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A Flow Cytometry-Based Cytotoxicity Assay for the Assessment of Human NK Cell Activity
Published on: August 9, 2017
Trabectedin triggers direct and NK-mediated cytotoxicity in multiple myeloma
Maria Cucè1, Maria Eugenia Gallo Cantafio1, Maria Anna Siciliano1
1Department of Experimental and Clinical Medicine, Magna Graecia University, Salvatore Venuta University Campus, Viale Europa, 88100, Catanzaro, Italy.
Background:
Genomic instability is a feature of multiple myeloma (MM), and impairment in DNA damaging response (DDR) has an established role in disease pathobiology. Indeed, a deregulation of DNA repair pathways may contribute to genomic instability, to the establishment of drug resistance to genotoxic agents, and to the escape from immune surveillance. On these bases, we evaluated the role of different DDR pathways in MM and investigated, for the first time, the direct and immune-mediated anti-MM activity of the nucleotide excision repair (NER)-dependent agent trabectedin.
Methods:
Gene-expression profiling (GEP) was carried out with HTA2.0 Affymetrix array. Evaluation of apoptosis, cell cycle, and changes in cytokine production and release have been performed in 2D and 3D Matrigel-spheroid models through flow cytometry on MM cell lines and patients-derived primary MM cells exposed to increasing nanomolar concentrations of trabectedin. DNA-damage response has been evaluated through Western blot, immunofluorescence, and DNA fragmentation assay. Trabectedin-induced activation of NK has been assessed by CD107a degranulation. miRNAs quantification has been done through RT-PCR.
Results:
By comparing GEP meta-analysis of normal and MM plasma cells (PCs), we observed an enrichment in DNA NER genes in poor prognosis MM. Trabectedin triggered apoptosis in primary MM cells and MM cell lines in both 2D and 3D in vitro assays. Moreover, trabectedin induced DDR activation, cellular stress with ROS production, and cell cycle arrest. Additionally, a significant reduction of MCP1 cytokine and VEGF-A in U266-monocytes co-cultures was observed, confirming the impairment of MM-promoting milieu. Drug-induced cell stress in MM cells led to upregulation of NK activating receptors ligands (i.e., NKG2D), which translated into increased NK activation and degranulation. Mechanistically, this effect was linked to trabectedin-induced inhibition of NKG2D-ligands negative regulators IRF4 and IKZF1, as well as to miR-17 family downregulation in MM cells.
Conclusions:
Taken together, our findings indicate a pleiotropic activity of NER-targeting agent trabectedin, which appears a promising candidate for novel anti-MM therapeutic strategies.
Insights
Trabectedin, a DNA repair drug, shows direct and immune-mediated anti-multiple myeloma (MM) activity by inducing apoptosis and enhancing natural killer (NK) cell response. This DNA damage response (DDR) agent is a promising new therapy for MM.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Genomic instability and impaired DNA damage response (DDR) are hallmarks of multiple myeloma (MM).
- Deregulation of DNA repair pathways contributes to MM pathobiology, drug resistance, and immune evasion.
- The role of DDR pathways in MM and the activity of the nucleotide excision repair (NER)-dependent agent trabectedin were investigated.
Purpose of the Study:
- To evaluate the role of different DNA damage response (DDR) pathways in multiple myeloma (MM).
- To investigate the direct and immune-mediated anti-MM activity of trabectedin, a nucleotide excision repair (NER)-dependent agent.
Main Methods:
- Gene-expression profiling (GEP) was performed using HTA2.0 Affymetrix arrays.
- Apoptosis, cell cycle, cytokine production, and DNA-damage response were assessed in MM cell lines and primary cells.
- Trabectedin's effect on natural killer (NK) cell activation and miRNA expression was evaluated.
Main Results:
- Enrichment of DNA NER genes was observed in poor-prognosis MM.
- Trabectedin induced apoptosis, DDR activation, cellular stress, and cell cycle arrest in MM cells.
- Trabectedin enhanced NK cell activation by upregulating NKG2D ligands and downregulating their negative regulators.
Conclusions:
- Trabectedin exhibits pleiotropic activity against multiple myeloma (MM).
- The NER-targeting agent trabectedin demonstrates potential as a novel therapeutic strategy for MM.
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