BackgroundCells explore the surfaces of materials through membrane-bound receptors, such as the integrins, and use them to interact with extracellular matrix molecules adsorbed on the substrate surfaces, resulting in the formation of focal adhesions. With recent advances in nanotechnology, biosensors and bioelectronics are being fabricated with ever decreasing feature sizes. The performances of these devices depend on how cells interact with nanostructures on the device surfaces. However, the behavior of cells on nanostructures is not yet fully understood. Here we present a systematic study of cell-nanostructure interaction using polymeric nanopillars with various diameters.ResultsWe first checked the viability of cells grown on nanopillars...
During adhesion and spreading, cells form micrometer-sized structures comprising transmembrane and i...
Surface nanotopography is widely employed to control cell behavior and in particular controlled diso...
Cells in the human body come across many types of information, which they respond to. Both material ...
BackgroundCells explore the surfaces of materials through membrane-bound receptors, such as the inte...
BackgroundCells explore the surfaces of materials through membrane-bound receptors, such as the inte...
Background In this work, we explore how U2OS cells are affected by arrays of polymer...
Abstract Background In this work, we explore how U2OS cells are affected by arrays of polymer nanopi...
Background In this work, we explore how U2OS cells are affected by arrays of polymer nanopillars fab...
For a physical understanding of adhesion, surfaces of defined adhesion properties are required. In t...
Surfaces decorated with high aspect ratio nanostructures are a promising tool to study cellular proc...
Abstract Polymer nanopillars (40-80 nm in diameter and 100 nm in pitch) were fabricated at high dens...
Micro and nanopatterned surfaces are powerful experimental platforms for investigating the mechanism...
[[sponsorship]]應用科學研究中心[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/G...
Cell adhesion and migration play a fundamental role during development and maintenance of multicellu...
During adhesion and spreading, cells form micrometer-sized structures comprising transmembrane and i...
During adhesion and spreading, cells form micrometer-sized structures comprising transmembrane and i...
Surface nanotopography is widely employed to control cell behavior and in particular controlled diso...
Cells in the human body come across many types of information, which they respond to. Both material ...
BackgroundCells explore the surfaces of materials through membrane-bound receptors, such as the inte...
BackgroundCells explore the surfaces of materials through membrane-bound receptors, such as the inte...
Background In this work, we explore how U2OS cells are affected by arrays of polymer...
Abstract Background In this work, we explore how U2OS cells are affected by arrays of polymer nanopi...
Background In this work, we explore how U2OS cells are affected by arrays of polymer nanopillars fab...
For a physical understanding of adhesion, surfaces of defined adhesion properties are required. In t...
Surfaces decorated with high aspect ratio nanostructures are a promising tool to study cellular proc...
Abstract Polymer nanopillars (40-80 nm in diameter and 100 nm in pitch) were fabricated at high dens...
Micro and nanopatterned surfaces are powerful experimental platforms for investigating the mechanism...
[[sponsorship]]應用科學研究中心[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/G...
Cell adhesion and migration play a fundamental role during development and maintenance of multicellu...
During adhesion and spreading, cells form micrometer-sized structures comprising transmembrane and i...
During adhesion and spreading, cells form micrometer-sized structures comprising transmembrane and i...
Surface nanotopography is widely employed to control cell behavior and in particular controlled diso...
Cells in the human body come across many types of information, which they respond to. Both material ...