Predicting Gemcitabine Delivery by <sup>18</sup>F-FAC PET in Murine Models of Pancreatic Cancer.
basic_science · Level V
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- Record sourced from PubMed, PMID 32646874.
- Also identified by DOI 10.2967/jnumed.120.246926 and PMC identifier 9364871.
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Abstract
<sup>18</sup>F-FAC (2'-deoxy-2'-<sup>18</sup>F-fluoro-β-d-arabinofuranosylcytosine) has close structural similarity to gemcitabine and thus offers the potential to image drug delivery to tumors. We compared tumor <sup>18</sup>F-FAC PET images with <sup>14</sup>C-gemcitabine levels, established ex vivo, in 3 mouse models of pancreatic cancer. We further modified tumor gemcitabine levels with injectable PEGylated recombinant human hyaluronidase (PEGPH20) to test whether changes in gemcitabine would be tracked by <sup>18</sup>F-FAC. <b>Methods:</b><sup>18</sup>F-FAC was synthesized as described previously. Three patient-derived xenograft (PDX) models were grown in the flanks of NSG mice. Mice were given PEGPH20 or vehicle intravenously 24 h before coinjection of <sup>18</sup>F-FAC and <sup>14</sup>C-gemcitabine. Animals were euthanized and imaged 1 h after tracer administration. Tumor and muscle uptake of both <sup>18</sup>F-FAC and <sup>14</sup>C-gemcitabine was obtained ex vivo. The efficacy of PEPGPH20 was validated through staining with hyaluronic acid binding protein. Additionally, an organoid culture, initiated from a KPC (Pdx-1 Cre LSL-Kras<sup>G12D</sup> LSL-p53<sup>R172H</sup>) tumor, was used to generate orthotopically growing tumors in C57BL/6J mice, and these tumors were then serially transplanted. Animals were injected with PEGPH20 and <sup>14</sup>C-gemcitabine as described above to validate increased drug uptake by ex vivo assay. PET/MR images were obtained using a PET insert on a 7-T MR scanner. Animals were imaged immediately before injection with PEGPH20 and again 24 h later. <b>Results:</b> Tumor-to-muscle ratios of <sup>14</sup>C-gemcitabine and <sup>18</sup>F-FAC correlated well across all PDX models and treatments (<i>R</i><sup>2</sup> = 0.78). There was a significant increase in the tumor PET signal in PEGPH20-treated PDX animals, and this signal was matched in ex vivo counts for 2 of 3 models. In KPC-derived tumors, PEGPH20 raised <sup>14</sup>C-gemcitabine levels (tumor-to-muscle ratio of 1.9 vs. 2.4, control vs. treated, <i>P</i> = 0.013). PET/MR <sup>18</sup>F-FAC images showed a 12% increase in tumor <sup>18</sup>F-FAC uptake after PEGPH20 treatment (<i>P</i> = 0.023). PEGPH20-treated animals uniformly displayed clear reductions in hyaluronic acid staining. <b>Conclusion:</b><sup>18</sup>F-FAC PET was shown to be a good surrogate for gemcitabine uptake and, when combined with MR, to successfully determine drug uptake in tumors growing in the pancreas. PEGPH20 had moderate effects on tumor uptake of gemcitabine.
Medical subject headings
- Deoxycytidine
- Pancreatic Neoplasms
- Positron-Emission Tomography