Resumen
Background and purpose: Current therapies for head and neck cancer frequently are not curative, necessitating novel therapeutic strategies. Thus, we studied whether inhibition of poly(ADP-Ribose) polymerase (PARP), a key DNA repair enzyme, could improve efficacy of radiotherapy in human head and neck cancer. Materials and methods: UM-SCC1, UM-SCC5, UM-SCC6, and FaDu human head and neck cancer cellular susceptibility to the PARP inhibitor (PARPi) ABT-888 and/or radiation (IR) was assessed using colony formation assays. DNA damage was evaluated using the alkaline comet assay and immunostaining for γ-H2AX foci. Non-homologous end-joining (NHEJ) mediated repair was measured using phospho-DNA-Pk foci. Epidermal growth factor receptor (EGFR) location was assessed by immunostaining. Poly ADP-Ribose polymerization (PAR) levels were assessed using immunoblotting. Results: Human head and neck cancer cells exhibited enhanced cytotoxicity with IR and ABT-888 compared to either agent alone. This increased susceptibility correlated with reduced nuclear EGFR, attenuation of NHEJ, and persistence of DNA damage following IR. Interestingly, a subset of head and neck cancer cells which had elevated basal PAR levels was susceptible to PARPi alone. Conclusions: Combining radiotherapy and PARP inhibition may improve outcomes and quality of life for head and neck cancer patients treated with radiotherapy. Furthermore, this novel strategy may also be feasible in other tumor types. Moreover, PAR levels should be investigated as a potential biomarker for tumor susceptibility to PARP inhibition.
| Idioma original | English |
|---|---|
| Páginas (desde-hasta) | 331-338 |
| Número de páginas | 8 |
| Publicación | Radiotherapy and Oncology |
| Volumen | 99 |
| N.º | 3 |
| DOI | |
| Estado | Published - jun 2011 |
Nota bibliográfica
Funding Information:This work was supported by the Center for Clinical and Translational Science (CCTS) Translational Research Intramural Pilot Grant Program (grant number 5UL1 RR025777-04 ) from the NIH National Center for Research Resources, the State of Alabama Investment Pool for Action (IMPACT) funds from the University of Alabama-Birmingham School of Medicine, and developmental support from the Comprehensive Cancer Center and Department of Radiation Oncology at the University of Alabama-Birmingham (to E.S.Y.).
Financiación
This work was supported by the Center for Clinical and Translational Science (CCTS) Translational Research Intramural Pilot Grant Program (grant number 5UL1 RR025777-04 ) from the NIH National Center for Research Resources, the State of Alabama Investment Pool for Action (IMPACT) funds from the University of Alabama-Birmingham School of Medicine, and developmental support from the Comprehensive Cancer Center and Department of Radiation Oncology at the University of Alabama-Birmingham (to E.S.Y.).
| Financiadores | Número del financiador |
|---|---|
| NIH National Center for Research Resources | |
| State of Alabama Investment Pool for Action | |
| University of Alabama, Birmingham | |
| University of Alabama-Birmingham School of Medicine | |
| National Center for Research Resources | UL1RR025777 |
| ImPACT Applications, Inc. | |
| Center for Clinical and Translational Science, University of Illinois at Chicago | |
| Center for Clinical and Translational Science, University of Utah | 5UL1 RR025777-04 |
ODS de las Naciones Unidas
Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible
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Good health and well being
ASJC Scopus subject areas
- Hematology
- Oncology
- Radiology Nuclear Medicine and imaging
Huella
Profundice en los temas de investigación de 'The poly(ADP-ribose) polymerase inhibitor ABT-888 reduces radiation-induced nuclear EGFR and augments head and neck tumor response to radiotherapy'. En conjunto forman una huella única.Citar esto
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