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Selectin inhibitors and their proposed role in ischemia and reperfusion
Colleen R Calvey1, Luis H Toledo-Pereyra
1College of Human Medicine, and Department of Research, Kalamazoo Center for Medical Studies, Michigan State University. Kalamazoo, MI 49048, USA.
Abstract:
The selectin family of cellular adhesion molecules plays an important role in the cellular infiltration and molecular signaling associated with ischemia/reperfusion (I/R). Selectins are essential in the recruitment and infiltration of leukocytes to sites of inflammation, and consequently, selectin blockade represents an important area of current research in the potential alleviation of the cell-mediated injury associated with I/R. Previously, treatments targeted at only a single selectin have proven ineffective, due to compensation by uninhibited cell-adhesion molecules. However, pan-selectin antagonists - those inhibitors capable of blocking the actions of all three selectins - have demonstrated great potential in blocking the initial events in the leukocyte-endothelium adhesion cascade. A number of therapeutics have been developed, with the most promising results demonstrated by a class of non-oligosaccharide, small-molecule selectin antagonists. TB-1269 and OC-229 are two of the most promising of inhibitors in this class - they are capable of binding all three selectins, they have been demonstrated to reduce neutrophil infiltration following ischemia/reperfusion, and they have been associated with reduced tissue damage in experimental animal models of ischemia/reperfusion involving the liver, the heart, the kidneys, and the whole body. Furthermore, TBC-1269 has recently undergone successful phase I and phase IIa clinical trials for asthma and psoriasis. Though the timing of selectin inhibition is essential in attenuating leukocyte infiltration and cell-mediated injury, the transient blockade of selectin function, in a well-controlled setting, could be an extremely beneficial intervention in ischemia/reperfusion injury.
Insights
Pan-selectin antagonists, like TB-1269 and OC-229, show promise in reducing tissue damage from ischemia/reperfusion (I/R) injury by blocking leukocyte infiltration. These small-molecule inhibitors offer a potential therapeutic strategy for I/R-related conditions.
Area of Science:
- Immunology and Molecular Biology
- Cardiovascular and Renal Research
- Inflammation and Cellular Signaling
Background:
- Selectins are key cellular adhesion molecules mediating leukocyte infiltration during inflammation and ischemia/reperfusion (I/R).
- Targeting single selectins has been ineffective due to compensatory mechanisms; pan-selectin antagonists offer a broader approach.
- Leukocyte-endothelium adhesion is a critical early event in I/R-induced cell-mediated injury.
Purpose of the Study:
- To evaluate the potential of pan-selectin antagonists in mitigating ischemia/reperfusion (I/R) injury.
- To highlight the efficacy of small-molecule, non-oligosaccharide inhibitors targeting all three selectins.
- To assess the therapeutic implications of transient selectin blockade in I/R settings.
Main Methods:
- Investigated the role of selectin family molecules in ischemia/reperfusion (I/R) injury.
- Examined the efficacy of pan-selectin antagonists, specifically TB-1269 and OC-229.
- Utilized experimental animal models of I/R involving multiple organs (liver, heart, kidneys, whole body).
Main Results:
- Pan-selectin antagonists effectively block leukocyte infiltration in I/R models.
- TB-1269 and OC-229 demonstrated reduced neutrophil infiltration and tissue damage in various I/R animal models.
- TB-1269 has shown positive results in Phase I and IIa clinical trials for asthma and psoriasis.
Conclusions:
- Pan-selectin antagonists represent a promising therapeutic strategy for ischemia/reperfusion (I/R) injury.
- Transient, controlled blockade of selectin function could significantly benefit patients suffering from I/R-related conditions.
- Small-molecule, non-oligosaccharide inhibitors are particularly effective in attenuating I/R-induced cell-mediated injury.
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