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Articles 1 - 5 of 5
Full-Text Articles in Cells
Piwi Is Required To Limit Exhaustion Of Aging Somatic Stem Cells, Pedro Sousa-Victor, Arshad Ayyaz, Rippei Hayashi, Yanyan Qi, David T. Madden, Victoria V. Lunyak, Heinrich Jasper
Piwi Is Required To Limit Exhaustion Of Aging Somatic Stem Cells, Pedro Sousa-Victor, Arshad Ayyaz, Rippei Hayashi, Yanyan Qi, David T. Madden, Victoria V. Lunyak, Heinrich Jasper
Faculty Publications & Research of the TUC College of Pharmacy
Please see the graphical abstract in the supplemental files.
Measurement Of The Absolute Magnitude And Time Courses Of Mitochondrial Membrane Potential In Primary And Clonal Pancreatic Beta-Cells, Akos Gerencser, Shona A. Mookerjee, Martin Jastroch, Martin D. Brand
Measurement Of The Absolute Magnitude And Time Courses Of Mitochondrial Membrane Potential In Primary And Clonal Pancreatic Beta-Cells, Akos Gerencser, Shona A. Mookerjee, Martin Jastroch, Martin D. Brand
Faculty Publications & Research of the TUC College of Pharmacy
The aim of this study was to simplify, improve and validate quantitative measurement of the mitochondrial membrane potential (ΔψM) in pancreatic β-cells. This built on our previously introduced calculation of the absolute magnitude of ΔψM in intact cells, using time-lapse imaging of the non-quench mode fluorescence of tetramethylrhodamine methyl ester and a bis-oxonol plasma membrane potential (ΔψP) indicator. ΔψM is a central mediator of glucose-stimulated insulin secretion in pancreatic β-cells. ΔψM is at the crossroads of cellular energy production and demand, therefore precise assay of its magnitude is a valuable tool to study how these processes interplay in insulin secretion. …
Determining Maximum Glycolytic Capacity Using Extracellular Flux Measurements, Shona A. Mookerjee, David G. Nicholls, Martin D. Brand
Determining Maximum Glycolytic Capacity Using Extracellular Flux Measurements, Shona A. Mookerjee, David G. Nicholls, Martin D. Brand
Faculty Publications & Research of the TUC College of Pharmacy
Measurements of glycolytic rate and maximum glycolytic capacity using extracellular flux analysis can give crucial information about cell status and phenotype during normal operation, development of pathology, differentiation, and malignant transformation. They are also of great use when assessing the effects of chemical or drug treatments. Here, we experimentally define maximum glycolytic capacity, demonstrate how it differs from glycolytic rate, and provide a protocol for determining the basal glycolytic rate and maximum glycolytic capacity in cells using extracellular flux measurements. The results illustrate the power of extracellular flux analysis to describe the energetics of adherent cells in culture in a …
Stem Cells As A Cure For Amyotrophic Lateral Sclerosis, Chaya K. Hirsch
Stem Cells As A Cure For Amyotrophic Lateral Sclerosis, Chaya K. Hirsch
The Science Journal of the Lander College of Arts and Sciences
Amyotrophic Lateral Sclerosis (ALS) is a fatal motor neuron disease which affects approximately 30,000 Americans at any given time (alsa.org, 2010). The etiology of this terminal disease unfortunately remains an unsolved mystery and has therefore severely limited the ability to find a cure. The use of stem cells to regenerate neurons has been vastly studied and have produced very promising results. However, its practicality as a cure or treatment for neurodegenerative diseases, such as ALS, is greatly compromised. Three different therapies involving stem cells were examined, Embryonic Stem Cells (ESC), induced pluripotent stem cells, (iPSC) and direct reprogramming of adult …
Cardiac Tissue Regeneration - The Use Of Stem Cells, Chavy Friedlander
Cardiac Tissue Regeneration - The Use Of Stem Cells, Chavy Friedlander
The Science Journal of the Lander College of Arts and Sciences
The following is the introduction to the article: Cardiovascular disease is the leading cause of illness and fatality. Diseases such as coronary artery disease, myocardial infarction and subsequent congestive heart failure pose a serious problem to much of the population in the Unites States and all over the world. The heart’s compromised function that results from the above conditions is so influential as the heart has little capacity to repair its lost tissue; once the cardiac myocytes are destroyed its effects are amplified by a drastic decrease in cardiac function. Until recently with the advent of stem cell technology, researchers …