Key points are not available for this paper at this time.
In pursuit of developing advanced neuroprotective agents for neurodegenerative disorders, we rationally designed a series of novel hybrid molecules through structural integration of a vitamin K derivative with well-known antioxidants (ferulic acid, melatonin, α-lipoic acid, and Trolox, respectively). Systematic pharmacological evaluation revealed that most hybrids exhibited superior antioxidant activity in both DPPH radical scavenging and ORAC assays. Among these, a Trolox-vitamin K conjugate (compound 16e ) emerged as a promising compound, demonstrating exceptional neuroprotective efficacy across multiple neuronal injury models, including oxytosis, ferroptosis, and ATP depletion in HT22 hippocampal neurons. Mechanistic studies confirmed that this compound preserved synergistic cytoprotective effects of its parent pharmacophores against ferroptosis while concurrently exhibiting immunomodulatory activity in microglial cells. Notably, it significantly ameliorated A β 25−35 -induced cognitive deficits in a murine Alzheimer's disease model at a very low dose (0.1 mg/kg, i.p.), outperforming conventional neuroprotectants in therapeutic potency. These findings position this Trolox/vitamin K hybrid molecule as a neuroprotective candidate with translational potential for treating neurodegenerative pathologies. • Hybrid molecules out of viatamin K and various antioxidants have been synthesized • Antioxidant assays proved superior activity • A Trolox-vitamin K hybrid proved neuroprotective in a hippocampal cell line in multiple assays and showed immunomodulatory effects in microglial cells • The hybrid showed exceptional amelioration of A β 25−35 -induced cognitive deficits in a murine Alzheimer's disease model at very low dose (0.1 mg/kg)
He et al. (Mon,) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: