Mesenchymal stem cells represent an important resource, for bone regenerative medicine and therapeutic applications. This review focuses on new advancements and biophysical tools which exploit different physical and chemical markers of mesenchymal stem cell populations, to finely characterize phenotype changes along their osteogenic differentiation process. Special attention is paid to recently developed label-free methods, which allow monitoring cell populations with minimal invasiveness. Among them, quantitative phase imaging, suitable for single-cell morphometric analysis, and nanoindentation, functional to cellular biomechanics investigation. Moreover, the pool of ion channels expressed in cells during differentiation is discussed, with...
Precise quantification of cellular potential of stem cells, such as human bone marrow–derived mesenc...
Stem cells have the capacity to differentiate into various lineages, and the ability to reliably dir...
Control of stem cell behavior is a crucial aspect of developmental biology and regenerative medicine...
[EN] Mesenchymal stem cells represent an important resource, for bone regenerative medicine and ther...
The aim of this work was to identify robust and reproducible signatures characterizing the different...
The spatial and temporal changes of morphological and mechanical properties of living cells reflect ...
<div><p>Human bone marrow mesenchymal stem cells (hBMSCs) are widely used cell source for clinical b...
The stroma of human bone marrow contains a population of skeletal stem cells (hBM-MSC) which are com...
ABSTRACT: Human bone marrow mesenchymal stem cells (hBMSCs) represents one of the most frequently ap...
Conventional measurements of osteogenesis in tissue-engineered constructs are destructive to living ...
Cellular biophysical properties are novel biomarkers of cell phenotypes which may reflect the status...
A prominent feature of the skeleton is its ability to remodel in response to biophysical stimuli and...
Current methods to characterize mesenchymal stem cells (MSCs) are limited to CD marker expression, p...
International audienceOsteogenesis is the process by which mesenchymal stem cells differentiate to o...
Abstract Background Differentiation of mesenchymal stem cells to osteoblasts is widely performed in ...
Precise quantification of cellular potential of stem cells, such as human bone marrow–derived mesenc...
Stem cells have the capacity to differentiate into various lineages, and the ability to reliably dir...
Control of stem cell behavior is a crucial aspect of developmental biology and regenerative medicine...
[EN] Mesenchymal stem cells represent an important resource, for bone regenerative medicine and ther...
The aim of this work was to identify robust and reproducible signatures characterizing the different...
The spatial and temporal changes of morphological and mechanical properties of living cells reflect ...
<div><p>Human bone marrow mesenchymal stem cells (hBMSCs) are widely used cell source for clinical b...
The stroma of human bone marrow contains a population of skeletal stem cells (hBM-MSC) which are com...
ABSTRACT: Human bone marrow mesenchymal stem cells (hBMSCs) represents one of the most frequently ap...
Conventional measurements of osteogenesis in tissue-engineered constructs are destructive to living ...
Cellular biophysical properties are novel biomarkers of cell phenotypes which may reflect the status...
A prominent feature of the skeleton is its ability to remodel in response to biophysical stimuli and...
Current methods to characterize mesenchymal stem cells (MSCs) are limited to CD marker expression, p...
International audienceOsteogenesis is the process by which mesenchymal stem cells differentiate to o...
Abstract Background Differentiation of mesenchymal stem cells to osteoblasts is widely performed in ...
Precise quantification of cellular potential of stem cells, such as human bone marrow–derived mesenc...
Stem cells have the capacity to differentiate into various lineages, and the ability to reliably dir...
Control of stem cell behavior is a crucial aspect of developmental biology and regenerative medicine...