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Updated: Jan 29, 2026

Organotypic Slice Cultures as Preclinical Models of Tumor Microenvironment in Primary Pancreatic Cancer and Metastasis
Published on: June 22, 2021
Targeting LIN28B reprograms tumor glucose metabolism and acidic microenvironment to suppress cancer stemness and
Chong Chen1,2, Lipeng Bai1,2,3, Fengqi Cao1,2
1Department of Immunology, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences; School of Basic Medicine, Peking Union Medical College, Beijing, 100005, China.
Abstract:
The altered metabolism and acidic microenvironment plays an important role in promoting tumor malignant characteristics. A small population of cancer stem cells (CSCs) were considered as a therapy target to reserve tumor relapse, resistance, and metastasis. However, the molecular mechanism that regulates CSCs metabolism remains poorly understood. In this study, we demonstrate a fundamental role of stemness gene LIN28B in maintaining CSCs glycolysis metabolism. Using LIN28B-expressing cancer cell lines, we found that the rate of extracellular acidification, glucose uptake, and lactate secretion are all suppressed by LIN28B knockdown in vitro and in vivo. Importantly, metabolic analyses reveal that CSCs have enhanced aerobic glycolysis metabolic characteristics and the glycolytic product lactate further promotes cancer associated stemness properties. LIN28B silencing suppresses MYC expression that further increases miR-34a-5p level. Furthermore, the glycolysis metabolism of human breast cancer cell line MDA-MB-231 is suppressed by either MYC siRNA or miR-34a-5p mimic. Clinically, high MYC and low miR-34a-5p level are correlated with high LIN28B expression and poor prognosis in human breast cancer patients. Notably, blocking LIN28B/MYC/miR-34a-5p signaling pathway by LIN28B-specific inhibitor causes dramatic inhibition of tumor growth and metastasis in immunodeficient orthotopic mouse models of human breast cancer cell MDA-MB-231. Taken together, our findings offer a preclinical investigation of targeting LIN28B to suppress CSCs glycolysis metabolism and tumor progression that may improve the therapeutic benefit for cancer patients.
Insights
Targeting the stemness gene LIN28B suppresses cancer stem cell (CSC) glycolysis. This approach inhibits tumor growth and metastasis by regulating the LIN28B/MYC/miR-34a-5p pathway, offering potential therapeutic benefits.
Area of Science:
- Oncology
- Molecular Biology
- Metabolic Research
Background:
- Altered tumor metabolism and acidic microenvironments promote malignancy.
- Cancer stem cells (CSCs) are key targets for preventing tumor relapse, resistance, and metastasis.
- The metabolic regulation of CSCs is not well understood.
Purpose of the Study:
- To investigate the role of the stemness gene LIN28B in CSC metabolism.
- To elucidate the molecular mechanisms linking LIN28B to CSC glycolysis and stemness properties.
- To evaluate LIN28B as a therapeutic target for breast cancer.
Main Methods:
- LIN28B knockdown in cancer cell lines and in vivo models.
- Metabolic analyses including extracellular acidification, glucose uptake, and lactate secretion.
- Analysis of MYC and miR-34a-5p expression levels.
- Inhibition of the LIN28B/MYC/miR-34a-5p pathway using a LIN28B-specific inhibitor in mouse models.
Main Results:
- LIN28B knockdown suppressed CSC glycolysis (glucose uptake, lactate secretion, extracellular acidification) in vitro and in vivo.
- CSCs exhibit enhanced aerobic glycolysis, with lactate promoting stemness.
- LIN28B silencing decreased MYC and increased miR-34a-5p.
- High MYC and low miR-34a-5p correlated with high LIN28B and poor prognosis in breast cancer patients.
- LIN28B inhibition significantly reduced tumor growth and metastasis in mouse models.
Conclusions:
- LIN28B plays a crucial role in maintaining CSC glycolysis.
- The LIN28B/MYC/miR-34a-5p axis regulates CSC metabolism and stemness.
- Targeting LIN28B offers a promising preclinical strategy to suppress CSC glycolysis and combat tumor progression and metastasis.
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