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Published on: November 5, 2019
GMI-1070, a novel pan-selectin antagonist, reverses acute vascular occlusions in sickle cell mice
Jungshan Chang1, John T Patton, Arun Sarkar
1Departments of Medicine and Gene and Cell Medicine, Mount Sinai School of Medicine, New York, NY, USA.
Abstract:
Leukocyte adhesion in the microvasculature influences blood rheology and plays a key role in vaso-occlusive manifestations of sickle cell disease. Notably, polymorphonuclear neutrophils (PMNs) can capture circulating sickle red blood cells (sRBCs) in inflamed venules, leading to critical reduction in blood flow and vaso-occlusion. Recent studies have suggested that E-selectin expression by endothelial cells plays a key role by sending activating signals that lead to the activation of Mac-1 at the leading edge of PMNs, thereby allowing RBC capture. Thus, the inhibition of E-selectin may represent a valuable target in this disease. Here, we have tested the biologic properties of a novel synthetic pan-selectin inhibitor, GMI-1070, with in vitro assays and in a humanized model of sickle cell vaso-occlusion analyzed by intravital microscopy. We have found that GMI-1070 predominantly inhibited E-selectin-mediated adhesion and dramatically inhibited sRBC-leukocyte interactions, leading to improved microcirculatory blood flow and improved survival. These results suggest that GMI-1070 may represent a valuable novel therapeutic intervention for acute sickle cell crises that should be further evaluated in a clinical trial.
Insights
A novel drug, GMI-1070, effectively inhibited E-selectin, reducing sickle red blood cell interactions with leukocytes. This improved blood flow and survival in a sickle cell disease model, suggesting therapeutic potential.
Area of Science:
- Hematology
- Vascular Biology
- Pharmacology
Background:
- Leukocyte adhesion in microvasculature impacts blood flow and sickle cell vaso-occlusion.
- Polymorphonuclear neutrophils (PMNs) capture sickle red blood cells (sRBCs), reducing blood flow.
- E-selectin signaling activates PMN Mac-1, facilitating red blood cell capture.
Purpose of the Study:
- To evaluate the therapeutic potential of the novel pan-selectin inhibitor GMI-1070.
- To assess GMI-1070's effects on E-selectin-mediated adhesion and sickle cell vaso-occlusion.
Main Methods:
- In vitro assays were used to test GMI-1070's properties.
- A humanized mouse model of sickle cell vaso-occlusion was analyzed using intravital microscopy.
Main Results:
- GMI-1070 primarily inhibited E-selectin-mediated adhesion.
- The drug significantly reduced sRBC-leukocyte interactions.
- Microcirculatory blood flow and survival were improved in the treated model.
Conclusions:
- GMI-1070 demonstrates significant therapeutic potential for sickle cell disease crises.
- Inhibition of E-selectin is a promising target for managing vaso-occlusion.
- Further clinical evaluation of GMI-1070 in sickle cell patients is warranted.

