Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fields, especially for surface-processing applications and miniaturization of biological assays. Herein, we selected micromilling as a low-cost technology and proposed an approach capable of overcoming its limitations; in fact, microstructures below 20-30 m in depth are difficult to obtain, and the manufacturing error is rather high, as it is inversely proportional to the depth. Indeed, the proposed method uses a confined dehydration process of a patterned gelatin substrate fabricated via replica molding onto a micromilled poly(methyl methacrylate) substrate to produce a gelatin master with demonstrated final micrometric features down to 3 m fo...
International audienceTraditional two-dimensional (2D) cell culture models are limited in their abil...
International audienceTraditional two-dimensional (2D) cell culture models are limited in their abil...
We have developed a straightforward technique for fabricating user-friendly and biomimetic microflui...
Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fi...
Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fi...
Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fi...
Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fi...
Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fi...
Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fi...
Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fi...
Traditional two-dimensional (2D) cell culture models are limited in their ability to reproduce human...
International audienceTraditional two-dimensional (2D) cell culture models are limited in their abil...
International audienceTraditional two-dimensional (2D) cell culture models are limited in their abil...
Traditional two-dimensional (2D) cell culture models are limited in their ability to reproduce human...
International audienceTraditional two-dimensional (2D) cell culture models are limited in their abil...
International audienceTraditional two-dimensional (2D) cell culture models are limited in their abil...
International audienceTraditional two-dimensional (2D) cell culture models are limited in their abil...
We have developed a straightforward technique for fabricating user-friendly and biomimetic microflui...
Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fi...
Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fi...
Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fi...
Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fi...
Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fi...
Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fi...
Nowadays, microfluidic channels of a few tens of micrometers are required and widely used in many fi...
Traditional two-dimensional (2D) cell culture models are limited in their ability to reproduce human...
International audienceTraditional two-dimensional (2D) cell culture models are limited in their abil...
International audienceTraditional two-dimensional (2D) cell culture models are limited in their abil...
Traditional two-dimensional (2D) cell culture models are limited in their ability to reproduce human...
International audienceTraditional two-dimensional (2D) cell culture models are limited in their abil...
International audienceTraditional two-dimensional (2D) cell culture models are limited in their abil...
International audienceTraditional two-dimensional (2D) cell culture models are limited in their abil...
We have developed a straightforward technique for fabricating user-friendly and biomimetic microflui...