Related Experiment Video
Updated: Sep 23, 2025

Isolation and Flow Cytometric Analysis of Glioma-infiltrating Peripheral Blood Mononuclear Cells
Published on: November 28, 2015
Genetic and Drug Inhibition of LDH-A: Effects on Murine Gliomas
Masatomo Maeda1,2,3, Myat Ko1,2,4, Mayuresh M Mane1,2,5
1Department of Neurology, Memorial Sloan Kettering Cancer Center, New York, NY 10065, USA.
Abstract:
The effects of the LDH-A depletion via shRNA knockdown on three murine glioma cell lines and corresponding intracranial (i.c.) tumors were studied and compared to pharmacologic (GNE-R-140) inhibition of the LDH enzyme complex, and to shRNA scrambled control (NC) cell lines. The effects of genetic-shRNA LDH-A knockdown and LDH drug-targeted inhibition (GNE-R-140) on tumor-cell metabolism, tumor growth, and animal survival were similar. LDH-A KD and GNE-R-140 unexpectedly increased the aggressiveness of GL261 intracranial gliomas, but not CT2A and ALTS1C1 i.c. gliomas. Furthermore, the bioenergetic profiles (ECAR and OCR) of GL261 NC and LDH-A KD cells under different nutrient limitations showed that (a) exogenous pyruvate is not a major carbon source for metabolism through the TCA cycle of native GL261 cells; and (b) the unique upregulation of LDH-B that occurs in GL261 LDH-A KD cells results in these cells being better able to: (i) metabolize lactate as a primary carbon source through the TCA cycle, (ii) be a net consumer of lactate, and (iii) showed a significant increase in the proliferation rate following the addition of 10 mM lactate to the glucose-free media (only seen in GL261 KD cells). Our study suggests that inhibition of LDH-A/glycolysis may not be a general strategy to inhibit the i.c. growth of all gliomas, since the level of LDH-A expression and its interplay with LDH-B can lead to complex metabolic interactions between tumor cells and their environment. Metabolic-inhibition treatment strategies need to be carefully assessed, since the inhibition of glycolysis (e.g., inhibition of LDH-A) may lead to the unexpected development and activation of alternative metabolic pathways (e.g., upregulation of lipid metabolism and fatty-acid oxidation pathways), resulting in enhanced tumor-cell survival in a nutrient-limited environment and leading to increased tumor aggressiveness.
Insights
Inhibiting lactate dehydrogenase-A (LDH-A) in glioma cells did not universally slow tumor growth. Instead, it unexpectedly increased aggressiveness in some glioma models by activating alternative metabolic pathways.
Area of Science:
- Cancer Biology
- Metabolic Pathways
- Neuro-Oncology
Background:
- Lactate dehydrogenase-A (LDH-A) is crucial for glycolysis and cancer cell metabolism.
- Targeting LDH-A is a potential strategy for inhibiting glioma growth.
- The role of LDH-A and its interplay with LDH-B in glioma metabolism is not fully understood.
Purpose of the Study:
- To investigate the effects of LDH-A depletion on murine glioma cell lines and intracranial tumors.
- To compare genetic (shRNA knockdown) and pharmacologic (GNE-R-140) inhibition of LDH-A.
- To elucidate the metabolic adaptations and their impact on tumor aggressiveness and survival.
Main Methods:
- Utilized shRNA knockdown to deplete LDH-A in three murine glioma cell lines (GL261, CT2A, ALTS1C1).
- Administered GNE-R-140, a pharmacologic inhibitor of the LDH enzyme complex.
- Assessed tumor cell metabolism (ECAR, OCR), tumor growth, and animal survival.
- Analyzed bioenergetic profiles under nutrient limitations and lactate supplementation.
Main Results:
- LDH-A knockdown and GNE-R-140 showed similar effects on tumor metabolism, growth, and survival.
- Aggressiveness of GL261 intracranial gliomas unexpectedly increased with LDH-A inhibition, unlike CT2A and ALTS1C1.
- GL261 cells with LDH-A knockdown upregulated LDH-B, enabling lactate metabolism and increased proliferation in glucose-free media.
- Exogenous pyruvate was not a major carbon source for native GL261 cells' TCA cycle.
Conclusions:
- Inhibition of LDH-A/glycolysis is not a universally effective strategy for all gliomas due to complex metabolic interactions.
- Upregulation of LDH-B in LDH-A depleted cells can lead to alternative metabolic pathway activation (e.g., lipid metabolism).
- Metabolic-inhibition strategies require careful assessment to avoid unintended consequences like enhanced tumor aggressiveness.
More Related Videos
10:28Flow Cytometry-based Drug Screening System for the Identification of Small Molecules That Promote Cellular Differentiation of Glioblastoma Stem Cells
Published on: January 10, 2018
06:51Utilizing 18F-FDG PET/CT Imaging and Quantitative Histology to Measure Dynamic Changes in the Glucose Metabolism in Mouse Models of Lung Cancer
Published on: July 21, 2018