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M2 macrophage-derived lncRNA NORAD in EVs promotes NSCLC progression via miR-520g-3p/SMIM22/GALE axis. | LitMetric

AI Article Synopsis

  • Non-small cell lung cancer (NSCLC) represents over 80% of lung cancer cases and is influenced by long non-coding RNAs (lncRNAs) in extracellular vesicles (EVs), which are key in cancer processes like proliferation and drug resistance.
  • The study focuses on the role of lncRNA NORAD in EVs from M2 macrophages in NSCLC, utilizing various methods to isolate EVs, study interactions, and assess their effects on glycolysis, cell growth, and apoptosis.
  • Results showed that lncRNA NORAD promotes NSCLC progression by targeting SMIM22 and miR-520g-3p within EVs, impacting tumor growth and cell proliferation through the miR-520g-3

Article Abstract

Non-small cell lung cancer (NSCLC) constitutes the majority of lung cancer cases, accounting for over 80%. RNAs in EVs play a pivotal role in various biological and pathological processes mediated by extracellular vesicle (EV). Long non-coding RNAs (lncRNAs) are widely associated with cancer-related functions, including cell proliferation, migration, invasion, and drug resistance. Tumor-associated macrophages are recognized as pivotal contributors to tumorigenesis. Given these insights, this study aims to uncover the impact of lncRNA NORAD in EVs derived from M2 macrophages in NSCLC cell lines and xenograft mouse models of NSCLC. EVs were meticulously isolated and verified based on their morphology and specific biomarkers. The interaction between lncRNA NORAD and SMIM22 was investigated using immunoprecipitation. The influence of SMIM22/GALE or lncRNA NORAD in EVs on glycolysis was assessed in NSCLC cell lines. Additionally, we evaluated the effects of M2 macrophage-derived lncRNA NORAD in EVs on cell proliferation and apoptosis through colony formation and flow cytometry assays. Furthermore, the impact of M2 macrophage-derived lncRNA NORAD in EVs on tumor growth was confirmed using xenograft tumor animal models. The results underscored the potential role of M2 macrophage-derived lncRNA NORAD in EVs in NSCLC. SMIM22/GALE promoted glycolysis and the proliferation of NSCLC cells. Furthermore, lncRNA NORAD in EVs targeted SMIM22 and miR-520g-3p in NSCLC cells. Notably, lncRNA NORAD in EVs promoted the proliferation of NSCLC cells and facilitated NSCLC tumor growth through the miR-520g-3p axis. In conclusion, M2 macrophage-derived lncRNA NORAD in EVs promotes NSCLC progression through the miR-520g-3p/SMIM22/GALE axis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11364787PMC
http://dx.doi.org/10.1038/s41698-024-00675-xDOI Listing

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