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Updated: Jan 30, 2026

Human Neuroendocrine Tumor Cell Lines as a Three-Dimensional Model for the Study of Human Neuroendocrine Tumor Therapy
Published on: August 14, 2012
The Tumor Microenvironment in Neuroendocrine Tumors: Biology and Therapeutic Implications
Mauro Cives1, Eleonora Pelle'1, Davide Quaresmini1
1Department of Biomedical Sciences and Human Oncology, University of Bari "Aldo Moro", Bari, Italy.
Abstract:
Neuroendocrine tumors (NETs) include a heterogeneous group of malignancies arising in the diffuse neuroendocrine system and characterized by indolent growth. Complex interactions take place among the cellular components of the microenvironment of these tumors, and the recognition of the molecular mediators of their interplay and cross talk is crucial to discover novel therapeutic targets. NET cells overexpress a plethora of proangiogenic molecules including vascular endothelial growth factor, platelet-derived growth factor, fibroblast growth factor, semaphorins, and angiopoietins that promote both recruitment and proliferation of endothelial cell precursors, thus resulting among the most vascularized cancers with a microvessel density 10-fold higher than epithelial tumors. Also, NETs operate multifaceted interactions with stromal cells, both at local and distant sites, and whether their paracrine secretion of serotonin, connective tissue growth factor, and transforming growth factor β primarily drives the fibroblast activation to enhance the tumor proliferation, on the other side NET-derived profibrotic factors accelerate the extracellular matrix remodeling and contribute to heart valves and/or mesenteric fibrosis development, namely, major complications of functioning NETs. However, at present, little is known on the immune landscape of NETs, but accumulating evidence shows that tumor-infiltrating neutrophils, mast cells, and/or macrophages concur to promote the neoangiogenic switch of these tumors by either direct or indirect mechanisms. On the other hand, immune checkpoint molecules are heterogeneously expressed in NETs' surrounding cells, and it is unclear whether or not tumor-infiltrating lymphocytes are antitumor armed within the microenvironment, given their low mutational load. Here, we review the current knowledge on both gastroenteropancreatic and pulmonary NETs' microenvironment as well as both established and innovative treatments aimed at targeting the tumor-host interplay.
Insights
Neuroendocrine tumors (NETs) involve complex microenvironment interactions. Understanding these cellular crosstalks and molecular mediators is key to developing novel therapeutic targets for NETs.
Area of Science:
- Oncology
- Tumor Microenvironment Research
- Cancer Biology
Background:
- Neuroendocrine tumors (NETs) are a diverse group of slow-growing cancers.
- The tumor microenvironment plays a critical role in NET development and progression.
- Understanding the molecular mediators of tumor-host interactions is essential for novel therapeutic strategies.
Purpose of the Study:
- To review the current knowledge on the microenvironment of gastroenteropancreatic and pulmonary NETs.
- To discuss established and innovative treatments targeting the tumor-host interplay in NETs.
- To highlight the importance of molecular mediators in NET progression and therapeutic development.
Main Methods:
- Review of existing literature on NET microenvironment.
- Analysis of molecular mediators involved in NET cell interactions.
- Examination of therapeutic strategies targeting tumor-host interplay.
Main Results:
- NETs exhibit extensive vascularization due to overexpression of proangiogenic factors.
- NETs interact with stromal cells, influencing tumor proliferation and fibrosis.
- The immune landscape of NETs is complex, involving neutrophils, mast cells, and macrophages in neoangiogenesis.
Conclusions:
- Targeting the tumor microenvironment and its molecular mediators offers promising therapeutic avenues for NETs.
- Further research into the immune landscape of NETs is needed to elucidate antitumor responses.
- Innovative treatments focusing on tumor-host interplay are crucial for improving NET patient outcomes.
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