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Published on: May 6, 2018
Niche origin of mesenchymal stem cells derived microvesicles determines opposing effects on NSCLC: Primary versus
Oshrat Attar-Schneider1, Mahmoud Dabbah2, Liat Drucker2
1Lung Cancer Research, Lung Cancer Unit, Meir Medical Center, Kfar Saba 44281, Israel; Oncogenetic Laboratories, Meir Medical Center, Kfar Saba 44281, Israel; Oncology Department, Meir Medical Center, Kfar Saba 44281, Israel.
Abstract:
Novel therapeutic approaches that address the malignant cells in their stroma microenvironment are urgently needed in lung cancer. The stroma resident mesenchymal stem cells (MSCs) interact with cancer cells in diverse ways including microvesicles (MVs) that transfer proteins and RNA species thereby modulating recipient cells' phenotype. Previously, we have demonstrated that MSCs' secretome from the primary non-small cell lung cancer (NSCLC) niche (lung) and metastatic niche (bone marrow (BM)) demonstrate opposite effects on NSCLC cells in a translation initiation (TI) dependent manner. Here, we examined the effect of MVs secreted from BM-MSCs' or lung-MSCs (healthy, NSCLC) to NSCLC phenotype. Briefly, NSCLC cell lines treated with Lung or BM-MSCs' MVs were assayed for viability (WST-1), cell count/death (trypan), migration (scratch), TI status and MAPKs activation (immunoblotting). Corresponding to previous published trends, Lung-MSCs' MVs promoted NSCLC cells' assayed traits whereas, BM-MSCs' MVs suppressed them. Activation of MAPKs and autophagy was registered in lung-MSCs MVs treated NSCLC cell lines only. Furthermore, lung-MSCs' MVs' treated NSCLC cells demonstrated an early (5min) activation of MAPKs and TI factors (peIF4E/peIF4GI) not evident in BM-MSCs MVs treated cells. These observations depict a role for MSCs'-MVs in NSCLC phenotype design and display distinct differences between the primary and metastatic niches that correspond to disease progression. In conclusion, the systemic nature of MVs marks them as attractive therapeutic markers/targets and we propose that identification of specific cargoes/signals that differentiate between MSCs MVs of primary and metastatic niches may introduce fresh therapeutic approaches.
Insights
Mesenchymal stem cell (MSC) microvesicles (MVs) from lung or bone marrow niches differentially affect non-small cell lung cancer (NSCLC) cells. Lung MSC-MVs promote NSCLC growth and migration, while bone marrow MSC-MVs inhibit it, offering potential therapeutic targets.
Area of Science:
- Oncology
- Cell Biology
- Biochemistry
Background:
- Novel therapeutic strategies are crucial for lung cancer, targeting both malignant cells and their stroma microenvironment.
- Mesenchymal stem cells (MSCs) interact with cancer cells via microvesicles (MVs), influencing cancer cell phenotype.
- Previous research indicated opposing effects of MSC secretomes from primary (lung) and metastatic (bone marrow) niches on non-small cell lung cancer (NSCLC).
Purpose of the Study:
- To investigate the distinct effects of MVs derived from lung MSCs versus bone marrow (BM)-MSCs on NSCLC cell phenotype.
- To elucidate the underlying mechanisms, including translation initiation (TI) and MAPK pathway activation, modulated by these MVs.
Main Methods:
- NSCLC cell lines were treated with MVs from lung or BM-MSCs.
- Assays included viability (WST-1), cell count/death (trypan blue), migration (scratch assay), translation initiation status, and MAPK activation (immunoblotting).
Main Results:
- Lung-MSCs' MVs promoted NSCLC cell viability, migration, and proliferation, consistent with previous findings.
- BM-MSCs' MVs suppressed these assayed NSCLC traits.
- Activation of MAPKs and autophagy was observed in NSCLC cells treated with lung-MSCs' MVs, but not BM-MSCs' MVs.
- Early activation of MAPKs and TI factors (peIF4E/peIF4GI) was noted in lung-MSCs' MVs treated cells within 5 minutes.
Conclusions:
- MSCs' MVs play a significant role in shaping the NSCLC phenotype.
- Distinct differences exist between MVs from primary (lung) and metastatic (BM) niches, correlating with disease progression.
- MSC-derived MVs represent potential therapeutic markers or targets, with specific cargo identification offering new treatment avenues for NSCLC.
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