tumorigenesis

Neurotrofine e fattori angiogenetici nei tumori testa collo

Neurotrofine e fattori angiogenetici nei tumori testa collo

L'attività principale di questo gruppo di ricerca è di identificando biomarcatori precoci e predittivi nel tessuto bioptico e nel sangue dei pazienti con carcinoma del distretto testa-collo (HNSCC), con gli obiettivi specifici di: i) studiare i trend di espressione dei fattori neurotrofici e angiogenetici in relazione alla crescita e progressione del tumore, nonché alla sopravvivenza e proliferazione delle cellule tumorali, comprese le cellule staminali tumorali (CST); ii) utilizzare i dati ottenuti per migliorare l'analisi istologica e biochimica per la diagnosi e la progressione dell'HNSC

The nuclear-cytoplasmic trafficking of a chromatin-modifyng and remodelling protein (KMT2C), in osteosarcoma

Osteosarcoma is the most common paediatric primary non-hematopoietic bone tumor; the survival is related to the response to chemotherapy and development of metastases. KMT2C is a chromatin-modifying and remodelling protein and its expression has never been studied in osteosarcoma. The aim of this study was to understand the role of KMT2C in the osteosarcoma carcinogenesis and metastatic progression to identify a new molecular target and to provide new therapeutic approach.

The aberrant expression in epithelial cells of the mesenchymal isoform of FGFR2 controls the negative crosstalk between EMT and autophagy

Signalling of the epithelial splicing variant of fibroblast growth factor receptor 2 (FGFR2b) triggers both differentiation and autophagy, while the aberrant expression of the mesenchymal FGFR2c isoform in epithelial cells induces impaired differentiation, inhibition of autophagy as well as the induction of the epithelial-mesenchymal transition (EMT).

Wnt, notch, and TGF-β pathways impinge on hedgehog signaling complexity: an open window on cancer

Constitutive activation of the Hedgehog (Hh) signaling pathway is associated with increased risk of developing several malignancies. The biological and pathogenic importance of Hh signaling emphasizes the need to control its action tightly, both physiologically and therapeutically. Evidence of crosstalk between Hh and other signaling pathways is reported in many tumor types.

ERAP1 promotes Hedgehog-dependent tumorigenesis by controlling USP47-mediated degradation of βTrCP

The Hedgehog (Hh) pathway is essential for embryonic development and tissue homeostasis. Aberrant Hh signaling may occur in a wide range of human cancers, such as medulloblastoma, the most common brain malignancy in childhood. Here, we identify endoplasmic reticulum aminopeptidase 1 (ERAP1), a key regulator of innate and adaptive antitumor immune responses, as a previously unknown player in the Hh signaling pathway.

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