Lactate-An Integrative Mirror of Cancer Metabolism

Stefan Walenta1, Nadine F Voelxen1, Wolfgang Mueller-Klieser2

  • 1Institute of Pathophysiology, University Medical Center, Johannes Gutenberg-University of Mainz, 55128, Mainz, Germany.

Insights

Induced metabolic bioluminescence imaging (imBI) provides a snapshot of tissue metabolism. This method accurately classifies colorectal cancer lactate levels from single biopsies and shows long-term metabolic preservation in liquid nitrogen, aiding cancer patient survival studies.

Area of Science:

  • Biochemistry
  • Oncology
  • Medical Imaging

Background:

  • Induced metabolic bioluminescence imaging (imBI) offers a "snapshot" of momentary metabolic status in biological tissues.
  • imBI combines in situ metabolite detection with microscopic spatial resolution and histological correlation.

Purpose of the Study:

  • To apply imBI in human colorectal cancer for metabolic profiling.
  • To assess the reliability of single biopsies for metabolic classification.
  • To evaluate long-term metabolic status preservation in tissue banking.

Main Methods:

  • Utilized cryosections of snap-frozen human colorectal cancer tissue.
  • Applied imBI for in situ detection of metabolites and spatial metabolic imaging.
  • Compared metabolic data from single versus multiple biopsies per tumor.

Main Results:

  • Single biopsy imBI classification of high/low lactate colorectal tumors agreed with multi-biopsy results in 83% of cases.
  • Tumor metabolic status is preserved for over 10 years in liquid nitrogen (-180°C), but not at -80°C.
  • Lactate levels correlated with colorectal cancer progression: low in normal/adenomas, intermediate in non-metastatic adenocarcinomas, and high in metastatic carcinomas.

Conclusions:

  • imBI is a reliable tool for colorectal cancer metabolic assessment, even with single biopsies.
  • Long-term tissue banking at -180°C preserves metabolic status for future research.
  • Lactate concentration and monocarboxylate transporter-4 (MCT4) expression are potential biomarkers for colorectal cancer malignancy and progression.