Calcium carbonate supplementation causes memory impairment in mice

Objective: To investigate the influence of calcium carbonate supplementation on cognitive function in mice. Methods: Mice were fed diets containing 1.0% calcium carbonate for 8 weeks, following which they were evaluated for memory function using object recognition, Y-maze, and Barnes maze tests. Nex...

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Main Authors: Yasushi Hasegawa, Tatsurou Inoue, Tatsuya Fuji
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2018-01-01
Series:Asian Pacific Journal of Tropical Medicine
Subjects:
Online Access:http://www.apjtm.org/article.asp?issn=1995-7645;year=2018;volume=11;issue=10;spage=576;epage=582;aulast=Hasegawa
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spelling doaj-2bd07ad835924f719f83bdc3147c2a072020-11-25T01:18:49ZengWolters Kluwer Medknow PublicationsAsian Pacific Journal of Tropical Medicine2352-41462018-01-01111057658210.4103/1995-7645.244522Calcium carbonate supplementation causes memory impairment in miceYasushi HasegawaTatsurou InoueTatsuya FujiObjective: To investigate the influence of calcium carbonate supplementation on cognitive function in mice. Methods: Mice were fed diets containing 1.0% calcium carbonate for 8 weeks, following which they were evaluated for memory function using object recognition, Y-maze, and Barnes maze tests. Next, the expression levels of cAMP response element binding protein (CREB) and phosphorylated CREB, which is involved in the memory process were investigated in both the hippocampus and cerebral cortex using western blotting methods. Results: Mice fed on a diet containing calcium carbonate showed memory impairments in object recognition, Y-maze, and Barnes maze tests with respect to the mice that were on a control diet. Further, mice that were fed a diet containing calcium carbonate and a nimodipine (an L-type calcium channel antagonist), reversed calcium carbonate-induced memory impairments, thus suggesting that excessive entry of calcium in cells may cause memory impairments. A study using western blot revealed that expression of CREB and phosphorylated CREB in hippocampus and cerebral cortex was significantly lower in the calcium carbonate-fed mice than in the control-diet-fed mice. Conclusions: These results suggest that a calcium carbonate diet may cause memory impairment by decreasing CREB expression. This is the first report of calcium carbonate supplementation causing memory impairment. This simple animal model may be useful as a novel cognitive impairment model for drug development.http://www.apjtm.org/article.asp?issn=1995-7645;year=2018;volume=11;issue=10;spage=576;epage=582;aulast=Hasegawacalcium carbonatememory impairmentcreb
collection DOAJ
language English
format Article
sources DOAJ
author Yasushi Hasegawa
Tatsurou Inoue
Tatsuya Fuji
spellingShingle Yasushi Hasegawa
Tatsurou Inoue
Tatsuya Fuji
Calcium carbonate supplementation causes memory impairment in mice
Asian Pacific Journal of Tropical Medicine
calcium carbonate
memory impairment
creb
author_facet Yasushi Hasegawa
Tatsurou Inoue
Tatsuya Fuji
author_sort Yasushi Hasegawa
title Calcium carbonate supplementation causes memory impairment in mice
title_short Calcium carbonate supplementation causes memory impairment in mice
title_full Calcium carbonate supplementation causes memory impairment in mice
title_fullStr Calcium carbonate supplementation causes memory impairment in mice
title_full_unstemmed Calcium carbonate supplementation causes memory impairment in mice
title_sort calcium carbonate supplementation causes memory impairment in mice
publisher Wolters Kluwer Medknow Publications
series Asian Pacific Journal of Tropical Medicine
issn 2352-4146
publishDate 2018-01-01
description Objective: To investigate the influence of calcium carbonate supplementation on cognitive function in mice. Methods: Mice were fed diets containing 1.0% calcium carbonate for 8 weeks, following which they were evaluated for memory function using object recognition, Y-maze, and Barnes maze tests. Next, the expression levels of cAMP response element binding protein (CREB) and phosphorylated CREB, which is involved in the memory process were investigated in both the hippocampus and cerebral cortex using western blotting methods. Results: Mice fed on a diet containing calcium carbonate showed memory impairments in object recognition, Y-maze, and Barnes maze tests with respect to the mice that were on a control diet. Further, mice that were fed a diet containing calcium carbonate and a nimodipine (an L-type calcium channel antagonist), reversed calcium carbonate-induced memory impairments, thus suggesting that excessive entry of calcium in cells may cause memory impairments. A study using western blot revealed that expression of CREB and phosphorylated CREB in hippocampus and cerebral cortex was significantly lower in the calcium carbonate-fed mice than in the control-diet-fed mice. Conclusions: These results suggest that a calcium carbonate diet may cause memory impairment by decreasing CREB expression. This is the first report of calcium carbonate supplementation causing memory impairment. This simple animal model may be useful as a novel cognitive impairment model for drug development.
topic calcium carbonate
memory impairment
creb
url http://www.apjtm.org/article.asp?issn=1995-7645;year=2018;volume=11;issue=10;spage=576;epage=582;aulast=Hasegawa
work_keys_str_mv AT yasushihasegawa calciumcarbonatesupplementationcausesmemoryimpairmentinmice
AT tatsurouinoue calciumcarbonatesupplementationcausesmemoryimpairmentinmice
AT tatsuyafuji calciumcarbonatesupplementationcausesmemoryimpairmentinmice
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