Taselisib (GDC-0032), a potent β-sparing small molecule inhibitor of PI3K, radiosensitizes head and neck squamous carcinomas containing activating PIK3CA alterations Journal Article


Authors: Zumsteg, Z. S.; Morse, N.; Krigsfeld, G.; Gupta, G.; Higginson, D. S.; Lee, N. Y.; Morris, L.; Ganly, I.; Shiao, S. L.; Powell, S. N.; Chung, C. H.; Scaltriti, M.; Baselga, J.
Article Title: Taselisib (GDC-0032), a potent β-sparing small molecule inhibitor of PI3K, radiosensitizes head and neck squamous carcinomas containing activating PIK3CA alterations
Abstract: Purpose: Activating PIK3CA genomic alterations are frequent in head and neck squamous cell carcinoma (HNSCC), and there is an association between phosphoinositide 3-kinase (PI3K) signaling and radioresistance. Hence, we investigated the therapeutic efficacy of inhibiting PI3K with GDC-0032, a PI3K inhibitor with potent activity against p110α, in combination with radiation in HNSCC. Experimental Design: The efficacy ofGDC-0032 was assessed in vitro in 26 HNSCC cell lines with crystal violet proliferation assays, and changes in PI3K signaling were measured by Western blot analysis. Cytotoxicity and radiosensitization were assessed with Annexin V staining via flow cytometry and clonogenic survival assays, respectively. DNA damage repair was assessed with immunofluorescence for γH2AX foci, and cell cycle analysis was performed with flow cytometry. In vivo efficacy of GDC-0032 and radiation was assessed in xenografts implanted into nude mice. Results: GDC-0032 inhibited potently PI3K signaling and displayed greater antiproliferative activity in HNSCC cell lines with PIK3CA mutations or amplification, whereas cell lines with PTEN alterations were relatively resistant to its effects. Pretreatment with GDC-0032 radiosensitized PIK3CA-mutant HNSCC cells, enhanced radiation-induced apoptosis, impaired DNA damage repair, and prolonged G2-M arrest following irradiation. Furthermore, combined GDC-0032 and radiation was more effective than either treatment alone in vivo in subcutaneous xenograft models. Conclusions: GDC-0032 has increased potency in HNSCC cell lines harboring PIK3CA-activating aberrations. Further, combined GDC-0032 and radiotherapy was more efficacious than either treatment alone in PIK3CA-altered HNSCC in vitro and in vivo. This strategy warrants further clinical investigation. © 2015 AACR.
Journal Title: Clinical Cancer Research
Volume: 22
Issue: 8
ISSN: 1078-0432
Publisher: American Association for Cancer Research  
Date Published: 2016-04-15
Start Page: 2009
End Page: 2019
Language: English
DOI: 10.1158/1078-0432.ccr-15-2245
PROVIDER: scopus
PMCID: PMC4870591
PUBMED: 26589432
DOI/URL:
Notes: Article -- Export Date: 2 June 2016 -- Source: Scopus
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MSK Authors
  1. Simon Nicholas Powell
    331 Powell
  2. Nancy Y. Lee
    870 Lee
  3. Luc Morris
    278 Morris
  4. Ian Ganly
    429 Ganly
  5. Zachary Stephan Zumsteg
    36 Zumsteg
  6. Natasha Morse
    8 Morse
  7. Jose T Baselga
    484 Baselga
  8. Maurizio Scaltriti
    169 Scaltriti