1. The Role of PKM2 in the Regulation of Mitochondrial Function: Focus on Mitochondrial Metabolism, Oxidative Stress, Dynamic, and Apoptosis. PKM2 in Mitochondrial Function
    Jing Gao et al, 2022, Oxidative Medicine and Cellular Longevity CrossRef
  2. Role of AMPK in Regulation of Oxaliplatin-Resistant Human Colorectal Cancer
    Sun Young Park et al, 2022, Biomedicines CrossRef
  3. The Crosstalk and Clinical Implications of CircRNAs and Glucose Metabolism in Gastrointestinal Cancers
    Xiaonuan Luo et al, 2023, Cancers CrossRef
  4. Aspirin reprogrammes colorectal cancer cell metabolism and sensitises to glutaminase inhibition
    Amy K. Holt et al, 2023, Cancer & Metabolism CrossRef
  5. Pyruvate kinase M2 (PKM-2) expression and prognostic significance in glioblastoma patients
    Berrin Benli Yavuz et al, 2023, Journal of Neuro-Oncology CrossRef
  6. Modified Hu-lu-ba-wan protects diabetic glomerular podocytes via promoting PKM2-mediated mitochondrial dynamic homeostasis
    Minmin Gong et al, 2024, Phytomedicine CrossRef
  7. Monitoring Metabolic Changes in Response to Chemotherapies in Cancer with Raman Spectroscopy and Metabolomics
    Gabriel Cutshaw et al, 2023, Analytical Chemistry CrossRef
  8. CircAGFG1 absence decreases PKM2 expression to enhance oxaliplatin sensitivity in colorectal cancer in a miR-7-5p-dependent manner
    Jun Chen et al, 2024, Journal of Chemotherapy CrossRef
  9. Functionalized LbL Film for Localized Delivery of STAT3 siRNA and Oxaliplatin Combination to Treat Colon Cancer
    Leela Sai Lokesh Janardhanam et al, 2022, ACS Applied Materials & Interfaces CrossRef
  10. Managing GSH elevation and hypoxia to overcome resistance of cancer therapies using functionalized nanocarriers
    Nelly M. Dabbour et al, 2022, Journal of Drug Delivery Science and Technology CrossRef