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Utilizing 18F-FDG PET/CT Imaging and Quantitative Histology to Measure Dynamic Changes in the Glucose Metabolism in Mouse Models of Lung Cancer
Published on: July 21, 2018
Precision Medicine in Action: Multi-Tracer PET/CT Uncovers Tumor Heterogeneity and a Synchronous Malignancy
Siven Kar1, Harshita Gupta1, Vikram R Lele1
1Department of Nuclear Medicine and PET/CT, Jaslok Hospital and Research Centre, Mumbai, Maharashtra, India.
Abstract:
Precision oncology leverages molecular profiling to tailor cancer treatment, with nuclear medicine playing an increasingly central role, particularly in elderly patients, where noninvasive approaches are preferable. We present a case of a 76-year-old male with metastatic prostate carcinoma (Gleason score: 5 + 5 = 10) exhibiting neuroendocrine differentiation. Imaging with multiple positron emission tomography (PET) tracers- 68 Ga-PSMA, 18 F-FDG, 68 Ga-DOTATATE, and 68 Ga-FAPI-revealed significant tumor heterogeneity. Tumor heterogeneity is multifactorial, influenced not only by genetic changes but also by epigenetic, microenvironmental, and therapeutic pressures. While 68 Ga-PSMA PET/computed tomography (CT) showed variable expression in osteosclerotic lesions, 18 F-FDG PET/CT detected metabolic activity, and 68 Ga-DOTATATE PET/CT confirmed low somatostatin receptor expression. Despite 177 Lu-PSMA radioligand therapy, the disease progressed with rising prostate-specific antigen levels. Subsequent gastrointestinal symptoms led to the diagnosis of sigmoid colon adenocarcinoma, confirmed by 68 Ga-FAPI PET/CT. This case exemplifies the critical role of nuclear imaging in characterizing tumor biology, guiding therapeutic strategies, and reducing reliance on invasive procedures. The integration of multi-tracer PET imaging enabled a nuanced understanding of tumor evolution, reinforcing nuclear medicine's importance in precision oncology and the management of complex, heterogeneous malignancies.

