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Targeting the mTOR signaling pathway in neuroendocrine tumors
1Department of Medical Oncology, Dana-Farber Cancer Institute, 450 Brookline Avenue, Boston, MA, 02215, USA, jang@partners.org.
Opinion Statement:
Neuroendocrine tumors (NETs) are a heterogeneous group of malignancies characterized by variable but most often indolent biologic behavior. Well-differentiated NETs can be broadly classified as either carcinoid or pancreatic NET. Although they have similar characteristics on routine histologic evaluation, the 2 tumor subtypes have different biology and respond differently to treatment, with most therapeutic agents demonstrating higher response rates in pancreatic NETs compared with carcinoid. Until recently, systemic treatment options for patients with advanced NETs were limited. However, improvements in our understanding of signaling pathways involved in the pathogenesis, growth, and spread of NETs have translated into an expansion of treatment options. Aberrant signaling through the mechanistic pathway of rapamycin (mTOR) pathway has been implicated in neuroendocrine tumorigenesis. Additionally, altered expression of mTOR pathway components has been observed in NETs and has been associated with clinical outcomes. Targeting the mTOR pathway has emerged as an effective treatment strategy in the management of advanced NETs. In a randomized, placebo-controlled study of patients with advanced pancreatic NET, treatment with the mTOR inhibitor everolimus was associated with improved progression-free survival (PFS). Largely based upon these data, everolimus has been approved in the United States and Europe for the treatment of patients with advanced pancreatic NET. The activity of everolimus remains under investigation in patients with carcinoid tumors. In a randomized study of patients with advanced carcinoid tumors associated with carcinoid syndrome, the addition of everolimus to octreotide was associated with improved PFS compared with octreotide. However, the results did not meet the prespecified level of statistical significance based on central review of radiographic imaging. Results from a randomized study examining the efficacy of everolimus in patients with nonfunctional gastrointestinal and lung NETs are awaited. In addition, further investigation is needed to determine whether primary tumor site or other clinical and molecular factors can impact response to mTOR inhibition. Although everolimus can slow tumor progression, significant tumor reduction is rarely obtained. Targeting multiple signaling pathways is a treatment strategy that may provide better tumor control and overcome resistance mechanisms involved with targeting a single pathway. Results of ongoing and future studies will provide important information regarding the added benefit of combining mTOR inhibitors with other targeted agents, such as VEGF pathway inhibitors, and cytotoxic chemotherapy in the treatment of advanced NETs.
Insights
Targeting the mTOR pathway with everolimus shows promise for advanced neuroendocrine tumors (NETs), improving progression-free survival in pancreatic NETs and under investigation for carcinoid tumors.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Neuroendocrine tumors (NETs) are a diverse group of cancers with typically slow growth.
- Pancreatic NETs and carcinoid tumors, though histologically similar, differ in biology and treatment response.
- Limited systemic treatment options were available for advanced NETs until recently.
Purpose of the Study:
- To evaluate the efficacy of targeting the mechanistic target of rapamycin (mTOR) pathway in advanced NETs.
- To assess the impact of the mTOR inhibitor everolimus on progression-free survival (PFS) in pancreatic and carcinoid NETs.
Main Methods:
- Review of randomized, placebo-controlled studies investigating everolimus in advanced pancreatic and carcinoid NETs.
- Analysis of progression-free survival (PFS) as a primary endpoint.
- Consideration of ongoing and future research combining mTOR inhibitors with other targeted therapies.
Main Results:
- Everolimus demonstrated improved PFS in advanced pancreatic NETs, leading to its approval.
- In carcinoid tumors with carcinoid syndrome, everolimus showed improved PFS versus octreotide, though not statistically significant by central review.
- Efficacy in nonfunctional gastrointestinal and lung NETs is pending further study.
Conclusions:
- Targeting the mTOR pathway with everolimus is an effective strategy for advanced pancreatic NETs and shows potential for carcinoid tumors.
- Further research is needed to explore optimal use in different NET subtypes and combinations with other agents.
- Combination therapies targeting multiple signaling pathways may offer superior tumor control for advanced NETs.
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