BACKGROUND Because of the interplay between mitochondrial respiration and cellular metabolism, the simultaneous monitoring of both cellular processes provides important insights for the understanding of biological processes. NMR flow systems provide a unique window into the metabolome of cultured cells. Simplified bioreactor construction based on commercially available flow systems increase the practicability and reproducibility of bioreactor studies using standard NMR spectrometers. We therefore aim at establishing a reproducible NMR bioreactor system for metabolic 1H-NMR investigations of small molecules and concurrent oxygenation determination by 19F-NMR, with in depth description and validation by accompanying measures. METHODS ...
We report a high-throughput (HTP) nuclear magnetic resonance (NMR) method for analysis of media comp...
19F-nuclear magnetic resonance (NMR) has been used to determine both intracellular pH and oxygen con...
Absolute analyte quantification by nuclear magnetic resonance (NMR) spectroscopy is rarely pursued i...
Nuclear magnetic resonance (NMR) approaches have been described as a powerful method for measuring o...
NMR flow devices provide longitudinal real-time quantitative metabolome characterisation of living c...
The purpose of this study was to combine a three-dimensional NMR-compatible bioreactor with hyperpol...
Electrostatic devices for the manufacturing of cell encapsulations were constructed and used to form...
NMR flow devices provide longitudinal real-time quantitative metabolome characterisation of living c...
In this study, we describe new methods for studying cancer cell metabolism with hyperpolarized 13C m...
Metabolism is now widely recognised as an important hallmark of disease. Measuring metabolism is the...
Nuclear magnetic resonance spectroscopy has emerged as a valuable tool for engineers for noninvasive...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Metabolism studies have an important role in systems biology research since the metabolome and the f...
We present a Nuclear Magnetic Resonance (NMR) compatible platform for the automated real-time monito...
Current metabolomics approaches utilize cellular metabolite extracts, are destructive, and require h...
We report a high-throughput (HTP) nuclear magnetic resonance (NMR) method for analysis of media comp...
19F-nuclear magnetic resonance (NMR) has been used to determine both intracellular pH and oxygen con...
Absolute analyte quantification by nuclear magnetic resonance (NMR) spectroscopy is rarely pursued i...
Nuclear magnetic resonance (NMR) approaches have been described as a powerful method for measuring o...
NMR flow devices provide longitudinal real-time quantitative metabolome characterisation of living c...
The purpose of this study was to combine a three-dimensional NMR-compatible bioreactor with hyperpol...
Electrostatic devices for the manufacturing of cell encapsulations were constructed and used to form...
NMR flow devices provide longitudinal real-time quantitative metabolome characterisation of living c...
In this study, we describe new methods for studying cancer cell metabolism with hyperpolarized 13C m...
Metabolism is now widely recognised as an important hallmark of disease. Measuring metabolism is the...
Nuclear magnetic resonance spectroscopy has emerged as a valuable tool for engineers for noninvasive...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Metabolism studies have an important role in systems biology research since the metabolome and the f...
We present a Nuclear Magnetic Resonance (NMR) compatible platform for the automated real-time monito...
Current metabolomics approaches utilize cellular metabolite extracts, are destructive, and require h...
We report a high-throughput (HTP) nuclear magnetic resonance (NMR) method for analysis of media comp...
19F-nuclear magnetic resonance (NMR) has been used to determine both intracellular pH and oxygen con...
Absolute analyte quantification by nuclear magnetic resonance (NMR) spectroscopy is rarely pursued i...