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Platelet inhibitory effects of the Phase 3 anticancer and normal tissue cytoprotective agent, RRx-001
Bryan Oronsky1, Neil Oronsky2, Pedro Cabrales3
1EpicentRx Inc, La Jolla, California.
Abstract:
The platelet inhibitory effects of the Phase 3 anticancer agent and nitric oxide (NO) donor, RRx-001, (1-bromoacetyl-3,3-dinitroazetidine) were examined ex vivo and compared with the diazeniumdiolate NO donor, diethylenetriamine NONOate (DETA-NONOate), which spontaneously releases nitric oxide in aqueous solution. In the absence of red blood cells and in a dose-dependent manner, DETA-NONOate strongly inhibited platelet aggregation induced by several stimuli (ADP, epinephrine and collagen) whereas RRx-001 only slightly inhibited platelet aggregation under the same conditions in a dose-dependent manner; these antiaggregant effects were blocked when both DETA-NONOate and RRx-001 were co-incubated with carboxy-PTIO (CPTIO 0.01-100 micromol), a widely accepted NO scavenger. However, in the presence of red blood cells from healthy human donors, RRx-001, which binds covalently to haemoglobin (Hb) and catalyses the production of NO from endogenous nitrite, more strongly inhibited the aggregation of platelets than DETA-NONOate in a dose-dependent manner likely because haemoglobin avidly scavenges nitric oxide and reduces its half-life; the RRx-001-mediated platelet inhibitory effect was increased in the presence of nitrite. The results of this study suggest that RRx-001-bound Hb (within RBCs) plays an important role in the bioconversion of to NO. , which makes RRx-001 a more physiologically relevant inhibitor of platelet aggregation than other nitric oxide donors, whose effects are attenuated in the presence of red blood cells. Therefore, RRx-001-mediated platelet inhibition is a potentially useful therapeutic property, especially in hypercoagulable cancer patients that are at an increased risk of thrombotic complications.
Insights
RRx-001, an anticancer agent, inhibits platelet aggregation more effectively than DETA-NONOate in red blood cells by generating nitric oxide (NO) via hemoglobin. This suggests RRx-001 has therapeutic potential for cancer patients at risk of thrombosis.
Area of Science:
- Pharmacology
- Oncology
- Hematology
Background:
- Platelet aggregation is a key factor in thrombotic complications, particularly in cancer patients.
- Nitric oxide (NO) donors are investigated for their antiplatelet effects.
- RRx-001 is a Phase 3 anticancer agent with potential nitric oxide-donating properties.
Purpose of the Study:
- To compare the ex vivo platelet inhibitory effects of RRx-001 with a standard nitric oxide donor, DETA-NONOate.
- To investigate the role of red blood cells (RBCs) and hemoglobin (Hb) in mediating the antiplatelet activity of RRx-001.
Main Methods:
- Platelet aggregation assays were performed using human donor blood.
- Experiments were conducted both in the absence and presence of red blood cells.
- Nitric oxide scavenging was assessed using carboxy-PTIO (CPTIO).
Main Results:
- In the absence of RBCs, DETA-NONOate strongly inhibited platelet aggregation, while RRx-001 showed only slight inhibition.
- In the presence of RBCs, RRx-001 demonstrated significantly greater inhibition of platelet aggregation compared to DETA-NONOate.
- RRx-001's antiplatelet effect was enhanced by nitrite and mediated by Hb-catalyzed NO production within RBCs.
Conclusions:
- RRx-001, through Hb interaction within RBCs, acts as a physiologically relevant nitric oxide donor for platelet inhibition.
- This mechanism makes RRx-001 a potentially superior antiplatelet agent compared to other NO donors in the presence of RBCs.
- RRx-001's platelet inhibitory property may offer therapeutic benefits for hypercoagulable cancer patients.
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