Abstract
Abstract As pancreatic cancer (PC) is highly malignant, its patients tend to develop metastasis at an early stage and show a poor response to conventional chemotherapies. First-line chemotherapies for PC, according to current guidelines, include fluoropyrimidine- and gemcitabine-based regimens. Accumulating research on drug resistance has shown that biochemical metabolic aberrations in PC, especially those involving glycolysis and glutamine metabolism, are highly associated with chemoresistance. Additionally, lipid metabolism is a major factor in chemoresistance. However, emerging compounds that target these key metabolic pathways have the potential to overcome chemoresistance. This review summarizes how PC develops chemoresistance through aberrations in biochemical metabolism and discusses novel critical targets and pathways within cancer metabolism for new drug research.
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Zhang, J., Wang, Y., Wang, L., You, L., & Zhang, T. (2024, February 20). Pancreatic ductal adenocarcinoma chemoresistance: From metabolism reprogramming to novel treatment. Chinese Medical Journal. Lippincott Williams and Wilkins. https://doi.org/10.1097/CM9.0000000000002758
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