopits and to assess optimal feature d...
In bone tissue engineering, it is desirable to use materials to control the differentiation of mesen...
Micro and nanopatterned surfaces are powerful experimental platforms for investigating the mechanism...
Controlling cell organization is still a major bottleneck in biointerface engineering when the mater...
Nanotopographic cues from biomaterials exert powerful effects on the osteogenic differentiation of m...
The ability to influence stem cell differentiation is highly desirable as it would help us improve c...
Surface nanostructuring of bioresorbable polymers is a promising solution for tissue regeneration th...