Tumor cells increase their glucose consumption through aerobic glycolysis to manufacture the necessary biomass required for proliferation, commonly known as the Warburg effect. Accumulating evidences suggest that microRNAs (miRNAs) interact with their target genes and contribute to metabolic reprogramming in cancer cells. By integrating high-throughput screening data and the existing miRNA expression datasets, we explored the roles of candidate glycometabolism-regulating miRNAs in gastric cancer (GC). Subsequent investigation of the characterized miRNAs indicated that miR-129-5p inhibits glucose metabolism in GC cells. miRNA-129-5p directly targets the 3′-UTR of SLC2A3, thereby suppressing glucose consumption, lactate production, cellular A...
Metabolic reprogramming of aerobic glycolysis is a hallmark of cancer cells. Regulators of aerobic g...
Rationale: MicroRNAs are known to influence the development of a variety of cancers. Previous studie...
Background: Autophagy plays a crucial role in sustaining the homeostasis in various malignant diseas...
The reprogramming of glucose metabolism from oxidative to glycolytic metabolism, known as the Warbur...
Abstract Advanced studies of microRNAs (miRNAs) have revealed their manifold biological functions, i...
Background: Cancer cells possess a common metabolic phenotype, rewiring their metabolic pathways fro...
Metabolic reprogramming is a feature of cancer cells that provides fast energy production and the ab...
The most profound biochemical phenotype of cancer cells is their ability to metabolize glucose to la...
Purpose: To investigate the role of miR-449b-5p in gastric cancer (GC) metabolism. Methods: Human GC...
Altered metabolism, such as aerobic glycolysis or the Warburg effect, has been recognized as charact...
Cancer cells are dysregulated and addicted to continuous supply and metabolism of nutritional glucos...
BACKGROUND: Metabolic reprogramming is a hallmark of cancer. MicroRNAs (miRNAs) have been found to r...
Reprogrammed glucose metabolism as a result of increased glycolysis and glucose uptake is a hallmark...
To adapt to the tumor environment or to escape chemotherapy, cancer cells rapidly reprogram their me...
SummaryA central hallmark of cancer cells is the reprogramming of cellular metabolism to meet the bi...
Metabolic reprogramming of aerobic glycolysis is a hallmark of cancer cells. Regulators of aerobic g...
Rationale: MicroRNAs are known to influence the development of a variety of cancers. Previous studie...
Background: Autophagy plays a crucial role in sustaining the homeostasis in various malignant diseas...
The reprogramming of glucose metabolism from oxidative to glycolytic metabolism, known as the Warbur...
Abstract Advanced studies of microRNAs (miRNAs) have revealed their manifold biological functions, i...
Background: Cancer cells possess a common metabolic phenotype, rewiring their metabolic pathways fro...
Metabolic reprogramming is a feature of cancer cells that provides fast energy production and the ab...
The most profound biochemical phenotype of cancer cells is their ability to metabolize glucose to la...
Purpose: To investigate the role of miR-449b-5p in gastric cancer (GC) metabolism. Methods: Human GC...
Altered metabolism, such as aerobic glycolysis or the Warburg effect, has been recognized as charact...
Cancer cells are dysregulated and addicted to continuous supply and metabolism of nutritional glucos...
BACKGROUND: Metabolic reprogramming is a hallmark of cancer. MicroRNAs (miRNAs) have been found to r...
Reprogrammed glucose metabolism as a result of increased glycolysis and glucose uptake is a hallmark...
To adapt to the tumor environment or to escape chemotherapy, cancer cells rapidly reprogram their me...
SummaryA central hallmark of cancer cells is the reprogramming of cellular metabolism to meet the bi...
Metabolic reprogramming of aerobic glycolysis is a hallmark of cancer cells. Regulators of aerobic g...
Rationale: MicroRNAs are known to influence the development of a variety of cancers. Previous studie...
Background: Autophagy plays a crucial role in sustaining the homeostasis in various malignant diseas...