Hyperpolarised <sup>13</sup>C-MRI identifies the emergence of a glycolytic cell population within intermediate-risk human prostate cancer.

Sushentsev, Nikita; McLean, Mary A; Warren, Anne Y; Benjamin, Arnold J V; Brodie, Cara; Frary, Amy; Gill, Andrew B; Jones, Julia et al. · Nat Commun · 2022

basic_science · Level V

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Abstract

Hyperpolarised magnetic resonance imaging (HP <sup>13</sup>C-MRI) is an emerging clinical technique to detect [1-<sup>13</sup>C]lactate production in prostate cancer (PCa) following intravenous injection of hyperpolarised [1-<sup>13</sup>C]pyruvate. Here we differentiate clinically significant PCa from indolent disease in a low/intermediate-risk population by correlating [1-<sup>13</sup>C]lactate labelling on MRI with the percentage of Gleason pattern 4 (%GP4) disease. Using immunohistochemistry and spatial transcriptomics, we show that HP <sup>13</sup>C-MRI predominantly measures metabolism in the epithelial compartment of the tumour, rather than the stroma. MRI-derived tumour [1-<sup>13</sup>C]lactate labelling correlated with epithelial mRNA expression of the enzyme lactate dehydrogenase (LDHA and LDHB combined), and the ratio of lactate transporter expression between the epithelial and stromal compartments (epithelium-to-stroma MCT4). We observe similar changes in MCT4, LDHA, and LDHB between tumours with primary Gleason patterns 3 and 4 in an independent TCGA cohort. Therefore, HP <sup>13</sup>C-MRI can metabolically phenotype clinically significant disease based on underlying metabolic differences in the epithelial and stromal tumour compartments.

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