4.8 Article

Extracellular vesicles derived from hypoxic glioma stem-like cells confer temozolomide resistance on glioblastoma by delivering miR-30b-3p

期刊

THERANOSTICS
卷 11, 期 4, 页码 1763-1779

出版社

IVYSPRING INT PUBL
DOI: 10.7150/thno.47057

关键词

GSCs; extracellular vesicles; miR-30b-3p; hypoxia; TMZ; chemoresistance

资金

  1. National Natural Science Foundation of China [81974389, 81772682]
  2. Jiangsu Province's Science and Technology Foundation [BE2018724]
  3. Jiangsu Province's Natural Science Foundation [20170108]
  4. Jiangsu Province's Key Discipline of Medicine [ZDXKA2016001]
  5. Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD)

向作者/读者索取更多资源

The study found that EVs from hypoxic GSCs exerted a greater impact on GBM chemoresistance, with significantly upregulated miR-30b-3p. HIF1 alpha and STAT3 transcriptionally induced miR-30b-3p expression, while hnRNPA2B1 facilitated its transfer into EVs, targeting RHOB and reducing apoptosis while promoting proliferation in vitro and in vivo. The findings suggest that targeting EV-miR-30b-3p could be a potential treatment strategy for GBM.
Rationale: Glioma stem-like cells (GSCs) contribute to temozolomide (TMZ) resistance in gliomas, although the mechanisms have not been delineated. Methods: In vitro functional experiments (colony formation assay, flow cytometric analysis, TUNEL assay) were used to assess the ability of extracellular vesicles (EVs) from hypoxic GSCs to promote TMZ resistance in glioblastoma (GBM) cells. RNA sequencing and quantitative Reverse Transcription-PCR were employed to identify the functional miRNA in hypoxic EVs. Chromatin immunoprecipitation assays were performed to analyze the transcriptional regulation of miRNAs by HIF1 alpha and STAT3. RIP and RNA pull-down assays were used to validate the hnRNPA2B1-mediated packaging of miRNA into EVs. The function of EV miR-30b-3p from hypoxic GSCs was verified by in vivo experiments and analysis of clinical samples. Results: Hypoxic GSC-derived EVs exerted a greater effect on GBM chemoresistance than those from normoxic GSCs. The miRNA profiling revealed that miR-30b-3p was significantly upregulated in the EVs from hypoxic GSCs. Further, HIF1 alpha and STAT3 transcriptionally induced miR-30b-3p expression. RNA immunoprecipitation and RNA-pull down assays revealed that binding of miR-30b-3p with hnRNPA2B1 facilitated its transfer into EVs. EV-packaged miR-30b-3p (EV-miR-30b-3p) directly targeted RHOB, resulting in decreased apoptosis and increased proliferation in vitro and in vivo. Our results provided evidence that miR-30b-3p in CSF could be a potential biomarker predicting resistance to TMZ. Conclusion: Our findings indicated that targeting EV-miR-30b-3p could provide a potential treatment strategy for GBM.

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