scholarly journals Current Status and Perspectives of Targeted Therapy in Well-Differentiated Neuroendocrine Tumors

Oncology ◽  
2012 ◽  
Vol 83 (3) ◽  
pp. 117-127 ◽  
Author(s):  
Boris G. Naraev ◽  
Jonathan R. Strosberg ◽  
Thorvardur R. Halfdanarson
2020 ◽  
Vol 9 (4) ◽  
pp. 49-58
Author(s):  
A.  Z. Isyangulova ◽  
R.  Sh. Khasanov ◽  
R.  F. Enikeev

Extensive investigation of neuroendocrine tumors (NETs) has only started in recent years. The increased attention to this issue is due to the more frequent detection of NETs as a result of diagnostic methods improvement.The limited effectiveness of chemotherapy for well-differentiated advanced metastatic NETs of gastrointestinal tract (GIT) and pancreas demonstrates the need for development of the new and more effective treatment options.Recent studies on specific biological features of NETs have led to the development of the new targeted therapies which take into account high vascularization and overexpression of specific growth factors and related tyrosine kinase receptors. Thus, studying the mTOR TSC2, PTEN and PIK3CA signaling pathways opens up the new opportunities in the treatment of gastrointestinal or pancreatic NETs, especially in case of inoperable or metastatic tumors. Targeted therapy, which specifically inhibits growth factor receptors and related signaling pathways, is a promising approach to drug therapy for patients with gastrointestinal or pancreatic NETs.This review summarizes the state of the art and prospects for using targeted therapy, and describes clinical studies in the treatment of gastrointestinal and pancreatic NETs.


2011 ◽  
Vol 152 (10) ◽  
pp. 379-391 ◽  
Author(s):  
Ágota Petrányi ◽  
György Bodoky

Neuroendocrine tumours are heterogeneous and rare malignancies arising from endocrine cells located in various anatomical locations. Neuroendocrine tumours can be functional and may produce a wide variety of mediators, however, the majority of neuroendocrine tumours do not produce biologically active hormones (non-functioning tumours). On the basis of their pathological and biological characteristics they can be well differentiated as low malignant and poorly differentiated highly malignant tumours. In the case of the advanced low malignant tumours the application of somatostatin analogues not only may control symptoms but they also have direct anti-tumour effect. The use of higher doses of somatostatin analogues or new subtype selective agonists, and chimeric or pan-somatostatin analogues will probably improve the clinical management of the patients who fail to respond to standard somatostatin analogue treatment. Data show that somatostatin analogues and interferon have a synergistic effect. The currently used chemotherapy in progressive neuroendocrine tumors is mainly devoted to poorly differentiated tumours, but also to well differentiated carcinomas which are either not eligible or resistant to other therapies. However, the new anti-tumoural agents, could eventually replace these old recipes in the near future. Clinical trials show that telozomide with capecitabine result in more favorable toxic profile and higher and longer response rate in the case of well-differentiated tumours. Targeted therapy became a new possibility in neuroendocrine tumours too. The monoclonal antibody bevacizumab, which affects the vascular endothelial growth factor receptors, has beneficial effects both in monotherapies and in combination with somatostatin analogues or with oxaliplatine and capecitabine. Recently, the low molecular multikinase inhibitor, sunitinib has demonstrated efficacy in pancreas neuroendocrine tumors, which was proven in a phase 3 trial. The mammalian target of the rapamycin inhibitor everolimus, currently investigated in phase 3 trials, was also efficient in the same subtype. Further trials are needed to determine that in the case of other types of neuroendocrine tumours which targeted therapy could be efficient. Radioisotope-labeled peptide receptor therapy with 131I-MIBG, 90Y-DOTA-TOC or 177Lu-DOTA-TOC may offer a highly effective option for patients with progressive and advanced stage of neuroendocrine tumours. The purpose of this review is to review and analyze data available regarding contemporary chemotherapeutic management of neuroendocrine tumours in order to determine which therapy should be applied in the therapeutic arsenal. Orv. Hetil., 2011, 152, 379–391.


2011 ◽  
Vol 16 (3) ◽  
pp. 286-295 ◽  
Author(s):  
Chandrajit P. Raut ◽  
Matthew H. Kulke

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Philippe Thuillier ◽  
David Bourhis ◽  
Jean Philippe Metges ◽  
Romain Le Pennec ◽  
Karim Amrane ◽  
...  

AbstractTo present the feasibility of a dynamic whole-body (DWB) 68Ga-DOTATOC-PET/CT acquisition in patients with well-differentiated neuroendocrine tumors (WD-NETs). Sixty-one patients who underwent a DWB 68Ga-DOTATOC-PET/CT for a histologically proven/highly suspected WD-NET were prospectively included. The acquisition consisted in single-bed dynamic acquisition centered on the heart, followed by the DWB and static acquisitions. For liver, spleen and tumor (1–5/patient), Ki values (in ml/min/100 ml) were calculated according to Patlak's analysis and tumor-to-liver (TLR-Ki) and tumor-to-spleen ratios (TSR-Ki) were recorded. Ki-based parameters were compared to static parameters (SUVmax/SUVmean, TLR/TSRmean, according to liver/spleen SUVmean), in the whole-cohort and according to the PET system (analog/digital). A correlation analysis between SUVmean/Ki was performed using linear and non-linear regressions. Ki-liver was not influenced by the PET system used, unlike SUVmax/SUVmean. The regression analysis showed a non-linear relation between Ki/SUVmean (R2 = 0.55,0.68 and 0.71 for liver, spleen and tumor uptake, respectively) and a linear relation between TLRmean/TLR-Ki (R2 = 0.75). These results were not affected by the PET system, on the contrary of the relation between TSRmean/TSR-Ki (R2 = 0.94 and 0.73 using linear and non-linear regressions in digital and analog systems, respectively). Our study is the first showing the feasibility of a DWB 68Ga-DOTATOC-PET/CT acquisition in WD-NETs.


2021 ◽  
Author(s):  
Jane E. Rogers ◽  
Michael Lam ◽  
Daniel M. Halperin ◽  
Cecile G. Dagohoy ◽  
James C. Yao ◽  
...  

We evaluated outcomes of treatment with 5-fluorouracil (5-FU), doxorubicin, and streptozocin (FAS) in well-differentiated pancreatic neuroendocrine tumors (PanNETs) and its impact on subsequent therapy (everolimus or temozolomide). Advanced PanNET patients treated at our center from 1992 to 2013 were retrospectively reviewed. Patients received bolus 5-FU (400 mg/m2), streptozocin (400 mg/m2) (both IV, days 1-5) and doxorubicin (40 mg/m2 IV, day 1) every 28 days. Overall response rate (ORR) was assessed using RECIST version 1.1. Of 243 eligible patients, 220 were evaluable for ORR, progression-free survival (PFS), and toxicity. Most (90%) had metastatic, nonfunctional PanNETs; 14% had prior therapy. ORR to FAS was 41% (95% confidence interval [CI]: 36-48%). Median follow-up was 61 months. Median PFS was 20 (95% CI: 15-23) months; median overall survival (OS) was 63 (95% CI: 60-71) months. Cox regression analyses suggested improvement with first-line vs subsequent lines of FAS therapy. Main adverse events ≥ grade 3 were neutropenia (10%) and nausea/vomiting (5.5%). Dose reductions were required in 32% of patients. Post-FAS everolimus (n=108; 68% second line) had a median PFS of 10 (95% CI: 8-14) months. Post-FAS temozolomide (n=60; 53% > fourth line) had an ORR of 13% and median PFS of 5.2 (95% CI: 4-12) months. In this largest reported cohort of PanNETs treated with chemotherapy, FAS demonstrated activity without significant safety concerns. FAS did not appear to affect subsequent PFS with everolimus; this sequence is being evaluated prospectively. Responses were noted with subsequent temozolomide-based regimens although PFS was possibly limited by line of therapy.


2021 ◽  
Vol 32 (1) ◽  
pp. 154-168 ◽  
Author(s):  
Marco Volante ◽  
Ozgur Mete ◽  
Giuseppe Pelosi ◽  
Anja C. Roden ◽  
Ernst Jan M. Speel ◽  
...  

AbstractThoracic (pulmonary and thymic) neuroendocrine tumors are well-differentiated epithelial neuroendocrine neoplasms that are classified into typical and atypical carcinoid tumors based on mitotic index cut offs and presence or absence of necrosis. This classification scheme is of great prognostic value but designed for surgical specimens, only. Deep molecular characterization of thoracic neuroendocrine tumors highlighted their difference with neuroendocrine carcinomas. Neuroendocrine tumors of the lung are characterized by a low mutational burden, and a high prevalence of mutations in chromatin remodeling and histone modification-related genes, whereas mutations in genes frequently altered in neuroendocrine carcinomas are rare. Molecular profiling divided thymic neuroendocrine tumors into three clusters with distinct clinical outcomes and characterized by a different average of copy number instability. Moreover, integrated histopathological, molecular and clinical evidence supports the existence of a grey zone category between neuroendocrine tumors (carcinoid tumors) and neuroendocrine carcinomas. Indeed, cases with well differentiated morphology but mitotic/Ki-67 indexes close to neuroendocrine carcinomas have been increasingly recognized. These are characterized by specific molecular profiles and have an aggressive clinical behavior. Finally, thoracic neuroendocrine tumors may arise in the background of genetic susceptibility, being MEN1 syndrome the well-defined familial form. However, pathologists should be aware of rarer germline variants that are associated with the concurrence of neuroendocrine tumors of the lung or their precursors (such as DIPNECH) with other neoplasms, including but not limited to breast carcinomas. Therefore, genetic counseling for all young patients with thoracic neuroendocrine neoplasia and/or any patient with pathological evidence of neuroendocrine cell hyperplasia-to-neoplasia progression sequence or multifocal disease should be considered.


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