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Factors Within the Endoneurial Microenvironment Act to Suppress Tumorigenesis of MPNST
Jo Anne Stratton1,2,3, Peggy Assinck4,5, Sarthak Sinha2
1Hotchkiss Brain Institute, University of Calgary, Calgary, AB, Canada.
Abstract:
Background: Deciphering avenues to adequately control malignancies in the peripheral nerve will reduce the need for current, largely-ineffective, standards of care which includes the use of invasive, nerve-damaging, resection surgery. By avoiding the need for en bloc resection surgery, the likelihood of retained function or efficient nerve regeneration following the control of tumor growth is greater, which has several implications for long-term health and well-being of cancer survivors. Nerve tumors can arise as malignant peripheral nerve sheath tumors (MPNST) that result in a highly-aggressive form of soft tissue sarcoma. Although the precise cause of MPNST remains unknown, studies suggest that dysregulation of Schwann cells, mediated by the microenvironment, plays a key role in tumor progression. This study aimed to further characterize the role of local microenvironment on tumor progression, with an emphasis on identifying factors within tumor suppressive environments that have potential for therapeutic application. Methods: We created GFP-tagged adult induced tumorigenic Schwann cell lines (iSCs) and transplanted them into various in vivo microenvironments. We used immunohistochemistry to document the response of iSCs and performed proteomics analysis to identify local factors that might modulate divergent iSC behaviors. Results: Following transplant into the skin, spinal cord or epineurial compartment of the nerve, iSCs formed tumors closely resembling MPNST. In contrast, transplantation into the endoneurial compartment of the nerve significantly suppressed iSC proliferation. Proteomics analysis revealed a battery of factors enriched within the endoneurial compartment, of which one growth factor of interest, ciliary neurotrophic factor (CNTF) was capable of preventing iSCs proliferation in vitro. Conclusions: This dataset describes a novel approach for identifying biologically relevant therapeutic targets, such as CNTF, and highlights the complex relationship that tumor cells have with their local microenvironment. This study has significant implications for the development of future therapeutic strategies to fight MPNSTs, and, consequently, improve peripheral nerve regeneration and nerve function.
Insights
Controlling peripheral nerve tumors like malignant peripheral nerve sheath tumors (MPNSTs) may be possible by targeting the tumor microenvironment. The study found that ciliary neurotrophic factor (CNTF) suppressed tumor growth, offering a potential therapeutic target.
Area of Science:
- Oncology
- Neuroscience
- Biomedical Engineering
Background:
- Malignant peripheral nerve sheath tumors (MPNSTs) are aggressive soft tissue sarcomas.
- Current treatments involve invasive surgery, often leading to nerve damage and impaired function.
- Understanding the tumor microenvironment's role in MPNST progression is crucial for developing less invasive therapies.
Purpose of the Study:
- To investigate the influence of the local microenvironment on MPNST progression.
- To identify potential therapeutic targets within tumor-suppressive environments.
- To characterize the relationship between Schwann cells and their surrounding milieu.
Main Methods:
- Development of GFP-tagged induced tumorigenic Schwann cell lines (iSCs).
- Transplantation of iSCs into various in vivo microenvironments (skin, spinal cord, nerve compartments).
- Immunohistochemistry and proteomics analysis to assess iSC behavior and identify modulating factors.
Main Results:
- iSCs formed MPNST-like tumors in skin, spinal cord, and epineurial compartments.
- iSC proliferation was significantly suppressed within the endoneurial compartment.
- Proteomics identified ciliary neurotrophic factor (CNTF) in the endoneurial compartment, which inhibited iSC proliferation in vitro.
Conclusions:
- The study identified CNTF as a potential therapeutic target for MPNSTs.
- This research highlights the critical role of the tumor microenvironment in MPNST development and progression.
- Findings suggest new therapeutic strategies to improve outcomes for MPNST patients and enhance peripheral nerve regeneration.
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