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Published on: June 20, 2015
Glucose Metabolism in Pancreatic Cancer
Liang Yan1, Priyank Raj2, Wantong Yao3
1Department of Molecular and Cellular Oncology, University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA. yliang4@mdanderson.org.
Abstract:
Pancreatic ductal adenocarcinoma (PDAC) is one of the most aggressive and lethal cancers, with a five-year survival rate of around 5% to 8%. To date, very few available drugs have been successfully used to treat PDAC due to the poor understanding of the tumor-specific features. One of the hallmarks of pancreatic cancer cells is the deregulated cellular energetics characterized by the "Warburg effect". It has been known for decades that cancer cells have a dramatically increased glycolytic flux even in the presence of oxygen and normal mitochondrial function. Glycolytic flux is the central carbon metabolism process in all cells, which not only produces adenosine triphosphate (ATP) but also provides biomass for anabolic processes that support cell proliferation. Expression levels of glucose transporters and rate-limiting enzymes regulate the rate of glycolytic flux. Intermediates that branch out from glycolysis are responsible for redox homeostasis, glycosylation, and biosynthesis. Beyond enhanced glycolytic flux, pancreatic cancer cells activate nutrient salvage pathways, which includes autophagy and micropinocytosis, from which the generated sugars, amino acids, and fatty acids are used to buffer the stresses induced by nutrient deprivation. Further, PDAC is characterized by extensive metabolic crosstalk between tumor cells and cells in the tumor microenvironment (TME). In this review, we will give an overview on recent progresses made in understanding glucose metabolism-related deregulations in PDAC.
Insights
Pancreatic cancer cells exhibit deregulated glucose metabolism, including the Warburg effect and nutrient salvage pathways. Understanding these metabolic alterations is crucial for developing effective pancreatic ductal adenocarcinoma treatments.
Area of Science:
- Oncology
- Cancer Metabolism
- Biochemistry
Background:
- Pancreatic ductal adenocarcinoma (PDAC) is a highly lethal cancer with poor prognosis.
- Limited therapeutic options exist due to a poor understanding of PDAC's unique features.
- Deregulated cellular energetics, particularly the Warburg effect, is a hallmark of PDAC.
Purpose of the Study:
- To review recent advancements in understanding glucose metabolism alterations in PDAC.
- To highlight the role of glycolytic flux and nutrient salvage pathways in PDAC.
- To explore the metabolic crosstalk between PDAC cells and the tumor microenvironment.
Main Methods:
- Literature review of recent scientific publications.
- Analysis of studies focusing on glucose metabolism in PDAC.
- Synthesis of information on cellular energetics and nutrient pathways in pancreatic cancer.
Main Results:
- PDAC cells exhibit increased glycolytic flux (Warburg effect) even with oxygen.
- Glycolytic intermediates support ATP production, biomass generation, and redox homeostasis.
- PDAC cells utilize nutrient salvage pathways like autophagy and micropinocytosis.
- Extensive metabolic crosstalk occurs between PDAC cells and the tumor microenvironment.
Conclusions:
- Understanding glucose metabolism deregulation is key to PDAC research.
- Targeting metabolic pathways offers potential therapeutic strategies for PDAC.
- Further research into PDAC metabolic reprogramming is essential for improving patient outcomes.
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