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.

Cellular Signalling
|November 2, 2019
PubMed

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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