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Updated: Apr 28, 2026

An Enrichment Method for Small Extracellular Vesicles Derived from Liver Cancer Tissue
Published on: February 3, 2023
Extracellular vesicle-mediated transfer of long non-coding RNA ROR modulates chemosensitivity in human hepatocellular
Kenji Takahashi1, Irene K Yan1, Takayuki Kogure1
1Department of Transplantation, Mayo Clinic, Jacksonville, FL, United States.
Abstract:
Hepatocellular cancers (HCC) are highly resistant to chemotherapy. TGFβ has been associated with chemoresistance in some human cancers but the mechanisms involved are unknown. We explored how TGFβ might contribute to altered responses to therapy by assessing the involvement and mechanistic contribution of extracellular vesicle long non-coding RNA (lncRNA) in mediating TGFβ-dependent chemoresistance. TGFβ reduced the sensitivity of HCC cells to sorafenib or doxorubicin and altered the release of both extracellular vesicles and of selected lncRNA within these vesicles. Amongst these, lincRNA-ROR (linc-ROR), a stress-responsive lncRNA was highly expressed in HCC cells and enriched within extracellular vesicles derived from tumor cells. Incubation with HCC-derived extracellular vesicles increased linc-ROR expression and reduced chemotherapy-induced cell death in recipient cells. Sorafenib increased linc-ROR expression in both tumor cells and extracellular vesicles, whereas siRNA to linc-ROR increased chemotherapy-induced apoptosis and cytotoxicity. Tumor-initiating cells that express CD133 have an increased resistance to therapy. TGFβ increased expression of CD133+ cells and colony growth in limiting dilution assays, both of which were attenuated by linc-ROR knockdown. These data provide mechanistic insights into primary chemoresistance in HCC by showing that: (a) TGFβ selectively enriches linc-RoR within extracellular vesicles, which has a potential role in intercellular signaling in response to TGFβ; (b) expression and enrichment of linc-ROR during chemotherapeutic stress plays a functional role in chemoresistance; and (c) the effects of TGFβ on chemoresistance in HCC may involve linc-RoR-dependent effects on tumor-initiating cells. These findings implicate extracellular vesicle lncRNA as mediators of the chemotherapeutic response, and support targeting linc-ROR to enhance chemosensitivity in HCC.
Insights
Transforming growth factor beta (TGFβ) promotes chemoresistance in hepatocellular cancers (HCC) by enriching extracellular vesicle long non-coding RNA-ROR (linc-ROR). Targeting linc-ROR may enhance chemotherapy effectiveness in HCC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Hepatocellular cancers (HCC) exhibit high chemoresistance.
- Transforming growth factor beta (TGFβ) is linked to chemoresistance, but mechanisms are unclear.
- Extracellular vesicles (EVs) and long non-coding RNAs (lncRNAs) are implicated in cancer progression.
Purpose of the Study:
- To investigate the role of TGFβ in mediating chemoresistance in HCC.
- To explore the contribution of EV-associated lncRNAs in TGFβ-dependent chemoresistance.
- To elucidate the mechanistic link between TGFβ, EVs, linc-ROR, and chemoresistance in HCC.
Main Methods:
- Assessed TGFβ's effect on HCC cell sensitivity to sorafenib and doxorubicin.
- Analyzed the release and content of EVs and lncRNAs.
- Quantified lincRNA-ROR (linc-ROR) expression in HCC cells and EVs.
- Investigated the impact of EV incubation and linc-ROR knockdown on chemoresistance.
- Examined TGFβ's influence on CD133+ tumor-initiating cells.
Main Results:
- TGFβ reduced HCC cell sensitivity to chemotherapy and altered EV/lncRNA release.
- linc-ROR was highly expressed in HCC cells and enriched in EVs.
- HCC-derived EVs carrying linc-ROR reduced chemotherapy-induced cell death.
- Sorafenib increased linc-ROR expression; linc-ROR knockdown enhanced chemosensitivity.
- TGFβ increased CD133+ cells and colony growth, which were reduced by linc-ROR knockdown.
Conclusions:
- TGFβ selectively enriches linc-ROR within EVs, suggesting a role in intercellular signaling.
- linc-ROR expression and EV enrichment during chemotherapy stress contribute to chemoresistance.
- TGFβ-induced chemoresistance in HCC involves linc-ROR-dependent effects on tumor-initiating cells.
- Targeting linc-ROR presents a potential strategy to enhance chemosensitivity in HCC.
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