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Acidi, B.

Publications and source records attributed to Acidi, B..

2 recordsLinked to original sources

Somatostatin Receptor 2 Overexpression in Hepatocellular Carcinoma: Implications for Cancer Biology and Theranostic Applications

(1) BackgroundSomatostatin receptor 2 (SSTR2) is overexpressed in various tumors, including hepatocellular carcinoma (HCC), yet its role in tumorigenesis remains unclear. This study examines the roles of SSTR2 in the molecular pathology of HCC and explores its potential as a target for SSTR2-directed radiopharmaceuticals in this malignancy. (2) MethodsSSTR2 expression was analyzed across 22 malignancies using TNMplot and specifically in HCC through The Human Protein Atlas. Transcriptomic data, protein expression, and copy number alterations in HCC patients with varying SSTR2 levels were compared using The Cancer Genome Atlas (TCGA). Gene Ontology (GO) enrichment analysis was performed using SRplot, while survival analysis was conducted with GEO datasets. (3) ResultsMost HCC patients exhibit moderate levels of SSTR2 expression. Elevated SSTR2 expression is associated with worse overall and disease-specific survival, as well as the activation of pathways involved in tumor growth and metastasis. Furthermore, SSTR2 expression is linked to key oncogenes and receptor tyrosine kinases. (4) ConclusionsSSTR2 in HCC signifies an oncogenic network and represents a promising therapeutic target to inhibit tumor invasion and serve as a theranostic biomarker. HCC patients with elevated SSTR2 expression could benefit from SSTR2-targeted theranostics, enabling enhanced tumor detection and more effective therapy.

cancer biology↗

SSTR2-targeted theranostics in hepatocellular carcinoma

(1) BackgroundWhile the clinical use of radiolabeled somatostatin analogs is established in neuroendocrine tumors, there is significant interest in expanding their use for other somatostatin receptor 2 (SSTR2)-expressing cancers. This study investigates the utility of SSTR2-targeted theranostics in hepatocellular carcinoma (HCC); (2) MethodsWe measured SSTR2 expression in HCC cell lines and clinical samples using qRT-PCR, Western blot, and a public dataset. We evaluated [67Gallium]Ga-DOTATATE uptake, tested [177Lutetium]Lu-DOTATATE cytotoxicity, and assessed [68Gallium]Ga-DOTATATE tumor targeting in HCC animal models and a patient via PET/CT; (3) ResultsSSTR2 expression was confirmed in HCC cell lines and clinical samples. Radioligand uptake studies validated SSTR2-mediated [67Gallium]Ga-DOTATATE uptake, and [177Lutetium]Lu-DOTATATE treatment reduced cell proliferation. [68Gallium]Ga-DOTATATE PET/CT scans detected tumors in animal models and spinal metastases in a patient with HCC; (4) ConclusionThese findings suggest for the first time that SSTR2-based theranostics could have strong implications for detection and treatment of HCC. Simple SummaryThis study investigates the use of SSTR2-targeted theranostics, combining diagnostic and therapeutic approaches, in hepatocellular carcinoma (HCC). We confirmed significant SSTR2 expression in HCC cells and patient samples, showing that radiolabeled compounds such as [67Ga]Ga-DOTATATE and [177Lu]Lu-DOTATATE, commonly used in neuroendocrine tumors, could also target HCC. In preclinical models and a patient case, PET/CT imaging and treatments demonstrated effective tumor detection and shrinkage. These findings suggest that SSTR2-targeted theranostics could offer a novel, targeted method for diagnosing and treating HCC, potentially improving outcomes for patients with this challenging cancer.

cancer biology↗