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Published on: October 11, 2017
The PARP1 Inhibitor Niraparib Represses DNA Damage Repair and Synergizes with Temozolomide for Antimyeloma Effects
Hong-Yuan Shen1, Hai-Long Tang1, Yan-Hua Zheng1
1Department of Hematology, Xijing Hospital, Air Force Medical University, Xi'an, 710032 Shaanxi, China.
Purpose:
Poly(ADP-ribose) polymerase 1 (PARP1) is necessary for single-strand break (SSB) repair by sensing DNA breaks and facilitating DNA repair through poly ADP-ribosylation of several DNA-binding and repair proteins. Inhibition of PARP1 results in collapsed DNA replication fork and double-strand breaks (DSBs). Accumulation of DSBs goes beyond the capacity of DNA repair response, ultimately resulting in cell death. This work is aimed at assessing the synergistic effects of the DNA-damaging agent temozolomide (TMZ) and the PARP inhibitor niraparib (Nira) in human multiple myeloma (MM) cells.
Materials And Methods:
MM RPMI8226 and NCI-H929 cells were administered TMZ and/or Nira for 48 hours. CCK-8 was utilized for cell viability assessment. Cell proliferation and apoptosis were detected flow-cytometrically. Immunofluorescence was performed for detecting γH2A.X expression. Soft-agar colony formation assay was applied to evaluate the antiproliferative effect. The amounts of related proteins were obtained by immunoblot. The combination index was calculated with the CompuSyn software. A human plasmacytoma xenograft model was established to assess the anti-MM effects in vivo. The anti-MM activities of TMZ and/or Nira were evaluated by H&E staining, IHC, and the TUNEL assay.
Results:
The results demonstrated that cotreatment with TMZ and Nira promoted DNA damage, cell cycle arrest, and apoptotic death in cultured cells but also reduced MM xenograft growth in nude mice, yielding highly synergistic effects. Immunoblot revealed that TMZ and Nira cotreatment markedly increased the expression of p-ATM, p-CHK2, RAD51, and γH2A.X, indicating the suppression of DNA damage response (DDR) and elevated DSB accumulation.
Conclusion:
Inhibition of PARP1 sensitizes genotoxic agents and represents an important therapeutic approach for MM. These findings provide preliminary evidence for combining PARP1 inhibitors with TMZ for MM treatment.
Insights
Combining temozolomide (TMZ) with niraparib (Nira), a PARP inhibitor, synergistically enhances DNA damage and cell death in multiple myeloma (MM) cells. This combination therapy shows promise for treating MM by overcoming DNA repair mechanisms.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Poly(ADP-ribose) polymerase 1 (PARP1) is crucial for repairing single-strand DNA breaks (SSBs).
- Inhibiting PARP1 leads to replication fork collapse and accumulation of double-strand breaks (DSBs), overwhelming cellular repair capacity and causing cell death.
- This mechanism is a potential therapeutic target for cancers like multiple myeloma (MM).
Purpose of the Study:
- To evaluate the synergistic effects of temozolomide (TMZ), a DNA-damaging agent, and niraparib (Nira), a PARP inhibitor, in human multiple myeloma (MM) cells.
- To assess the efficacy of this combination therapy both in vitro and in vivo.
Main Methods:
- Human MM cell lines (RPMI8226, NCI-H929) were treated with TMZ and/or Nira.
- Cell viability, proliferation, and apoptosis were assessed using CCK-8, flow cytometry, and soft-agar assays.
- DNA damage was evaluated by detecting γH2A.X expression via immunofluorescence and immunoblotting.
- In vivo efficacy was studied in a human plasmacytoma xenograft model using H&E staining, IHC, and TUNEL assays.
Main Results:
- Cotreatment with TMZ and Nira significantly promoted DNA damage, cell cycle arrest, and apoptosis in cultured MM cells.
- The combination therapy markedly reduced MM xenograft growth in nude mice, demonstrating synergistic anti-MM effects.
- Immunoblotting revealed increased expression of p-ATM, p-CHK2, RAD51, and γH2A.X, indicating suppressed DNA damage response (DDR) and elevated DSB accumulation.
Conclusions:
- Inhibition of PARP1 sensitizes cancer cells to genotoxic agents like TMZ, presenting a viable therapeutic strategy for MM.
- Combining PARP1 inhibitors with TMZ offers a promising approach for enhancing treatment outcomes in multiple myeloma.
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