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Published on: May 3, 2021
Targeting the NAD Salvage Synthesis Pathway as a Novel Therapeutic Strategy for Osteosarcomas with Low NAPRT
Natasja Franceschini1, Jan Oosting1, Maud Tamsma1
1Department of Pathology, Leiden University Medical Center, 2333 ZA Leiden, The Netherlands.
Abstract:
For osteosarcoma (OS), the most common primary malignant bone tumor, overall survival has hardly improved over the last four decades. Especially for metastatic OS, novel therapeutic targets are urgently needed. A hallmark of cancer is aberrant metabolism, which justifies targeting metabolic pathways as a promising therapeutic strategy. One of these metabolic pathways, the NAD+ synthesis pathway, can be considered as a potential target for OS treatment. Nicotinamide phosphoribosyltransferase (NAMPT) is the rate-limiting enzyme in the classical salvage pathway for NAD+ synthesis, and NAMPT is overexpressed in OS. In this study, five OS cell lines were treated with the NAMPT inhibitor FK866, which was shown to decrease nuclei count in a 2D in vitro model without inducing caspase-driven apoptosis. The reduction in cell viability by FK866 was confirmed in a 3D model of OS cell lines (n = 3). Interestingly, only OS cells with low nicotinic acid phosphoribosyltransferase domain containing 1 (NAPRT1) RNA expression were sensitive to NAMPT inhibition. Using a publicly available (Therapeutically Applicable Research to Generate Effective Treatments (TARGET)) and a previously published dataset, it was shown that in OS cell lines and primary tumors, low NAPRT1 RNA expression correlated with NAPRT1 methylation around the transcription start site. These results suggest that targeting NAMPT in osteosarcoma could be considered as a novel therapeutic strategy, where low NAPRT expression can serve as a biomarker for the selection of eligible patients.
Insights
Targeting NAMPT, an enzyme overexpressed in osteosarcoma (OS), shows promise for treating this bone cancer. Low NAPRT1 expression identifies patients likely to benefit from this novel therapeutic strategy.
Area of Science:
- Oncology
- Cancer Metabolism
- Molecular Biology
Background:
- Osteosarcoma (OS) has poor survival rates, especially in metastatic cases, necessitating new therapeutic targets.
- Aberrant cancer metabolism presents a promising avenue for novel treatment strategies.
- The NAD+ synthesis pathway, particularly the NAMPT enzyme, is implicated in OS progression.
Purpose of the Study:
- To investigate the therapeutic potential of targeting NAMPT in osteosarcoma.
- To identify biomarkers for patient selection in NAMPT-targeted therapy for OS.
Main Methods:
- Treatment of five OS cell lines with the NAMPT inhibitor FK866 in 2D and 3D in vitro models.
- Assessment of cell viability and apoptosis.
- Analysis of NAPRT1 RNA expression and its correlation with FK866 sensitivity using public datasets (TARGET).
- Investigation of NAPRT1 methylation patterns.
Main Results:
- FK866 treatment reduced OS cell nuclei count and viability without inducing apoptosis.
- Sensitivity to NAMPT inhibition was restricted to OS cells with low NAPRT1 RNA expression.
- Low NAPRT1 RNA expression in OS cell lines and primary tumors correlated with promoter methylation.
Conclusions:
- Targeting NAMPT is a potential therapeutic strategy for osteosarcoma.
- Low NAPRT1 expression serves as a predictive biomarker for identifying OS patients who may respond to NAMPT inhibition.

