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Author Spotlight: Exploring Salidroside's Molecular Mechanisms in Breast Cancer Treatment
Published on: June 9, 2023
PLK4 as a potential target to enhance radiosensitivity in triple-negative breast cancer
Sierra Pellizzari1, Vasudeva Bhat1,2, Harjot Athwal1
1Department of Anatomy and Cell Biology, Western University, N6A 3K7, London, ON, Canada.
Abstract:
Radioresistance is one of the barriers to developing more effective therapies against the most aggressive, triple-negative, breast cancer (TNBC) subtype. In our previous studies, we showed that inhibition of Polo-like Kinase 4 (PLK4) by a novel drug, CFI-400945 significantly enhances the anticancer effects of radiotherapy (RT) compared to single treatment alone. Here we further investigate the role of PLK4 in enhancing radiation effects in TNBC and explore mechanisms of PLK4 inhibition and radiation combinatorial antiproliferative effects. To assess cellular proliferation in response to treatments, we used colony formation assays in TNBC cell lines and patient-derived organoids (PDOs). Downregulation of PLK4 expression was achieved using siRNA silencing in TNBC cell lines. Immunofluorescence against centrin was used to assess the alteration of centriole amplification in response to treatments. We observed that inhibition of PLK4 by CFI-400945 or Centrinone B or its downregulation by siRNA, when combined with RT, resulted in a significant increase in antiproliferative effect in TNBC cells lines and PDOs compared to untreated or single-treated cells. Anticancer synergy was observed using a response matrix in PDOs treated with CFI-400945 and RT. We show that the overamplification of centrioles might be involved in the combined antiproliferative action of RT and PLK4 inhibition. Our data suggest that PLK4 is a promising target for enhancing the anticancer effects of RT in TNBC that, at least in part, is modulated by the overamplification of centrioles. These results support further mechanistic and translational studies of anti-PLK4 agents and RT as an anticancer combination treatment strategy.
Insights
Inhibiting Polo-like Kinase 4 (PLK4) with drugs or siRNA enhances radiotherapy effects against triple-negative breast cancer (TNBC). This combination therapy, potentially involving centriole overamplification, shows significant antiproliferative synergy in TNBC cells and organoids.
Area of Science:
- Oncology
- Cancer Biology
- Radiotherapy Research
Background:
- Triple-negative breast cancer (TNBC) exhibits radioresistance, hindering effective treatment development.
- Polo-like Kinase 4 (PLK4) inhibition, previously shown to enhance radiotherapy (RT) effects, warrants further investigation in TNBC.
- Understanding the mechanisms of combined PLK4 inhibition and RT is crucial for improving TNBC therapy.
Purpose of the Study:
- To further investigate the role of PLK4 in enhancing radiation effects in TNBC.
- To explore the mechanisms underlying the combined antiproliferative effects of PLK4 inhibition and RT.
- To assess the therapeutic potential of targeting PLK4 in combination with RT for TNBC treatment.
Main Methods:
- Cellular proliferation was assessed using colony formation assays in TNBC cell lines and patient-derived organoids (PDOs).
- PLK4 expression was downregulated using siRNA in TNBC cell lines.
- Centriole amplification was evaluated using immunofluorescence against centrin.
Main Results:
- Combined inhibition of PLK4 (using CFI-400945 or Centrinone B) or PLK4 downregulation (via siRNA) with RT significantly increased antiproliferative effects in TNBC cells and PDOs.
- Anticancer synergy was confirmed in PDOs treated with CFI-400945 and RT.
- Overamplification of centrioles was identified as a potential mechanism involved in the combined antiproliferative action of RT and PLK4 inhibition.
Conclusions:
- PLK4 is a promising therapeutic target for enhancing the efficacy of RT in TNBC.
- The combination of PLK4 inhibition and RT demonstrates significant synergistic antiproliferative effects.
- Centriole overamplification plays a role in the observed synergy, supporting further mechanistic and translational studies.
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