The differentiation of endothelial cells from human iPSC has incontestable advantages in diseases research and therapeutic applications. However, the safe use of iPSC derivatives in regenerative medicine requires an enhanced understanding and control of factors that optimize in vitro reprogramming and differentiation protocols. Shifts in cellular metabolism associated with intracellular pH changes affect the enzymes that control epigenetic configuration, which impact chromatin reorganization and gene expression changes during reprogramming and differentiation. FLIM-based metabolic imaging of NADH and FAD is a powerful tool for measuring mitochondrial metabolic state and widely used diagnostic method for identification of neoplastic diseases...
Hematopoietic stem cells (HSC) are responsible for the life-long maintenance of our blood system. Th...
AbstractThe redox states of the NAD and NADP pyridine nucleotide pools play critical roles in defini...
BACKGROUND: Protons are pumped from the mitochondrial matrix via oxidative phosphorylation (OXPHOS) ...
The changes in cell metabolism can affect the epigenome-modifying enzymes activity during iPSCs diff...
Neurogenesis in vivo is a long and complex process, characterised by the successive generation of se...
We use the phasor approach to fluorescence lifetime imaging and intrinsic biochemical fluorescence b...
We develop a label-free optical technique to image and discriminate undifferentiated human embryonic...
To examine the process of endothelial cell aging we utilised hyperspectral imaging to collect broad ...
We develop a label-free optical technique to image and discriminate undifferentiated human embryonic...
Fluorescence lifetime imaging microscopy (FLIM) can measure and discriminate endogenous fluorophores...
We describe a label-free imaging method to monitor stem-cell metabolism that discriminates different...
We describe a label-free imaging method to monitor stem-cell metabolism that discriminates different...
NADH and NADPH are redox cofactors, primarily involved in catabolic and anabolic metabolic processes...
In the stem cell field there is a lack of non invasive and fast methods to identify stem cell’s meta...
In the stem cell field there is a lack of non invasive and fast methods to identify stem cell’s meta...
Hematopoietic stem cells (HSC) are responsible for the life-long maintenance of our blood system. Th...
AbstractThe redox states of the NAD and NADP pyridine nucleotide pools play critical roles in defini...
BACKGROUND: Protons are pumped from the mitochondrial matrix via oxidative phosphorylation (OXPHOS) ...
The changes in cell metabolism can affect the epigenome-modifying enzymes activity during iPSCs diff...
Neurogenesis in vivo is a long and complex process, characterised by the successive generation of se...
We use the phasor approach to fluorescence lifetime imaging and intrinsic biochemical fluorescence b...
We develop a label-free optical technique to image and discriminate undifferentiated human embryonic...
To examine the process of endothelial cell aging we utilised hyperspectral imaging to collect broad ...
We develop a label-free optical technique to image and discriminate undifferentiated human embryonic...
Fluorescence lifetime imaging microscopy (FLIM) can measure and discriminate endogenous fluorophores...
We describe a label-free imaging method to monitor stem-cell metabolism that discriminates different...
We describe a label-free imaging method to monitor stem-cell metabolism that discriminates different...
NADH and NADPH are redox cofactors, primarily involved in catabolic and anabolic metabolic processes...
In the stem cell field there is a lack of non invasive and fast methods to identify stem cell’s meta...
In the stem cell field there is a lack of non invasive and fast methods to identify stem cell’s meta...
Hematopoietic stem cells (HSC) are responsible for the life-long maintenance of our blood system. Th...
AbstractThe redox states of the NAD and NADP pyridine nucleotide pools play critical roles in defini...
BACKGROUND: Protons are pumped from the mitochondrial matrix via oxidative phosphorylation (OXPHOS) ...