Characterization of single cell metabolism is imperative for understanding subcellular functional and biochemical changes associated with healthy tissue development and the progression of numerous diseases. However, single-cell analysis often requires the use of fluorescent tags and cell lysis followed by genomic profiling to identify the cellular heterogeneity. Identifying individual cells in a noninvasive and label-free manner is crucial for the detection of energy metabolism which will discriminate cell types and most importantly critical for maintaining cell viability for further analysis. Here, we have developed a robust assay using the droplet microfluidic technology together with the phasor approach to fluorescence lifetime imaging m...
Droplet microfluidics is an emerging technology for analysis of single cells and biomolecules at hig...
Fluorescence lifetime imaging microscopy (FLIM) can measure and discriminate endogenous fluorophores...
Today many cell biological techniques study large cell populations where an average estimate of indi...
Characterization of single cell metabolism is imperative for understanding subcellular functional an...
The rapid screening and isolation of single leukemia cells from blood has become critical for early ...
Molecular, morphological, and physiological heterogeneity is the inherent property of cells which go...
We develop a label-free optical technique to image and discriminate undifferentiated human embryonic...
We describe a label-free imaging method to monitor stem-cell metabolism that discriminates different...
Identification of rare cell types can enable early detection of disease and enhance the fundamental ...
We use the phasor approach to fluorescence lifetime imaging and intrinsic biochemical fluorescence b...
Automated and unbiased methods of non-invasive cell monitoring able to deal with complex biological ...
Single-cell analysis is of critical importance in revealing population heterogeneity, identifying mi...
Cancer cells release high levels of lactate that has been correlated to increased metastasis and tum...
Cellular functional and structural changes associated with metabolism are essential for understandin...
Abstract Droplet microfluidics has revolutionized the study of single cells. The ability to compartm...
Droplet microfluidics is an emerging technology for analysis of single cells and biomolecules at hig...
Fluorescence lifetime imaging microscopy (FLIM) can measure and discriminate endogenous fluorophores...
Today many cell biological techniques study large cell populations where an average estimate of indi...
Characterization of single cell metabolism is imperative for understanding subcellular functional an...
The rapid screening and isolation of single leukemia cells from blood has become critical for early ...
Molecular, morphological, and physiological heterogeneity is the inherent property of cells which go...
We develop a label-free optical technique to image and discriminate undifferentiated human embryonic...
We describe a label-free imaging method to monitor stem-cell metabolism that discriminates different...
Identification of rare cell types can enable early detection of disease and enhance the fundamental ...
We use the phasor approach to fluorescence lifetime imaging and intrinsic biochemical fluorescence b...
Automated and unbiased methods of non-invasive cell monitoring able to deal with complex biological ...
Single-cell analysis is of critical importance in revealing population heterogeneity, identifying mi...
Cancer cells release high levels of lactate that has been correlated to increased metastasis and tum...
Cellular functional and structural changes associated with metabolism are essential for understandin...
Abstract Droplet microfluidics has revolutionized the study of single cells. The ability to compartm...
Droplet microfluidics is an emerging technology for analysis of single cells and biomolecules at hig...
Fluorescence lifetime imaging microscopy (FLIM) can measure and discriminate endogenous fluorophores...
Today many cell biological techniques study large cell populations where an average estimate of indi...