Abstract Library
Welcome to the open-access search for all ENETS abstracts presented at the Annual ENETS Conferences.
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ENETS Abstract Search
Introduction: Bronchial neuroendocrine neoplasms (NENs) can be subdivided into TCs, ACs and neuroendocrine carcinomas (NECs). Although a few studies have explored treatment approaches and oncological outcomes, most focus on surgical cohorts, small sample sizes, or mixed groups including TC, AC, and NECs. Real-life cohort data are lacking.
Conference:
Presenting Author: Clement D
Authors: Correia J, Sarker D, Dolly S, Frydman A, Srirajaskanthan R,
Keywords: bronchial carcinoid, treatment pattern, recurrence-free survival, overall survival,
Introduction: Paltusotine is a once-daily, oral, nonpeptide, selective SST2 receptor agonist in development for carcinoid syndrome (CS) treatment. In a Phase 2, open-label, dose-ranging study, paltusotine reduced the frequency and severity of CS symptoms and was well tolerated (NCT05361668).
Conference:
Presenting Author:
Authors: Kim R, Usiskin K, Fan X, Quock T, Mui C,
Keywords: paltusotine, phase 3 trial, somatostatin receptor agonist, neuroendocrine tumour, carcinoid syndrome,
Introduction: PRRT is an effective therapy for advanced NENs with SSTR-avid disease, however, the role of interval imaging in between PRRT cycles and its benefit is unknown.
Conference:
Presenting Author:
Authors: Grewal U, Patel R, Chandasekharan C,
Keywords: Peptide receptor radionuclide therapy, interval imaging, neuroendocrine tumour,
Introduction: Mesenteric fibrosis (MF) frequently develops around mesenteric metastasis in small intestinal neuroendocrine tumour (SI-NET) patients. Since MF is not always detected radiologically, histopathological examination is considered the gold standard. However, there is no uniform histopathological scoring system for MF correlated with clinical data.
Conference:
Presenting Author:
Authors: van der Slik E, Feelders R, Hofland L, Hall A, Iyer A,
Keywords: small intestinal neuroendocrine tumour, mesenteric fibrosis, grading system,
Introduction: Indoleamine-2,3-dioxygenase (IDO) converts L-tryptophan (T) to L-kynurenine (K) resulting in an immunosuppressive microenvironment.
Conference:
Presenting Author: Mancini C
Authors: Mancini C, Pecora G, Salerno G, Lionetto L, Visco V,
Keywords: Neuroendocrine Tumour, tryptophan, kynurenine, cytokines, immunotherapy, Indoleamine-2-3-dioxygenase,