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D. M. Filippini

2 papers indexed here

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Aug 2026

Refining Prognostic Stratification in Head and Neck Paragangliomas: Insights from a SEER-Based Population Study.

OBJECTIVES Head and neck paragangliomas (HNPGLs) are rare neuroendocrine tumors with heterogeneous behavior, making prognostic assessment challenging. Although generally indolent, a subset exhibits malignant potential, and robust prognostic determinants remain insufficiently defined. This study aimed to identify clinical and pathological factors independently associated with overall survival (OS) in patients with HNPGLs. METHODS We performed a retrospective Surveillance, Epidemiology, and End Results (SEER)-based cohort study (1975-2021). Demographic, clinicopathologic, and treatment variables were evaluated using Kaplan-Meier survival estimates, Cox regression models, and receiver operating characteristic (ROC)-derived cutoffs. RESULTS Among 280 patients, most tumors originated in the carotid body (77.5%). In univariable analyses, extra-carotid location, tumor size ≥ 34.5 mm, absence of surgery, advanced stage, and older age were associated with poorer OS. In multivariable analysis, older age, advanced stage, and lack of surgery remained independently associated with reduced OS. CONCLUSIONS Age at diagnosis, disease stage, and surgical resection status were independently associated with OS, with stage emerging as the strongest determinant in HNPGLs. Associations involving tumor size and extra-carotid location should be interpreted as exploratory findings.

A. Carlini, Mirea Berti, Giuseppe Lamberti et al. · 0 citations
Review Open access Jul 2026

The SIRT Family: Subcellular Localization and Main Functions

The mammalian sirtuins (SIRTs), consisting of seven members (SIRT 1–7), are NAD+-dependent histone deacetylases (HDACs). Similar to other classical NAD+-independent HDACs, SIRTs regulate a wide range of key biological processes by deacetylating both histone and non-histone proteins. By linking cellular metabolism to tissue homeostasis, SIRTs play important roles in physiological regulation and are often deregulated in many human diseases including diabetes, neurodegeneration and cancer, particularly sarcomas. Here, we reviewed the expression and roles of SIRTs, especially the most studied family member SIRT 1, across several types of human sarcomas, including both bone and soft tissues sarcomas. We also discussed the clinical relevance of SIRTs and the potential of their modulation as a therapeutic strategy in sarcomas.

P. Quan, Christoph Schatz, D. M. Filippini et al. · 0 citations

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