Medullary thyroid carcinoma (MTC) is a neuroendocrine tumor originating from calcitonin producing C-cells and accounts for 1-5% of thyroid cancers. Total thyroidectomy is curative in localized disease (N0), whereas lymph node metastases (N1) are associated with poorer prognosis. However, the molecular mechanisms driving the metastatic shift remain poorly understood. This study aimed to identify miRNA features linked to metastatic spread in MTC, focusing on the transition from N0 to N1. Co-expression networks were constructed for N0 and N1 tumors, and differential connectivity analysis was used to identify key miRNAs acting as regulatory hubs. Functional annotation of their target genes was performed using the Kyoto Encyclopedia of Genes and Genomes (KEGG), Gene Ontology (GO), and Reactome pathway analyses. Validation experiments were carried out in MTC cells to evaluate the effects of selected miRNAs on cell proliferation, survival, and MAPK pathway activation. Network analysis revealed distinct miRNA co-expression patterns between N0 and N1 tumors. Differential network analysis highlighted miR-145-3p as a central regulatory hub, exhibiting 29 altered co-expression changes and a marked loss of connectivity in N1. Target enrichment identified 59 validated genes, including key oncogenic drivers such as MYC, PTEN, BCL2, PIK3CA, AKT1, and MAPK7. In MTC cells, simultaneous inhibition of miR-145-3p together with its top co-expressed miRNAs increased proliferation and survival, and enhanced ERK phosphorylation, indicating MAPK pathway activation and a shift toward a more aggressive phenotype. In conclusion, this study identifies a miRNA regulatory hub centered on miR-145-3p that is associated with metastatic progression and highlights the value of network-based approaches in uncovering mechanisms of cancer dissemination. The Journal of Pathology published by John Wiley & Sons Ltd on behalf of The Pathological Society of Great Britain and Ireland.

Network based approach identifies miR‐145‐3p as a central regulatory hub associated to the progression from localized to metastatic medullary thyroid carcinoma / Citarella, A., Petti, M., Besharat, Z.M., Alfano, C., Splendiani, E., Trocchianesi, S., Cassandro, S., Chiacchiarini, M., Sabato, C., Gianno, F., Autilio, T.M., Brunetti, M., Catanzaro, G., Verrienti, A., Elisei, R., Ciampi, R., Romei, C., Castagna, M.G., Cantara, S., Marotta, V., et al.. - In: JOURNAL OF PATHOLOGY. - ISSN 0022-3417. - (2026). [10.1002/path.70116]

Network based approach identifies miR‐145‐3p as a central regulatory hub associated to the progression from localized to metastatic medullary thyroid carcinoma

Petti, Manuela;Besharat, Zein Mersini;Splendiani, Elena;Cassandro, Sara;Gianno, Francesca;Autilio, Tanja Milena;Brunetti, Martina;Verrienti, Antonella;Farina, Lorenzo;Durante, Cosimo;Po, Agnese
;
Ferretti, Elisabetta
2026

Abstract

Medullary thyroid carcinoma (MTC) is a neuroendocrine tumor originating from calcitonin producing C-cells and accounts for 1-5% of thyroid cancers. Total thyroidectomy is curative in localized disease (N0), whereas lymph node metastases (N1) are associated with poorer prognosis. However, the molecular mechanisms driving the metastatic shift remain poorly understood. This study aimed to identify miRNA features linked to metastatic spread in MTC, focusing on the transition from N0 to N1. Co-expression networks were constructed for N0 and N1 tumors, and differential connectivity analysis was used to identify key miRNAs acting as regulatory hubs. Functional annotation of their target genes was performed using the Kyoto Encyclopedia of Genes and Genomes (KEGG), Gene Ontology (GO), and Reactome pathway analyses. Validation experiments were carried out in MTC cells to evaluate the effects of selected miRNAs on cell proliferation, survival, and MAPK pathway activation. Network analysis revealed distinct miRNA co-expression patterns between N0 and N1 tumors. Differential network analysis highlighted miR-145-3p as a central regulatory hub, exhibiting 29 altered co-expression changes and a marked loss of connectivity in N1. Target enrichment identified 59 validated genes, including key oncogenic drivers such as MYC, PTEN, BCL2, PIK3CA, AKT1, and MAPK7. In MTC cells, simultaneous inhibition of miR-145-3p together with its top co-expressed miRNAs increased proliferation and survival, and enhanced ERK phosphorylation, indicating MAPK pathway activation and a shift toward a more aggressive phenotype. In conclusion, this study identifies a miRNA regulatory hub centered on miR-145-3p that is associated with metastatic progression and highlights the value of network-based approaches in uncovering mechanisms of cancer dissemination. The Journal of Pathology published by John Wiley & Sons Ltd on behalf of The Pathological Society of Great Britain and Ireland.
2026
MAPK signaling; medullary thyroid carcinoma; metastatic progression; miR‐145‐3p; microRNAs; network analysis
01 Pubblicazione su rivista::01a Articolo in rivista
Network based approach identifies miR‐145‐3p as a central regulatory hub associated to the progression from localized to metastatic medullary thyroid carcinoma / Citarella, A., Petti, M., Besharat, Z.M., Alfano, C., Splendiani, E., Trocchianesi, S., Cassandro, S., Chiacchiarini, M., Sabato, C., Gianno, F., Autilio, T.M., Brunetti, M., Catanzaro, G., Verrienti, A., Elisei, R., Ciampi, R., Romei, C., Castagna, M.G., Cantara, S., Marotta, V., et al.. - In: JOURNAL OF PATHOLOGY. - ISSN 0022-3417. - (2026). [10.1002/path.70116]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1774970
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