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Hyperpolarized 13C Metabolic Magnetic Resonance Spectroscopy and Imaging
Published on: December 30, 2016
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.
Abstract:
The technique of induced metabolic bioluminescence imaging (imBI) has been developed to obtain a "snapshot" of the momentary metabolic status of biological tissues. Using cryosections of snap-frozen tissue specimens, imBI combines highly specific and sensitive in situ detection of metabolites with a spatial resolution on a microscopic level and with metabolic imaging in relation to tissue histology. Here, we present the application of imBI in human colorectal cancer. Comparing the metabolic information of one biopsy with that of 2 or 3 biopsies per individual cancer, the classification into high versus low lactate tumors, reflecting different glycolytic activities, based on a single biopsy was in agreement with the result from multiple biopsies in 83 % of all cases. We further demonstrate that the metabolic status of tumor tissue can be preserved at least over 10 years by storage in liquid nitrogen, but not by storage at -80 °C. This means that tissue banking with long-term preservation of the metabolic status is possible at -180 °C, which may be relevant for studies on long-term survival of cancer patients. As with other tumor entities, tissue lactate concentration was shown to be correlated with tumor development and progression in colorectal cancer. At first-time diagnosis, lactate values were low in rectal normal tissue and adenomas, were significantly elevated to intermediate levels in non-metastatic adenocarcinomas, and were very high in carcinomas with distant metastasis. There was an inverse behavior of tissue glucose concentration under corresponding conditions. The expression level of monocarboxylate transporter-4 (MCT4) was positively correlated with the tumor lactate concentration and may thus contribute to high lactate tumors being associated with a high degree of malignancy.
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