Mechanical stimulation, especially fluid shear stress (FSS), is essential for a cell to regulate regular behaviors. A high-throughput platform to provide varying FSS for cell research is desperately required for better mimicking of the complex fluidic microenvironment. This work reports an integrated microfluidic chip that could afford five different FSS gradients consistently to investigate drug toxicity on cells with the stimulation of FSS. Compared with traditional methods to provide FSS, this device would be easier to operate, have higher throughput, and could eliminate interference factors from the culture environment for cells (apart from the unique variable FSS). On such a multi-FSS platform, effects of drugs toxicity on cells were e...
Microfluidic devices provide low sample consumption, high throughput, high integration, and good env...
Drug discovery is an expensive and lengthy process. Among the different phases, drug discovery and p...
Mesenchymal Stem Cells (MSC) are multipotent stem cells that are predominantly obtained from the bon...
The ability to generate chemical and mechanical gradients on chips is important both for creating bi...
Shear stress of physiological flows in the human body plays a critical role in maintaining the struc...
Enabling the high-throughput biological assays requires a favorable biomimetic environment with appr...
Microfluidics, the science of engineering fluid streams at the micrometer scale, offers unique tools...
Microfluidic technology is a rapidly progressing tool in biomedical engineering. Microfluidic device...
Future drug discovery and toxicology testing could benefit significantly from more predictive and mu...
Future drug discovery and toxicology testing could benefit significantly from more predictive and mu...
Epithelial cells experience constant mechanical forces, including fluid shear stress (FSS) on their ...
Interstitial fluid flow (IFF) within the extracellular matrix (ECM) produces low magnitude shear str...
Interstitial fluid flow (IFF) within the extracellular matrix (ECM) produces low magnitude shear str...
Several devices which can apply biomechanical stresses, such as shear stress, to living cells are av...
Fluid flow and flow-induced shear stress are critical components of the vascular microenvironment co...
Microfluidic devices provide low sample consumption, high throughput, high integration, and good env...
Drug discovery is an expensive and lengthy process. Among the different phases, drug discovery and p...
Mesenchymal Stem Cells (MSC) are multipotent stem cells that are predominantly obtained from the bon...
The ability to generate chemical and mechanical gradients on chips is important both for creating bi...
Shear stress of physiological flows in the human body plays a critical role in maintaining the struc...
Enabling the high-throughput biological assays requires a favorable biomimetic environment with appr...
Microfluidics, the science of engineering fluid streams at the micrometer scale, offers unique tools...
Microfluidic technology is a rapidly progressing tool in biomedical engineering. Microfluidic device...
Future drug discovery and toxicology testing could benefit significantly from more predictive and mu...
Future drug discovery and toxicology testing could benefit significantly from more predictive and mu...
Epithelial cells experience constant mechanical forces, including fluid shear stress (FSS) on their ...
Interstitial fluid flow (IFF) within the extracellular matrix (ECM) produces low magnitude shear str...
Interstitial fluid flow (IFF) within the extracellular matrix (ECM) produces low magnitude shear str...
Several devices which can apply biomechanical stresses, such as shear stress, to living cells are av...
Fluid flow and flow-induced shear stress are critical components of the vascular microenvironment co...
Microfluidic devices provide low sample consumption, high throughput, high integration, and good env...
Drug discovery is an expensive and lengthy process. Among the different phases, drug discovery and p...
Mesenchymal Stem Cells (MSC) are multipotent stem cells that are predominantly obtained from the bon...