Manufacturing high throughput in vitro models resembling the tissue microenvironment is highly demanded for studying bone regeneration. Tissues such as bone have complex multiscale architectures inside which cells reside. To this end, engineering a microfluidic platform incorporated with three-dimensional (3D) microscaffolds and submicron/nanoscale topographies can provide a promising model for 3D cell cultures. There are, however, certain challenges associated with this goal, such as the need to decorate large surfaces area with high-fidelity 3D submicron structures. Here, we succeeded in fabricating a microfluidic platform embedded with a large area (mm range) of reproducible submicron pillar-based topographies. Using the two-photon polym...
Micro-Electro-Mechanical Systems (MEMS) technologies illustrate the potential for many applications ...
The evolution of microfabrication has greatly contributed to the advances in biology and medicine, a...
Fabricating large areas of geometrically complex and precisely controlled topographies is required f...
Manufacturing high throughput in vitro models resembling the tissue microenvironment is highly deman...
A major challenge facing the study of bone regeneration today is the inability to mimic the tissue m...
Manufacturing high throughput in vitro models resembling the tissue microenvironment is highly deman...
Despite the technological advances of the last decades, drug development remains a lengthy and costl...
Despite the technological advances of the last decades, drug development remains a lengthy and costl...
The surface topography of engineered extracellular matrices is one of the most important physical cu...
Osteoimmunomodulation (OIM) is a mechanism through which orthopedic biomaterials may modulate the fu...
Organ-on-chip models, developed using microengineering and microfluidic technologies, aim to recreat...
Organ-on-chip models, developed using microengineering and microfluidic technologies, aim to recreat...
Organ-on-chip models, developed using microengineering and microfluidic technologies, aim to recreat...
Bone is a complex and highly dynamic tissue, which has been worldwide studied, from fundamental biol...
Fabricating large areas of geometrically complex and precisely controlled topographies is required f...
Micro-Electro-Mechanical Systems (MEMS) technologies illustrate the potential for many applications ...
The evolution of microfabrication has greatly contributed to the advances in biology and medicine, a...
Fabricating large areas of geometrically complex and precisely controlled topographies is required f...
Manufacturing high throughput in vitro models resembling the tissue microenvironment is highly deman...
A major challenge facing the study of bone regeneration today is the inability to mimic the tissue m...
Manufacturing high throughput in vitro models resembling the tissue microenvironment is highly deman...
Despite the technological advances of the last decades, drug development remains a lengthy and costl...
Despite the technological advances of the last decades, drug development remains a lengthy and costl...
The surface topography of engineered extracellular matrices is one of the most important physical cu...
Osteoimmunomodulation (OIM) is a mechanism through which orthopedic biomaterials may modulate the fu...
Organ-on-chip models, developed using microengineering and microfluidic technologies, aim to recreat...
Organ-on-chip models, developed using microengineering and microfluidic technologies, aim to recreat...
Organ-on-chip models, developed using microengineering and microfluidic technologies, aim to recreat...
Bone is a complex and highly dynamic tissue, which has been worldwide studied, from fundamental biol...
Fabricating large areas of geometrically complex and precisely controlled topographies is required f...
Micro-Electro-Mechanical Systems (MEMS) technologies illustrate the potential for many applications ...
The evolution of microfabrication has greatly contributed to the advances in biology and medicine, a...
Fabricating large areas of geometrically complex and precisely controlled topographies is required f...