Considering the fact that human mesenchymal stem cells (hMSCs) replicate and differentiate multipotently, the provide a cell source for tissue engineering and cell-based test systems. For these applications well characterized in vitro models are required as well as the possibly to observe non-invasively cellular processes e.g. differentiation or necroses of these tissue models. Within this investigation non-invasive impedance spectroscopy, was used for characterization of the osteogenic development of hMSC in scaffold-free aggregates (spheroids) as an in vitro models for osteogenesis. The osteogenic differentiation of hMSCs induced specific morphological changes which should reflect in changes of the electrical properties of the cells. The ...
AbstractOsteoclasts are important target cells for osteoporosis treatment. Recently, a real-time cel...
Biological populations of cells show considerable cell-to-cell variability. Study of single cells an...
Human Mesenchymal Stem cells (hMSCs) have the unique potential to differentiate into multiple cell t...
In tissue engineering, of utmost importance is the control of tissue formation, in order to form tis...
Abstract- It has been previously shown that malignant cancer cells have different material propertie...
In tissue engineering, of utmost importance is the control of tissue formation, in order to form ti...
Objective. 3D cell cultures are becoming a fundamental resource for in-vitro studies, as they mimic ...
Human adipose stem cells (hASCs) are an attractive cell source for bone tissue engineering applicati...
AbstractFor stem cell-based tissue engineering or tissue therapy, control of the quality of isolated...
Electrical impedance measurements for mouse embryonic stem cells (mESCs) were performed to study the...
Gegenstand dieser Arbeit war die vergleichende Charakterisierung der osteogenen Differenzierung huma...
Mesenchymal stem cells represent an important resource, for bone regenerative medicine and therapeut...
We present here the first impedance-based characterization of the differentiation process of two hum...
AbstractBy measuring modulus and phase of either impedance Z or reflection coefficient S11 of differ...
AbstractElectrical impedance spectroscopy was used to characterize the cell environment of multilaye...
AbstractOsteoclasts are important target cells for osteoporosis treatment. Recently, a real-time cel...
Biological populations of cells show considerable cell-to-cell variability. Study of single cells an...
Human Mesenchymal Stem cells (hMSCs) have the unique potential to differentiate into multiple cell t...
In tissue engineering, of utmost importance is the control of tissue formation, in order to form tis...
Abstract- It has been previously shown that malignant cancer cells have different material propertie...
In tissue engineering, of utmost importance is the control of tissue formation, in order to form ti...
Objective. 3D cell cultures are becoming a fundamental resource for in-vitro studies, as they mimic ...
Human adipose stem cells (hASCs) are an attractive cell source for bone tissue engineering applicati...
AbstractFor stem cell-based tissue engineering or tissue therapy, control of the quality of isolated...
Electrical impedance measurements for mouse embryonic stem cells (mESCs) were performed to study the...
Gegenstand dieser Arbeit war die vergleichende Charakterisierung der osteogenen Differenzierung huma...
Mesenchymal stem cells represent an important resource, for bone regenerative medicine and therapeut...
We present here the first impedance-based characterization of the differentiation process of two hum...
AbstractBy measuring modulus and phase of either impedance Z or reflection coefficient S11 of differ...
AbstractElectrical impedance spectroscopy was used to characterize the cell environment of multilaye...
AbstractOsteoclasts are important target cells for osteoporosis treatment. Recently, a real-time cel...
Biological populations of cells show considerable cell-to-cell variability. Study of single cells an...
Human Mesenchymal Stem cells (hMSCs) have the unique potential to differentiate into multiple cell t...