Therapeutic Effect of Novel Cyanopyrrolidine-Based Prolyl Oligopeptidase Inhibitors in Rat Models of Amnesia
Терапевтический эффект новых ингибиторов пролилолигопептидазы на основе цианопирролидина в моделях амнезии у крыс
2021-12-22
SCID: 54.1/f3j89jky
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blood-brain barrier penetrationconditioned passive avoidance reflexcyanopyrrolidine-based compoundsprolyl oligopeptidase inhibitorsrat models of amnesia
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Abstract (AI)
Prolyl oligopeptidase (POP) is a large cytosolic serine peptidase that is altered in patients with Alzheimer's disease, Parkinsonian syndrome, muscular dystrophies, and other denervating diseases. Thus, POP may represent a relevant therapeutic target for treatment of neuropsychiatric disorders and neurodegenerative diseases. Here, we report the characterization of five novel cyanopyrrolidine-based compounds (BocTrpPrdN, BocGlyPrdN, CbzMetPrdN, CbzGlnPrdN, and CbzAlaPrdN) and show that they are potent inhibitors of POP and are predicted to penetrate the blood-brain barrier (BBB). Indeed, we show that CbzMetPrdN penetrates the rat BBB and effectively inhibits POP in the brain when administered intraperitoneally. Furthermore, molecular modeling confirmed these compounds likely inhibit POP via interaction with the POP catalytic site. We evaluated protective effects of the cyanopyrrolidine-based POP inhibitors using scopolamine- and maximal electroshock-induced models of amnesia in rats and showed that BocTrpPrdN, BocGlyPrdN, CbzMetPrdN, and CbzGlnPrdN significantly prolonged conditioned passive avoidance reflex (CPAR) retention time when administered intraperitoneally (1 and 2 mg/kg) before evaluation in both models of amnesia, although CbzAlaPrdN was not effective in scopolamine-induced amnesia. Our data support previous reports on the antiamnesic effects of prolinal-based POP inhibitors and indicate an important role of POP in the regulation of learning and memory processes in the CNS.
Key Findings
1
BocTrpPrdN, BocGlyPrdN, CbzMetPrdN, and CbzGlnPrdN significantly prolonged conditioned passive avoidance retention at 1 and 2 mg/kg in scopolamine- and maximal electroshock-induced amnesia models.
2
CbzAlaPrdN was ineffective in the scopolamine-induced amnesia model, while the overall results support a role for prolyl oligopeptidase in learning and memory regulation.
3
CbzMetPrdN penetrated the rat blood-brain barrier after intraperitoneal administration and effectively inhibited prolyl oligopeptidase in the brain.
4
Five novel cyanopyrrolidine-based compounds were characterized as potent prolyl oligopeptidase inhibitors predicted to cross the blood-brain barrier.
5
Molecular modeling indicated that the compounds likely inhibit prolyl oligopeptidase through interactions with its catalytic site.
Research Object
Novel cyanopyrrolidine-based prolyl oligopeptidase inhibitors and their effects in rat models of amnesia
Research Subject
POP inhibition, blood–brain barrier penetration, and antiamnesic effects on learning and memory in scopolamine- and maximal electroshock-induced amnesia
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2021-12-22
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