Neurogenesis-promoting natural product α-asarone modulates morphological dynamics of activated microglial

α-Asarone is an active constituent of Acori Tatarinowii, one of the widely used traditional Chinese Medicine to treat cognitive defect, and recently is shown to promote neurogenesis. Here, we demonstrated that low level (3µM) of α-asarone attenuated LPS-induced BV2 cell bipolar elongated morphologic...

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Main Authors: Qing Cai, Yuanyuan Li, Jianxin Mao, Gang Pei
Format: Article
Language:English
Published: Frontiers Media S.A. 2016-12-01
Series:Frontiers in Cellular Neuroscience
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fncel.2016.00280/full
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spelling doaj-6fc0199a42ad450fa67ad9dfd5e561ec2020-11-24T21:18:17ZengFrontiers Media S.A.Frontiers in Cellular Neuroscience1662-51022016-12-011010.3389/fncel.2016.00280229726Neurogenesis-promoting natural product α-asarone modulates morphological dynamics of activated microglialQing Cai0Yuanyuan Li1Jianxin Mao2Gang Pei3Gang Pei4Shanghai Institutes for Biological SciencesShanghai Institutes for Biological SciencesShanghai Institutes for Biological SciencesShanghai Institutes for Biological SciencesTongji Universityα-Asarone is an active constituent of Acori Tatarinowii, one of the widely used traditional Chinese Medicine to treat cognitive defect, and recently is shown to promote neurogenesis. Here, we demonstrated that low level (3µM) of α-asarone attenuated LPS-induced BV2 cell bipolar elongated morphological change, with no significant effect on the LPS-induced pro-inflammatory cytokine expressions. In addition, time-lapse analysis also revealed that α-asarone modulated LPS-induced BV2 morphological dynamics. Consistently a significant reduction in the LPS-induced Monocyte Chemoattractant Protein (MCP-1) mRNA and protein levels was also detected along with the morphological change. Mechanistic study showed that the attenuation effect to the LPS-resulted morphological modulation was also detected in the presence of MCP-1 antibodies or a CCR2 antagonist. This result has also been confirmed in primary cultured microglia. The in vivo investigation provided further evidence that α-asarone reduced the proportion of activated microglia, and reduced microglial tip number and maintained the velocity. Our study thus reveals α-asarone effectively modulates microglial morphological dynamics, and implies this effect of α-asarone may functionally relate to its influence on neurogenesis.http://journal.frontiersin.org/Journal/10.3389/fncel.2016.00280/fullMicrogliaZebrafishNeuroinflammationMCP-1α-asaronemorphological dynamics
collection DOAJ
language English
format Article
sources DOAJ
author Qing Cai
Yuanyuan Li
Jianxin Mao
Gang Pei
Gang Pei
spellingShingle Qing Cai
Yuanyuan Li
Jianxin Mao
Gang Pei
Gang Pei
Neurogenesis-promoting natural product α-asarone modulates morphological dynamics of activated microglial
Frontiers in Cellular Neuroscience
Microglia
Zebrafish
Neuroinflammation
MCP-1
α-asarone
morphological dynamics
author_facet Qing Cai
Yuanyuan Li
Jianxin Mao
Gang Pei
Gang Pei
author_sort Qing Cai
title Neurogenesis-promoting natural product α-asarone modulates morphological dynamics of activated microglial
title_short Neurogenesis-promoting natural product α-asarone modulates morphological dynamics of activated microglial
title_full Neurogenesis-promoting natural product α-asarone modulates morphological dynamics of activated microglial
title_fullStr Neurogenesis-promoting natural product α-asarone modulates morphological dynamics of activated microglial
title_full_unstemmed Neurogenesis-promoting natural product α-asarone modulates morphological dynamics of activated microglial
title_sort neurogenesis-promoting natural product α-asarone modulates morphological dynamics of activated microglial
publisher Frontiers Media S.A.
series Frontiers in Cellular Neuroscience
issn 1662-5102
publishDate 2016-12-01
description α-Asarone is an active constituent of Acori Tatarinowii, one of the widely used traditional Chinese Medicine to treat cognitive defect, and recently is shown to promote neurogenesis. Here, we demonstrated that low level (3µM) of α-asarone attenuated LPS-induced BV2 cell bipolar elongated morphological change, with no significant effect on the LPS-induced pro-inflammatory cytokine expressions. In addition, time-lapse analysis also revealed that α-asarone modulated LPS-induced BV2 morphological dynamics. Consistently a significant reduction in the LPS-induced Monocyte Chemoattractant Protein (MCP-1) mRNA and protein levels was also detected along with the morphological change. Mechanistic study showed that the attenuation effect to the LPS-resulted morphological modulation was also detected in the presence of MCP-1 antibodies or a CCR2 antagonist. This result has also been confirmed in primary cultured microglia. The in vivo investigation provided further evidence that α-asarone reduced the proportion of activated microglia, and reduced microglial tip number and maintained the velocity. Our study thus reveals α-asarone effectively modulates microglial morphological dynamics, and implies this effect of α-asarone may functionally relate to its influence on neurogenesis.
topic Microglia
Zebrafish
Neuroinflammation
MCP-1
α-asarone
morphological dynamics
url http://journal.frontiersin.org/Journal/10.3389/fncel.2016.00280/full
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AT gangpei neurogenesispromotingnaturalproductaasaronemodulatesmorphologicaldynamicsofactivatedmicroglial
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