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Updated: Aug 9, 2025

Author Spotlight: Transmitochondrial Cybrid Generation Using Cancer Cell Lines
Published on: March 17, 2023
Mitochondrial metabolism in primary and metastatic human kidney cancers
Divya Bezwada1, Nicholas P Lesner1, Bailey Brooks1
1Children's Medical Center Research Institute.
Abstract:
Most kidney cancers display evidence of metabolic dysfunction1-4 but how this relates to cancer progression in humans is unknown. We used a multidisciplinary approach to infuse 13C-labeled nutrients during surgical tumour resection in over 70 patients with kidney cancer. Labeling from [U-13C]glucose varies across cancer subtypes, indicating that the kidney environment alone cannot account for all metabolic reprogramming in these tumours. Compared to the adjacent kidney, clear cell renal cell carcinomas (ccRCC) display suppressed labelling of tricarboxylic acid (TCA) cycle intermediates in vivo and in organotypic slices cultured ex vivo, indicating that suppressed labeling is tissue intrinsic. Infusions of [1,2-13C]acetate and [U-13C]glutamine in patients, coupled with respiratory flux of mitochondria isolated from kidney and tumour tissue, reveal primary defects in mitochondrial function in human ccRCC. However, ccRCC metastases unexpectedly have enhanced labeling of TCA cycle intermediates compared to primary ccRCCs, indicating a divergent metabolic program during ccRCC metastasis in patients. In mice, stimulating respiration in ccRCC cells is sufficient to promote metastatic colonization. Altogether, these findings indicate that metabolic properties evolve during human kidney cancer progression, and suggest that mitochondrial respiration may be limiting for ccRCC metastasis but not for ccRCC growth at the site of origin.
Insights
Kidney cancer metabolism shifts during progression. Mitochondrial respiration defects are key in clear cell renal cell carcinoma (ccRCC) growth but enhanced respiration may drive ccRCC metastasis.
Area of Science:
- Oncology
- Metabolic Engineering
- Molecular Biology
Background:
- Kidney cancers often show metabolic dysfunction, but its role in human cancer progression is unclear.
- Understanding metabolic reprogramming in kidney cancer is crucial for developing targeted therapies.
Approach:
- Utilized a multidisciplinary approach involving 13C-labeled nutrient infusions during tumor resection in over 70 kidney cancer patients.
- Analyzed 13C-labeling patterns of glucose, acetate, and glutamine in tumors and adjacent kidney tissues.
- Assessed mitochondrial respiratory flux in isolated mitochondria from kidney and tumor samples.
Key Points:
- Metabolic reprogramming varies across kidney cancer subtypes, indicating tissue-intrinsic factors.
- Clear cell renal cell carcinoma (ccRCC) exhibits suppressed tricarboxylic acid (TCA) cycle labeling and intrinsic mitochondrial defects.
- Metastatic ccRCC shows enhanced TCA cycle labeling compared to primary tumors, suggesting divergent metabolic adaptation.
Conclusions:
- Metabolic properties of kidney cancer evolve during disease progression.
- Mitochondrial respiration may be a limiting factor for ccRCC metastasis, but not for primary tumor growth.
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