This deliverable is a public scientific report on first findings of interaction between cells and nanostructures by partner FORTH and INFPLR. It contains, among others, images of the structures before cell culture and images (confocal, optical, epifluorescence and SEM microscopes) by FORTH and in vitro studies on the interaction of the technical surfaces with specific cell lines by INFLPR.This report is part of the project BioCombs4Nanofibers that has received funding from the European Union's Horizon 2020 research and innovation programme under grant agreement No 862016
Cells can perceive complex mechanical cues across both the micro‐ and nanoscale which can influence ...
Mesenchymal stem cells (MSCs) show a high potential in cell-based therapies for a wide range of dise...
The interfacing of technology and living cells in the nanoscale domain -nanobionics- is being enable...
This project deliverable is a publication on replication of nano- and micro-structured biological or...
New technology developments foster new biology. Beginning from the early observation of cells by Ro...
Title: Microfl uidically-unifi ed cell culture, sample preparation, imaging and fl ow cytometry for ...
We aim at creating novel microfluidic devices in order to monitor cell growth, cell activation, prol...
We aim at creating novel microfluidic devices in order to monitor cell growth, cell activation, prol...
Microfabricated systems equipped with 3D cell culture devices and in-situ cellular biosensing tools ...
It is at the heart of biological and medical research to try and understand how cells communicate wi...
Nanoparticles have established themselves firmly within the biomedical field due to their fine tunea...
The advancement of stem cell science is dependent on first class research with integration of many l...
Cells are able to perceive complex mechanical cues across both the micro- and nanoscale which can in...
Nowadays, bioaffinity studies of materials are playing a key role in the realization of microdevices...
The "Visible Cell" project is a research project being undertaken at the ARC Centre in Bioinformatic...
Cells can perceive complex mechanical cues across both the micro‐ and nanoscale which can influence ...
Mesenchymal stem cells (MSCs) show a high potential in cell-based therapies for a wide range of dise...
The interfacing of technology and living cells in the nanoscale domain -nanobionics- is being enable...
This project deliverable is a publication on replication of nano- and micro-structured biological or...
New technology developments foster new biology. Beginning from the early observation of cells by Ro...
Title: Microfl uidically-unifi ed cell culture, sample preparation, imaging and fl ow cytometry for ...
We aim at creating novel microfluidic devices in order to monitor cell growth, cell activation, prol...
We aim at creating novel microfluidic devices in order to monitor cell growth, cell activation, prol...
Microfabricated systems equipped with 3D cell culture devices and in-situ cellular biosensing tools ...
It is at the heart of biological and medical research to try and understand how cells communicate wi...
Nanoparticles have established themselves firmly within the biomedical field due to their fine tunea...
The advancement of stem cell science is dependent on first class research with integration of many l...
Cells are able to perceive complex mechanical cues across both the micro- and nanoscale which can in...
Nowadays, bioaffinity studies of materials are playing a key role in the realization of microdevices...
The "Visible Cell" project is a research project being undertaken at the ARC Centre in Bioinformatic...
Cells can perceive complex mechanical cues across both the micro‐ and nanoscale which can influence ...
Mesenchymal stem cells (MSCs) show a high potential in cell-based therapies for a wide range of dise...
The interfacing of technology and living cells in the nanoscale domain -nanobionics- is being enable...