Flow cytometry is one of the core technologies for a single cell analysis and sorting based on fluorescent markers and functional probes. Nevertheless, popular adoption and proliferation of this technology is still limited by the high cost, need for dedicated personnel, lack of miniaturization and requirement for considerable sample volumes. In this work we demonstrate that advanced multiparameter assays to track the caspase-dependent cell death can be rapidly performed using innovative microfluidic flow cytometry (μFCM). This enabling technology features a user-friendly chip-based system integrated with the dedicated off-chip electronic interface. It can perform multivariate analysis using sampling volumes as small as 10 microlitres. We fo...
On-chip flow cytometry provides a powerful tool to characterize the cell samples for point of care d...
Circulating tumor cells (CTCs) are a popular topic in cancer research because they can be obtained b...
Currently most cell-based methodologies in microfluidic systems utilize homogeneous or heterogeneous...
Flow cytometry is one of the core technologies for a single cell analysis and sorting based on fluor...
AbstractFlow cytometry is one of the core technologies for a single cell analysis and sorting based ...
Flow cytometry is one of the core technologies for single cell analysis and sorting based on fluores...
Measurement of apoptotic markers in tumors can be directly correlated with the cell cycle phase usin...
This thesis describes the development of integrated microfluidic technology for single cell proteomi...
Limitations imposed by conventional analytical technologies for cell biology, such as flow cytometry...
Limitations imposed by conventional analytical technologies for cell biology, such as flow cytometry...
Tracking and understanding cell-to-cell variability is fundamental for systems biology, cytomics and...
Introduction: Genetic and phenotypic characterization of Circulating Tumor Cells (CTC) offer the opp...
Microfluidic technologies use micrometer-sized channel networks to handle and manipulate fluids and ...
Cancer cells in blood may represent “a real time liquid biopsy” through the interrogation of single ...
Microflow cytometry represents a promising tool for the investigation of diagnostic and prognostic c...
On-chip flow cytometry provides a powerful tool to characterize the cell samples for point of care d...
Circulating tumor cells (CTCs) are a popular topic in cancer research because they can be obtained b...
Currently most cell-based methodologies in microfluidic systems utilize homogeneous or heterogeneous...
Flow cytometry is one of the core technologies for a single cell analysis and sorting based on fluor...
AbstractFlow cytometry is one of the core technologies for a single cell analysis and sorting based ...
Flow cytometry is one of the core technologies for single cell analysis and sorting based on fluores...
Measurement of apoptotic markers in tumors can be directly correlated with the cell cycle phase usin...
This thesis describes the development of integrated microfluidic technology for single cell proteomi...
Limitations imposed by conventional analytical technologies for cell biology, such as flow cytometry...
Limitations imposed by conventional analytical technologies for cell biology, such as flow cytometry...
Tracking and understanding cell-to-cell variability is fundamental for systems biology, cytomics and...
Introduction: Genetic and phenotypic characterization of Circulating Tumor Cells (CTC) offer the opp...
Microfluidic technologies use micrometer-sized channel networks to handle and manipulate fluids and ...
Cancer cells in blood may represent “a real time liquid biopsy” through the interrogation of single ...
Microflow cytometry represents a promising tool for the investigation of diagnostic and prognostic c...
On-chip flow cytometry provides a powerful tool to characterize the cell samples for point of care d...
Circulating tumor cells (CTCs) are a popular topic in cancer research because they can be obtained b...
Currently most cell-based methodologies in microfluidic systems utilize homogeneous or heterogeneous...