Be-Flow Standard
€ 200,0
Be-Flow: is our easiest-to-use device dedicated to cell culture under flow. It allows the performance of long-term 2D culture in two independent channels. This is an optimal device for vascular research where shear stress plays a major role in gene expression and for the study of the effect of circulating particles.
· 10 devices per box
· For special requests. Contact >
· Would you like to see more information culture models, applications, video tutorials or downloading the PDF user guide of the Be-Flow.
Be-Flow Standard
€ 200,0
Be-Flow: is our easiest-to-use device dedicated to cell culture under flow. It allows the performance of long-term 2D culture in two independent channels. This is an optimal device for vascular research where shear stress plays a major role in gene expression and for the study of the effect of circulating particles.
Worldwide commercial network
We ship our products worldwide working with the best carriers.
Delivery time
Fast and efficient delivery times.
After-sales support
Live communication for assist you throughout all the process.
Worldwide commercial network
We ship our products worldwide working with the best carriers.
Delivery time
Fast and efficient delivery times.
After-sales support
Live communication for assist you throughout all the process.
Worldwide commercial network
We ship our products worldwide working with the best carriers.
Delivery time
Fast and efficient delivery times.
After-sales support
Live communication for assist you throughout all the process.
Be-Flow Standard
Perform 2D cell culture experiments under flow controlling the mechanical shear stress on the cells in two independent microfluidic channels.
Be-Flow device allows 2D culture on all the walls of the device: top, bottom, … (see technical note). Co-culture with two different cell types monolayer is also possible.
Investigate the effect of circulating particles such as circulating tumor cells, immune system cells, bacteria, fungi, viruses and many more in a 2D culture.
This device consists of two independent fluidic channels that allow perfusion of culture medium for the application of biomimetic shear forces. Despite being a simple device, the potential applications are quite varied:
- Vascular endothelium models: Endothelial cells lining blood vessels are subjected to shear stress forces due to blood flow within the vessels. This shear stress is crucial for vascular homeostasis and endothelial function. Also applicable to lymphatic vessels.
- Simple epithelium models with physiological shear stress effect: intestinal, renal epithelium.
- The epithelial cells lining the small and large intestines may be exposed to shear stress forces due to the flow of fluid and nutrients through the gastrointestinal tract. This can influence intestinal barrier function, nutrient absorption, and the immune response of the intestine.
- Renal tubules and glomeruli are exposed to shear stress generated by the flow of fluid through the urinary system. Renal shear stress can influence glomerular filtration function and tubular reabsorption.
- Rolling and adhesion assays to study the ability of cells such as leukocytes to adhere and roll on an endothelial surface. This process is crucial for immune response and inflammation processes.
- Circulating particle assays involving immune system cells, vesicles, nanoparticles, encapsulated drugs, circulating tumor cells, bacteria, virus, under blood flow conditions.
- Biofilm studies. Flow significantly affects biofilm formation and function, influencing bacterial movement, adhesion, genetic behavior, EPS production, communication, and nutrient transport. Bacterial adhesion and growth under flow conditions better mimic their natural environment.
Compatible techniques for device use:
- High-resolution microscopy for live and fixed cells: immunofluorescence.
- Cell extraction for flow cytometry, qPCR, or western blot.
- Liquid exchange control and automation.
- Optical mapping.
- Plate reader.
Product Customization
Would you like to modify the channel dimensions or base type of your Be-Flow?
Product Customization
Would you like to modify the channel dimensions or base type of your Be-Flow?
Latests publications
Nanoscale 2024, 16(4), pp. 1711–1723.
https://doi.org/10.1101/2023.11.22.568251
Lab Chip, 2022,22, 4443-4455.Â
All publications  ›
Latests publications
Nanoscale 2024, 16(4), pp. 1711–1723.
https://doi.org/10.1101/2023.11.22.568251
Lab Chip, 2022,22, 4443-4455.Â
All publications  ›
Ask for info
If you would like to request more info of the Be-transflow, contact us or request a meeting with our team here.
Contact  ›
Ask for info
If you would like to request more info of the Be-transflow, contact us or request a meeting with our team here.
Contact  ›