細胞番号 : 細胞名
AES0139 : EB3
update : 2024/11/11
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細胞特性(Comment:英) | Mouse embryonic stem cell line derived from 129/Ola strain. Oct3/4 gene was replaced with 'ires-blasticidin S registant gene' in one allele. Feeder-free cell line. Feeder-free cell line. |
細胞特性(日) | マウス胚性幹細胞(129/Ola系統由来)。Oct3/4遺伝子の片方(一方の遺伝子座)がires-blasticidin S耐性遺伝子と置換されている(Oct3/4遺伝子の転写活性でblasticidin S耐性遺伝子が発現)。 |
細胞特性(寄託者記述:英) | |
細胞特性(寄託者記述:日) | |
使用条件(英) | In publishing research results obtained by the use of the BIOLOGICAL RESOURCE, a citation of the literature ref. (Mol Cell biol 2002;22:1526-36, Genes Cell 2004;9:471-477) designated by the DEPOSITOR is required. |
使用条件(日) | 利用者は、研究成果の公表にあたって寄託者の指定する文献 (Mol Cell biol 2002;22:1526-36、Genes Cell 2004;9:471-477) を引用すること。 |
備考(英) | |
備考(日) | |
提供申込書類(英) |
Order Form(C-0032.pdf)
 
MTA(C-0007.pdf)
 
MTA(C-0007p.pdf)
 
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Regarding MTA between user institutions and RIKEN BRC, there are two kinds of MTA, not-for-profit academic purpose (C-XXXX) and for-profit research purpose (C-XXXXp) , depending on the sort of user institutions and the purposes of use. Please use an appropriate MTA(to see). In relation to commercial use and use for patent filing, first of all Please contact RIKEN BRC (cellbank.brc@riken.jp).
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提供申込書類(日) |
依頼書C-0031.pdf
 
同意書(非営利学術目的)C-0003.pdf
 
同意書(営利目的)C-0003p.pdf
 
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提供同意書は、使用機関の種類や目的に応じて、非営利学術目的 (C-XXXX) と営利目的 (C-XXXXp) の2種類があります。該当する提供同意書をご使用ください(詳細)。特許等の取得及び商業利用等は事前に必ず cellbank.brc@riken.jp までご連絡ください。
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提供手数料 |
手数料とお支払いについてはこちらをご覧ください。 |
細胞基本情報
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寄託者 |
Niwa, Hitoshi
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樹立者 |
Niwa, Hitoshi
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寄託日 |
2008
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別名 |
RCB2717
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元の細胞 |
E14TG2a
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動物種 |
_mouse
< Mammals
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動物系統名 |
129/Ola
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性別 |
Male
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齢 |
embryo
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採取組織 |
embryonic stem cells
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細胞分類 |
ES
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遺伝子改変 |
recombinant
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外来遺伝子 |
One of Oct3/4 locus is disrupted by Ires-BSD KO vectors.
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細胞寿命 |
infinite
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細胞形態 |
ES-like
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Cellosaurus(Expasy) |
CVCL_J647
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細胞培養・検査情報
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寄託時情報 |
ロット情報 |
培地・試薬情報 |
培地・試薬一覧はこちらをご覧ください。 |
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培養形態 |
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Adherent cells
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培地 |
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GMEM + 10% FBS + 1mM Sodium Pyruvate + 0.1mM NEAA + 0.1mM 2-Mercaptoethanol + 1000U/ml mouse LIF
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抗生物質 |
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Free
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継代方法 |
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0.25% Trypsin + (0.02% EDTA or 0.04% EDTA)
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培養容器のコーティング |
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0.1% gelatin coated dish
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播種細胞数 |
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0.5-1 x 10 6 cells/100 mm dish
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継代・培地交換頻度 |
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Subculture : once/2-3 days
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培養最適温度 |
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37
℃
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二酸化炭素濃度 |
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5
%
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フィーダー細胞 |
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free
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凍結培地 |
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Medium + 10% DMSO
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凍結方法 |
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Slow freezing
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マイコプラズマ/アコレプラズマ |
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(-)
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マイコプラズマ |
(-)
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マウス系統検査 |
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OK
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アイソザイム検査 |
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LD, NP
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画像情報 |
寄託時情報 | ロット情報 |
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文献情報 |
Reference(英) |
3件
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Reference(日) |
0件
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利用者成果(英) |
11件
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利用者成果(日) |
0件
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Reference(英) |
4583
Masui S, Shimosato D, Toyooka Y, Yagi R, Takahashi K, Niwa H.
An efficient system to establish multiple embryonic stem cell lines carrying an inducible expression unit.
Nucleic Acids Res
2005
33(4):e43
PubMed ID: 15741176
DOI: 10.1093/nar/gni043
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3605
Ogawa K, Matsui H, Ohtsuka S, Niwa H.
A novel mechanism for regulating clonal propagation of mouse ES cells.
Genes Cells
2004
9(5):471-7
PubMed ID: 15147275
DOI: 10.1111/j.1356-9597.2004.00736.x
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4581
Fujikura J, Yamato E, Yonemura S, Hosoda K, Masui S, Nakao K, Miyazaki Ji J, Niwa H.
Differentiation of embryonic stem cells is induced by GATA factors.
Genes Dev
2002
16(7):784-9
PubMed ID: 11937486
DOI: 10.1101/gad.968802
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利用者成果(英) |
20705
Kiryo T, Takahashi Y, Miyata S.
Purification of pluripotent embryonic stem cells using dielectrophoresis and a flow control system.
Eng Life Sci
2022
22(5):417-426
PubMed ID: 35573134
DOI: 10.1002/elsc.202100113
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20720
Sugimoto M, Tada Y, Shichino S, Koyamatsu S, Tsumaki N, Abe K.
Universal Surface Biotinylation (USB): A simple, versatile and cost-effective sample multiplexing method for single-cell RNA-seq analysis.
DNA Res
2022
PubMed ID: 35652718
DOI: 10.1093/dnares/dsac017
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14075
Suzuki H, Kasai K, Kimura Y, Miyata S.
UV/ozone surface modification combined with atmospheric pressure plasma irradiation for cell culture plastics to improve pluripotent stem cell culture
Mater Sci Eng C Mater Biol Appl
2021
123:112012
PubMed ID: 33812631
DOI: 10.1016/j.msec.2021.112012
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13618
Takahashi Y, Miyata S.
Continuous ES/Feeder Cell-Sorting Device Using Dielectrophoresis and Controlled Fluid Flow
Micromachines (Basel)
2020
11(8):734
PubMed ID: 32751153
DOI: 10.3390/mi11080734
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11834
Kim SM, Wada KI, Ueki M, Hosokawa K, Maeda M, Sakai Y, Ito Y.
Cytoplasmic fusion between an enlarged embryonic stem cell and a somatic cell using a microtunnel device.
Biochem. Biophys. Res. Commun.
2019
PubMed ID: 31594640
DOI: 10.1016/j.bbrc.2019.09.131
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10836
Umegaki Y, Martinéz Brotons A, Nakanishi Y, Luo Z, Zhang H, Bonni A, Ikeuchi Y.
Palladin is a Neuron-Specific Translational Target of mTOR Signaling that Regulates Axon Morphogenesis.
J. Neurosci.
2018
38(21):4985-4995
PubMed ID: 29712777
DOI: 10.1523/JNEUROSCI.2370-17.2018
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10245
Kasai K, Kimura Y, Miyata S.
Improvement of adhesion and proliferation of mouse embryonic stem cells cultured on ozone/UV surface-modified substrates.
Mater Sci Eng C Mater Biol Appl
2017
78:354-361
PubMed ID: 28575995
DOI: 10.1016/j.msec.2017.04.021
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7322
Loh XJ, Wu YL.
Cationic star copolymers based on β-cyclodextrins for efficient gene delivery to mouse embryonic stem cell colonies.
Chem. Commun. (Camb.)
2015
51:10815-8
PubMed ID: 26040469
DOI: 10.1039/c5cc03686k
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15234
Arahara K, Matsumoto T, Morimatsu F, Arai K.
Fibronectin modified expression of Sonic hedgehog in ATRA-mediated neuronal differentiation
J Vet Med Sci
2015
77(11):1503-6
PubMed ID: 26051001
DOI: 10.1292/jvms.15-0122
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6208
Ogawa Y, Tanaka M, Tanabe M, Suzuki T, Togawa T, Fukushige T, Kanekura T, Sakuraba H, Oishi K.
Impaired neural differentiation of induced pluripotent stem cells generated from a mouse model of Sandhoff disease.
PLoS One
2013
8(1):e55856
PubMed ID: 23383290
DOI: 10.1371/journal.pone.0055856
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11715
Michihiko Sugimoto , Masayo Kondo, Michiko Hirose, Misao Suzuki, Kazuyuki Mekada, Takaya Abe, Hiroshi Kiyonari, Atsuo Ogura, Nobuo Takagi, Karen Artzt, Kuniya Abe
Molecular identification of t(w5): Vps52 promotes pluripotential cell differentiation through cell-cell interactions
Cell Rep
2012
2(5):1363-74
PubMed ID: 23142660
DOI: 10.1016/j.celrep.2012.10.004
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