Skip to main content
BrainCited

Effects of long-term fish oil-enriched diet on the sphingolipid metabolism in brain of old rats.

Nataliya A Babenko, Yaroslava A Semenova
Other Experimental gerontology 2010 33 次引用
PubMed DOI
<\/script>\n
`; }, get iframeSnippet() { const domain = 'braincited.com'; const params = 'pmid\u003D20197086'; return ``; }, get activeSnippet() { return this.method === 'script' ? this.scriptSnippet : this.iframeSnippet; }, copySnippet() { navigator.clipboard.writeText(this.activeSnippet).then(() => { this.copied = true; setTimeout(() => { this.copied = false; }, 2000); }); } }" @keydown.escape.window="open = false" @click.outside="open = false">

Embed This Widget

Style



      
      
    

Widget powered by . Free, no account required.

Study Design

研究类型
In Vitro
研究人群
dementia patients
持续时间
13.0 weeks
干预措施
Effects of long-term fish oil-enriched diet on the sphingolipid metabolism in brain of old rats. None
对照组
None
主要结局
inflammatory markers
效应方向
Positive
偏倚风险
Unclear

Abstract

An increase of the neutral sphingomyelinase (SMase) activity in the animal brain at old age is associated with a higher expression of the inflammatory marker, interleukin-1beta and a cognitive decline. Dietary n-3 polyunsaturated fatty acids (n-3 PUFA) are found to exhibit anti-inflammatory effects and normalize the age- or dementia-related cognitive function decline. In the paper we investigate the ceramide, sphingomyelin (SM) and phosphatidylserine (PS) levels in the hippocampus of 3-month-old-32-month-old rats as well as the correction of sphingolipid turnover in the brain of old rats by means of the dietetic fish oil and PS. To study the lipid turnover, the [(14)C]-labeled SM and palmitic acid were used. The [(14)C]ceramide level significantly increased while those of the [(14)C]SM, SM and PS levels decreased in the hippocampus of aged rats as compared with 3-month-old animals. Treatment of the rats with the fish oil or PS reduced the [(14)C]ceramide content and neutral SMase activity in the hippocampus of the 24-month-old animals with respect to control rats of the same age. These results suggest that dietary n-3 PUFA can prevent the age-dependent abnormalities of sphingolipid turnover via increased PS content in the hippocampus of old rats.

简要概述

It is suggested that dietary n-3 PUFA can prevent the age-dependent abnormalities of sphingolipid turnover via increased PS content in the hippocampus of old rats.

Used In Evidence Reviews

Similar Papers