1. LDHA (Lactate Dehydrogenase A)
    Fernanda Stapenhorst França et al, 2016 CrossRef
  2. LDHA (Lactate Dehydrogenase A)
    Fernanda Stapenhorst França et al, 2018 CrossRef
  3. Single-cell Transcriptome Analyses Reveal Molecular Signals to Intrinsic and Acquired Paclitaxel Resistance in Esophageal Squamous Cancer Cells.
    Hongjin Wu et al, 2018, Cancer Lett CrossRef
  4. Nanocarrier-Based Combination Chemotherapy for Resistant Tumor: Development, Characterization, and Ex Vivo Cytotoxicity Assessment
    Sarjana Raikwar et al, 2018, AAPS PharmSciTech CrossRef
  5. Warburg effect, lactate dehydrogenase, and radio/chemo-therapy efficacy
    Michael I. Koukourakis et al, 2018, International Journal of Radiation Biology CrossRef
  6. Doxorubicin- and cisplatin-loaded nanostructured lipid carriers for breast cancer combination chemotherapy
    Huifeng Di et al, 2016, Drug Development and Industrial Pharmacy CrossRef
  7. Discovery of Novel Cell-penetrating and Tumor-targeting Peptide-Drug Conjugate (PDC) for Programmable Delivery of Paclitaxel and Cancer Treatment
    Xin Deng et al, 2020, European Journal of Medicinal Chemistry CrossRef
  8. The Mechanism of Warburg Effect-Induced Chemoresistance in Cancer.
    Chang Liu et al, 2021, Front Oncol CrossRef
  9. circNFATC3 facilitated the progression of oral squamous cell carcinoma via the miR-520h/LDHA axis
    Hongguo Xie et al, 2023 CrossRef
  10. Betulinic acid in the treatment of breast cancer: Application and mechanism progress
    Huijuan Mu et al, 2023, Fitoterapia CrossRef
  11. Triple Isozyme Lactic Acid Dehydrogenase Inhibition in Fully Viable MDA-MB-231 Cells Induces Cytostatic Effects That Are Not Reversed by Exogenous Lactic Acid.
    Karam Soliman, 0 CrossRef
  12. Glycolysis and chemoresistance in acute myeloid leukemia
    Yan Yang et al, 2024, Heliyon CrossRef