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Soft tissue sarcomas (STS) are rare malignant tumors originating from mesodermal tissues with a poor prognosis, accounting for approximately 1% of all malignancies and comprising around 50 distinct subtypes. Conventional imaging modalities, such as computed tomography (CT) and magnetic resonance imaging (MRI), primarily provide anatomical information, whereas F-fluorodeoxyglucose positron emission tomography/CT (F-FDG PET/CT) integrates functional metabolic and anatomical imaging, serving as a critical complementary tool in the diagnosis and management of STS. This article reviews recent advances in the application of F-FDG PET/CT for STS. The advantages of F-FDG PET/CT in STS include: (1) Early detection of metabolic activity changes in tumors, particularly when morphological alterations are insignificant; (2) Effective differentiation between benign and malignant soft tissue tumors, as well as aiding in distinguishing high-grade from low-grade sarcomas; (3) Identification of occult metastatic lesions, improving staging accuracy, and facilitating restaging in cases of recurrence or metastasis; (4) Utilization of parameters such as maximum standardized uptake value and metabolic tumor volume to assist in tumor grading and prognostic evaluation; and (5) Monitoring treatment response to guide adjustments in personalized therapeutic strategies. However, F-FDG PET/CT has limitations in diagnosis of certain STS subtypes (, myxoid liposarcoma), detection and biopsy of metastatic lymph nodes, necessitating integration with clinical evaluation and other imaging techniques. F-FDG PET/CT is poised to play an increasingly vital role in the precision diagnosis and treatment of STS.
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http://dx.doi.org/10.4329/wjr.v17.i7.106427 | DOI Listing |
Eur J Nucl Med Mol Imaging
September 2025
Department of PET-CT/MRI, NHC Key Laboratory of Molecular Probe and Targeted Theranostics, Harbin Medical University Cancer Hospital, Harbin, 150081, Heilongjiang, China.
Objective: CXCR4 and integrin αβ play important roles in tumor biology and are highly expressed in multiple types of tumors. This study aimed to synthesize, preclinically evaluate, and clinically validate a novel dual-targeted PET imaging probe Ga-pentixafor-c(RGDfK) for its potential in imaging tumors.
Methods: The effects of Ga-pentixafor-c(RGDfK) on cell viability, targeting specificity, and affinity were assessed in the U87MG cells.
Mol Pharm
September 2025
Center for Orthopedic Surgery, The Third Affiliated Hospital of Southern Medical University, Guangzhou 510630, China.
Myocardial fibrosis, a key pathological feature of hypertensive heart disease (HHD), remains diagnostically challenging due to limited clinical tools. In this study, a FAPI-targeted uptake mechanism previously reported by our group, originally developed for tumor imaging, is extended to the detection of myocardial fibrosis in HHD using [F]F-NOTA-FAPI-MB. The diagnostic performance of this tracer is compared with those of [F]F-FDG, [F]F-FAPI-42, and [F]F-NOTA-FAP2286, and its potential for fluorescence imaging is also evaluated.
View Article and Find Full Text PDFMol Pharm
September 2025
Guangdong Provincial Engineering Research Center of Molecular Imaging, The Fifth Affiliated Hospital, Sun Yat-Sen University, Zhuhai, Guangdong 519000, China.
Rheumatoid arthritis (RA) is a chronic autoimmune disease characterized by joint inflammation. This study aimed to use the sphingosine 1-phosphate receptor 1 (S1PR1) targeted tracer [F]TZ4877 with PET/CT to assess synovial inflammation in a collagen-induced arthritis (CIA) mouse model. [F]TZ4877 and [F]FDG PET/CT imaging were performed on RA ( = 6) and control ( = 6) mice.
View Article and Find Full Text PDFJ Cereb Blood Flow Metab
September 2025
Athinoula A. Martinos Center for Biomedical Imaging, Department of Radiology, Massachusetts General Hospital, Harvard Medical School, Charlestown, MA, USA.
Preclinical PET studies offer the opportunity to elucidate molecular mechanisms underlying early neurodevelopment with minimal invasiveness. We demonstrated the feasibility of fetal brain PET in four pregnant rats ( = 42 fetuses). [F]FDG uptake in rat fetuses was readily visualized by PET imaging.
View Article and Find Full Text PDFNucl Med Biol
September 2025
Department of Nuclear Medicine, Hannover Medical School, Germany. Electronic address:
Purpose: The liver-brain axis regulates metabolic homeostasis, with glucose metabolism playing a key role. Liver dysfunction, such as fibrosis, may impact brain metabolism and consequently, brain function. Positron emission tomography (PET) imaging provides a non-invasive approach to study glucose metabolism in both organs.
View Article and Find Full Text PDF