1643925-08-9
Chemical Structure
NSP-116
- CAS No.: 1643925-08-9
- Formula:C15H19N5O
- Molecular Weight:285.34
InChIKey: MUGPCDYPUGZGBK-UHFFFAOYSA-N
SMILES: O=C(C)N1CCN(CC1)C2=CC=C(C(N3C=NC=C3)=C2)N
Biological Activity: NSP-116 is an orally active antioxidant and neuroprotective agent. NSP-116 protects corneal epithelial cells from UV-A and blue light LED-induced photo-oxidative damage. NSP-116 scavenges DPPH, superoxide anion, and hydroxyl radicals, inhibits light-induced ROS production in photoreceptor cells, and inhibits lipid peroxidation in retinal homogenates. NSP-116 prevents light-induced photoreceptor cell death and retinal degeneration, and inhibits intracellular Fe2+ accumulation, autophagy, apoptosis, p38 phosphorylation, and microglial/macrophage activation. NSP-116 exerts neuroprotective effects in hemorrhagic stroke models. NSP-116 can be used for research on photokeratitis, dry age-related macular degeneration, and intracranial hemorrhage[1][2].
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NSP-116 | NSP-116 is an orally active antioxidant and neuroprotective agent. NSP-116 protects corneal epithelial cells from UV-A and blue light LED-induced photo-oxidative damage. NSP-116 scavenges DPPH, superoxide anion, and hydroxyl radicals, inhibits light-induced ROS production in photoreceptor cells, and inhibits lipid peroxidation in retinal homogenates. NSP-116 prevents light-induced photoreceptor cell death and retinal degeneration, and inhibits intracellular Fe2+ accumulation, autophagy, apoptosis, p38 phosphorylation, and microglial/macrophage activation. NSP-116 exerts neuroprotective effects in hemorrhagic stroke models. NSP-116 can be used for research on photokeratitis, dry age-related macular degeneration, and intracranial hemorrhage. | |||||||||||||||||||||
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References
- [1]. Ishida K, et al. Free-Radical Scavenger NSP-116 Protects the Corneal Epithelium against UV-A and Blue LED Light Exposure. Biological & pharmaceutical bulletin. 2021;44(7):937-946.
- [2]. Izawa H, et al. Protective effects of NSP-116, a novel imidazolyl aniline derivative, against light-induced retinal damage in vitro and in vivo. Free radical biology & medicine. 2016 Jul;96:304-12.