home > bioproject > PRJDB5292
identifier PRJDB5292
type bioproject
sameAs
organism Oryzias latipes
title Medaka Osteoclast2
description During space flight, bone mineral density is decreased by the influence of osteoclast activation, which molecular mechanism is expectantly investigated. In the study of medaka bone development, we investigated the system of vertebra formation, and firstly identified the presence of osteoclasts in medaka. Moreover, osteoclast rsorbing activity was affected by hypergravity, indicating the possibility that we can investigate the effect of microgravity on osteoclasts in space. To find this effect, we examine the alteration of osteoclast activity under microgravity with the histological analysis or the expression analysis by RNA in-situ hybridization. Furthermore, since we have succeeded the establishment of the medaka osteoclast-specific transgenic lines, we perform the in-vivo imaging analyses for gene expression and cell mobility. Finally, to examine the gravity sensing system, we employ tooth and bone as the high density organs, which are highly sensitive to gravity, and perform the histological analysis and the gene expression analysis of such gravity-sensitive tissues at surrounding pharyngeal teeth and supporting bone.
data type Transcriptome or Gene Expression
publication
properties 
{...}
dbXrefs
sra-run  DRR076066DRR076067DRR076068DRR076069DRR076070DRR076071DRR076072DRR076073DRR076074DRR076075 More
sra-submission  DRA005253
biosample  SAMD00066536SAMD00066537SAMD00066538SAMD00066539SAMD00066540SAMD00066541
sra-study  DRP003462
sra-sample  DRS040704DRS040705DRS040706DRS040707DRS040708DRS040709
sra-experiment  DRX069910DRX069911DRX069912DRX069913DRX069914DRX069915DRX069916DRX069917DRX069918DRX069919 More
distribution JSONJSON-LD
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status public
visibility unrestricted-access
dateCreated 2016-11-11T08:28:15+09:00
dateModified 2017-02-13T13:09:28+09:00
datePublished 2017-02-13T13:09:28+09:00