Isoamericanin A improves lipopolysaccharide‐induced memory impairment in mice through suppression of the nicotinamide adenine dinucleotide phosphateoxidase‐dependent nuclear factor kappa B signaling pathway

Author:

Yang Yanqiu12,Chen Ru12,Che Yue12,Yao Xiaohu12,Fang Mingxia12,Wang Yingjie3,Zhou Di3,Li Ning3,Hou Yue12ORCID

Affiliation:

1. Key Laboratory of Bioresource Research and Development of Liaoning Province, College of Life and Health Sciences Northeastern University Shenyang China

2. National Frontiers Science Center for Industrial Intelligence and Systems Optimization, Key Laboratory of Data Analytics and Optimization for Smart Industry, Ministry of Education Northeastern University Shenyang China

3. School of Traditional Chinese Materia Medica, Key Laboratory of Innovative Traditional Chinese Medicine for Major Chronic Diseases of Liaoning province, Key Laboratory for TCM Material Basis Study and Innovative Drug Development of Shenyang City Shenyang Pharmaceutical University Shenyang China

Abstract

AbstractAlzheimer's disease (AD) is the most frequent cause of dementia in the elderly. Isoamericanin A (ISOA) is a natural lignan possessing great potential for AD treatment. This study investigated the efficacy of ISOA on memory impairments in the mice intrahippocampal injected with lipopolysaccharide (LPS) and the underlying mechanism. Y‐maze and Morris Water Maze data suggested that ISOA (5 and 10 mg/kg) ameliorated short‐ and long‐term memory impairments, and attenuated neuronal loss and lactate dehydrogenase activity. ISOA exerted anti‐inflammatory effect demonstrating by the reduction of ionized calcium‐binding adapter molecule 1 positive cells and suppression of marker protein and pro‐inflammation cytokines expressions induced by LPS. ISOA suppressed the nuclear factor kappa B (NF‐κB) signaling pathway by inhibiting IκBα phosphorylation and NF‐κB p65 phosphorylation and nuclear translocation. ISOA inhibited superoxide and intracellular reactive oxygen species accumulation by reducing nicotinamide adenine dinucleotide phosphate (NADPH) oxidase activation, demonstrating by suppressing NADP+ and NADPH contents, gp91phox expression, and p47phox expression and membrane translocation. These effects were enhanced in combination with NADPH oxidase inhibitor apocynin. The neuroprotective effect of ISOA was further proved in the in vitro models. Overall, our data revealed a novel pharmacological activity of ISOA: ameliorating memory impairment in AD via inhibiting neuroinflammation.

Funder

Natural Science Foundation of Liaoning Province

Publisher

Wiley

Subject

Pharmacology

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