Despite numerous advances in the field of tissue engineering and regenerative medicine, monitoring the formation of tissue regeneration and its metabolic variations during culture is still a challenge and mostly limited to bulk volumetric assays. Here, a simple method of adding capsules-based optical sensors in cell-seeded 3D scaffolds is presented and the potential of these sensors to monitor the pH changes in space and time during cell growth is demonstrated. It is shown that the pH decreased over time in the 3D scaffolds, with a more prominent decrease at the edges of the scaffolds. Moreover, the pH change is higher in 3D scaffolds compared to monolayered 2D cell cultures. The results suggest that this system, composed by capsules-based ...
International audienceThree-dimensional cell culture has revolutionized cellular biology research an...
A myriad of pH-sensitive scaffolds has been reported in recent decades. Information on their behavio...
Non-invasive monitoring of tissue engineering constructs is vital for understanding the physiologica...
Despite numerous advances in the field of tissue engineering and regenerative medicine, monitoring t...
Culturing cells in 3D on appropriate scaffolds is thought to better mimic the in vivo microenvironme...
The detection of extracellular pH at single cell resolution is challenging and requires advanced sen...
This thesis describes the development and utilisation of a self-reporting scaffold to improve curren...
Paper-based cultures are an emerging platform for preparing 3D tissue-like structures. Chemical grad...
Background: The role of stem cells in tissue development and repair is beginning to be unravelled an...
The goal of bone tissue engineering is to build artificial bone tissue with properties that closely ...
Tissue scaffolds have the potential to be used for creating three dimensional (3D) tumor model const...
In the field of tissue engineering, there is a need for methods that allow assessing the performance...
Quantitative measurement of pH and metabolite gradients by microscopy is one of the challenges in th...
Bioreactor systems allow safe and reproducible production of tissue constructs and functional analys...
International audienceBackground: Engineered living materials (ELMs) combine living cells with non-l...
International audienceThree-dimensional cell culture has revolutionized cellular biology research an...
A myriad of pH-sensitive scaffolds has been reported in recent decades. Information on their behavio...
Non-invasive monitoring of tissue engineering constructs is vital for understanding the physiologica...
Despite numerous advances in the field of tissue engineering and regenerative medicine, monitoring t...
Culturing cells in 3D on appropriate scaffolds is thought to better mimic the in vivo microenvironme...
The detection of extracellular pH at single cell resolution is challenging and requires advanced sen...
This thesis describes the development and utilisation of a self-reporting scaffold to improve curren...
Paper-based cultures are an emerging platform for preparing 3D tissue-like structures. Chemical grad...
Background: The role of stem cells in tissue development and repair is beginning to be unravelled an...
The goal of bone tissue engineering is to build artificial bone tissue with properties that closely ...
Tissue scaffolds have the potential to be used for creating three dimensional (3D) tumor model const...
In the field of tissue engineering, there is a need for methods that allow assessing the performance...
Quantitative measurement of pH and metabolite gradients by microscopy is one of the challenges in th...
Bioreactor systems allow safe and reproducible production of tissue constructs and functional analys...
International audienceBackground: Engineered living materials (ELMs) combine living cells with non-l...
International audienceThree-dimensional cell culture has revolutionized cellular biology research an...
A myriad of pH-sensitive scaffolds has been reported in recent decades. Information on their behavio...
Non-invasive monitoring of tissue engineering constructs is vital for understanding the physiologica...