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: Therapeutic decisions in oncology depend on a precise pathological classification of individual neoplasms. However, a comprehensive training of machine-learning models requires sufficiently large numbers of training samples, which are usually not available for rare cancer types.
Conference: 18th Annual ENETS Concerence (2021)
Presenting Author: Otto R
Authors: Otto R, Detjen K, Riemer P, Grötzinger C, Rindi G,
Keywords: bioinformatics, NET, PanNEN, deconvolution, transcriptomics, RNA-seq, neuroendocrine cancer,
Introduction: Peptide receptor targeting has proven to be a pivotal tool for diagnostic imaging and radioligand therapy of neuroendocrine neoplasms (NENs), which frequently express somatostatin receptors (SSTRs) on their cell surface. However, up to 30 % of NEN patients do not benefit from SSTR-based approaches, others develop a resistance.
Conference: 17th Annual ENETSConcerence (2020)
Presenting Author:
Authors: Grötzinger C, Exner S, Schuldt C, Du J, Sachindra S,
Keywords: receptor, targeting, imaging, prrt, peptide, angiotensin,
Introduction: Neuroendocrine tumours (NETs) have been found to overexpress somatostatin receptors (SSTRs), which led to the development of somatostatin analogs utilized for diagnostics and therapeutics. However, around 30% of all NETs do not respond to somatostatin based approaches, leading to an interest to find and characterize alternative cell surface targets.
Conference: 15th Annual ENETSConcerence (2018)
Presenting Author: Grötzinger C
Authors: Grötzinger C, Exner S, Wiedenmann B,
Keywords: AGTR1, PRRT, autoradiography, radioligand binding assay,
Introduction: Neuroendocrine tumors (NETs) express somatostatin receptors that are currently utilized for diagnostic and therapeutic approaches. For peptide receptor radionuclide therapy (PRRT), somatostatin analogs are coupled to radionuclides like 90Y or 177Lu, which after injection are bound and taken up specifically by NETs. One hypothesis potentially explaining the discrepancies between expected result and observed outcome of PRRT might be that somatostatin analogs induce a G1 arrest in NET cells, thereby rendering them radioresistant.
Conference: 15th Annual ENETSConcerence (2018)
Presenting Author: Grötzinger C
Authors: Grötzinger C, Exner S, Prasad V, Erdmann S, Wiedenmann B,
Keywords: PRRT,
Introduction: Peptide radioreceptor therapy (PRRT) is a promising therapy option for SSTR2-positive pancreatic neuroendocrine neoplasms (NEN). However, therapeutic effects are often not satisfying concerning sensitivity to PRRT. We hypothesize that the slow proliferation of NENs provides sufficient time for the repair of beta-particle induced-DNA damage. The ubiquitin-proteasome-system is involved in DNA damage repair and affected by the proteasome inhibitor bortezomib (Velcade®). The inhibition of DNA damage repair during PRRT may be an option to improve therapy response in NEN. We have recently demonstrated the damage repair inhibitory and pro-apoptotic effect of bortezomib in NEN in vitro (Briest et al., in revision).
Conference: 15th Annual ENETSConcerence (2018)
Presenting Author: Briest F
Authors: Briest F, Grötzinger C, Exner S, Sedding D, Baum R,
Keywords: peptide radioreceptor therapy, Lu-177-DOTATOC, PRRT, bortezomib, in vivo model, SPECT/CT Imaging, chicken CAM model, Sensitizer, DNA damage repair,