We present here the first impedance-based characterization of the differentiation process of two human mesencephalic fetal neural stem lines. The two dopaminergic neural stem cell lines used in this study, Lund human mesencephalic (LUHMES) and human ventral mesencephalic (hVM1 Bcl-XL), have been developed for the study of Parkinsonian pathogenesis and its treatment using cell replacement therapy. We show that if only relying on impedance magnitude analysis, which is by far the most usual approach in, e.g., cytotoxicity evaluation and drug screening applications, one may not be able to distinguish whether the neural stem cells in a population are proliferating or differentiating. However, the presented results highlight that equivalent circu...
We investigated the applicability of electric impedance sensing (IS) to monitor the coverage of adhe...
Many brain-related disorders have neuronal cell death involved in their pathophysiology. Improved in...
Microfluidics has much to offer the field of stem cell biology, making interaction with single cells...
We present here the first impedance-based characterization of the differentiation process of two hum...
AbstractIn today's neurodevelopment and -disease research, human neural stem/progenitor cell-derived...
Electrical impedance measurements for mouse embryonic stem cells (mESCs) were performed to study the...
Silicon nanowire field-effect transistor (SiNW FET) devices have been interfaced with cells; however...
AbstractFor stem cell-based tissue engineering or tissue therapy, control of the quality of isolated...
Electrical property characterization of stem cells could be utilized as a potential label-free bioph...
Monitoring pluripotent stem cell behaviors (self-renewal and differentiation to specific lineages/ph...
Biological populations of cells show considerable cell-to-cell variability. Study of single cells an...
Biological populations of cells show considerable cell-to-cell variability. Study of single cells an...
AbstractBiological populations of cells show considerable cell-to-cell variability. Study of single ...
Silicon nanowire field-effect transistor (SiNW FET) devices have been interfaced with cells; however...
Stem cells exhibit unique characteristics of self-renewal and differentiation, the ability to produc...
We investigated the applicability of electric impedance sensing (IS) to monitor the coverage of adhe...
Many brain-related disorders have neuronal cell death involved in their pathophysiology. Improved in...
Microfluidics has much to offer the field of stem cell biology, making interaction with single cells...
We present here the first impedance-based characterization of the differentiation process of two hum...
AbstractIn today's neurodevelopment and -disease research, human neural stem/progenitor cell-derived...
Electrical impedance measurements for mouse embryonic stem cells (mESCs) were performed to study the...
Silicon nanowire field-effect transistor (SiNW FET) devices have been interfaced with cells; however...
AbstractFor stem cell-based tissue engineering or tissue therapy, control of the quality of isolated...
Electrical property characterization of stem cells could be utilized as a potential label-free bioph...
Monitoring pluripotent stem cell behaviors (self-renewal and differentiation to specific lineages/ph...
Biological populations of cells show considerable cell-to-cell variability. Study of single cells an...
Biological populations of cells show considerable cell-to-cell variability. Study of single cells an...
AbstractBiological populations of cells show considerable cell-to-cell variability. Study of single ...
Silicon nanowire field-effect transistor (SiNW FET) devices have been interfaced with cells; however...
Stem cells exhibit unique characteristics of self-renewal and differentiation, the ability to produc...
We investigated the applicability of electric impedance sensing (IS) to monitor the coverage of adhe...
Many brain-related disorders have neuronal cell death involved in their pathophysiology. Improved in...
Microfluidics has much to offer the field of stem cell biology, making interaction with single cells...