Cancer cells use alternate energetic pathways; however, cancer stem cell (CSC) metabolic energetic pathways are unknown. The purpose of this study was to define the metabolic characteristics of head and neck cancer at different points of its pathogenesis with a focus on its CSC compartment. UPLC-MS/MS-profiling and GC-MS-validation studies of human head and neck cancer tissue, saliva, and plasma were used in conjunction with <i>in vitro</i> and <i>in vivo</i> models to carry out this investigation. We identified metabolite biomarker panels that distinguish head and neck cancer from healthy controls, and confirmed involvement of glutamate and glutaminolysis. Glutaminase, which catalyzes glutamate formation from glutamine, and aldehyde dehydr...
SummaryHow mitochondrial glutaminolysis contributes to redox homeostasis in cancer cells remains unc...
Metabolism rewiring is an important hallmark of cancers. Being one of the most abundant free amino a...
Glutamine provides carbon and nitrogen for macromolecular synthesis and participates in adenosine tr...
Cancer cells use alternate energetic pathways; however, cancer stem cell (CSC) metabolic energetic p...
Cancer cells use alternate energetic pathways; however, cancer stem cell (CSC) metabolic energetic p...
In this review we focus on the role of glutamine in control of cancer stem cell (CSC) fate. We first...
Reliance on glutamine has long been considered a hallmark of cancer cell metabolism. However, some r...
Abstract Background Glioblastoma is the most frequent...
Abstract Background Glutamine and glutamate are known to play important roles in cancer biology. How...
Background In accord with the cancer stem cell (CSC) theory, only a small subset of cancer cells ar...
Intense research throughout recent decades has significantly expanded our knowledge of the complexit...
Metabolic reprogramming is a hallmark of cancer that plays an essential role in tumor initiation and...
BackgroundThe increased glutamine metabolism is a characteristic feature of cancer cells. The interc...
Metabolic reprogramming has emerged as a common phenotype of cancers. Otto Warburg in 1920s observed...
Many cancers utilize l-glutamine as a major energy source. Often cited in the literature as l-gluta...
SummaryHow mitochondrial glutaminolysis contributes to redox homeostasis in cancer cells remains unc...
Metabolism rewiring is an important hallmark of cancers. Being one of the most abundant free amino a...
Glutamine provides carbon and nitrogen for macromolecular synthesis and participates in adenosine tr...
Cancer cells use alternate energetic pathways; however, cancer stem cell (CSC) metabolic energetic p...
Cancer cells use alternate energetic pathways; however, cancer stem cell (CSC) metabolic energetic p...
In this review we focus on the role of glutamine in control of cancer stem cell (CSC) fate. We first...
Reliance on glutamine has long been considered a hallmark of cancer cell metabolism. However, some r...
Abstract Background Glioblastoma is the most frequent...
Abstract Background Glutamine and glutamate are known to play important roles in cancer biology. How...
Background In accord with the cancer stem cell (CSC) theory, only a small subset of cancer cells ar...
Intense research throughout recent decades has significantly expanded our knowledge of the complexit...
Metabolic reprogramming is a hallmark of cancer that plays an essential role in tumor initiation and...
BackgroundThe increased glutamine metabolism is a characteristic feature of cancer cells. The interc...
Metabolic reprogramming has emerged as a common phenotype of cancers. Otto Warburg in 1920s observed...
Many cancers utilize l-glutamine as a major energy source. Often cited in the literature as l-gluta...
SummaryHow mitochondrial glutaminolysis contributes to redox homeostasis in cancer cells remains unc...
Metabolism rewiring is an important hallmark of cancers. Being one of the most abundant free amino a...
Glutamine provides carbon and nitrogen for macromolecular synthesis and participates in adenosine tr...