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April 19, 2026Oncology Research Featuring Preclinical and Clinical Cancer Therapeutics0 citations

Exosomes-Transferred lncRNA H19 Reverses Osimertinib Resistance by Upregulating PTEN via Sponging miR-148-3p in Non-Small Cell Lung Cancer

WSWeixiang SongYZYanbo ZhangXSXubo Shen

Key Points

  • The research aims to investigate how exosomal lncRNA H19 influences osimertinib resistance in non-small cell lung cancer through the PTEN signaling pathway.
  • Conducted functional assays including cell viability, colony formation, and apoptosis assessments.
  • Performed RNA quantification and Western blot to analyze lncRNA H19's impact on the PI3K-PTEN-Akt pathway.
  • Used immunofluorescence to study exosome function and distribution.
  • Employed dual-luciferase reporter analysis with RNA immunoprecipitation to explore lncRNA H19 and PTEN interactions.
  • LncRNA H19 expression decreased in osimertinib-resistant H1975R cells and their exosomes.
  • Overexpression of H19 increased osimertinib's cytotoxic effects, reduced H1975R cell growth, and promoted apoptosis.
  • Silencing H19 led to enhanced resistance to osimertinib in H1975 cells.
  • Exosomal lncRNA H19 sponged miR-148-3p, increasing PTEN levels, which subsequently inactivated the PI3K-Akt signaling pathway.

Abstract

Objective: Osimertinib can selectively inhibit both epidermal growth factor receptor (EGFR) sensitizing and T790M gatekeeper mutations, and has shown remarkable therapeutic effects in patients with lung adenocarcinoma. However, almost all patients inevitably develop drug resistance. Herein, we sought to clarify the roles of exosomal lncRNA H19 in modulating osimertinib resistance, focusing on the PI3K-PTEN-Akt signaling axis. Methods: Functional assays, including cell viability assay, colony formation, cell apoptosis and xenograft mouse, employed in evaluate the effects of exosomal lncRNA H19 on cell growth and apoptosis. RNA quantitation and western blot were adopted to demonstrate the regulatory roles of exosomal lncRNA H19 in PI3K-PTEN-Akt signaling pathway. Immunofluorescence was applied to obverse the function and distribution of exosomes. Furthermore, dual-luciferase reporter analysis combined with RNA immunoprecipitation (RIP) was applied to verify the molecular interaction between lncRNA H19 and phosphatase and tensin homolog (PTEN). Results: LncRNA H19 exhibited obviously decreased expression in H1975R cells and their secreted exosomes. Overexpression of H19 enhances the cytotoxicity of osimertinib, inhibits the growth of H1975R cells, and promotes apoptosis. Conversely, H19 silencing promotes osimertinib resistance in H1975 cells and enhances the cell-resistant phenotype. Furthermore, exosome-transferred lncRNA H19 sponged miR-148-3p to augment PTEN expression, which in turn inactivated the PI3K-Akt signaling pathway and ultimately induced cell apoptosis. Conclusion: Exosome-encapsulated lncRNA H19 can be delivered to osimertinib-resistant H1975R cells, thereby reversing resistance through the miR-148-3p/PTEN/PI3K-Akt axis. Our results uncover a potential therapeutic approach to surmount osimertinib resistance in lung cancer.

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Cite This Study

Song et al. (2026) studied this question.

synapsesocial.com/papers/69e472fc010ef96374d8ed44https://doi.org/10.32604/or.2026.078665
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