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Merck

SCR060

Sigma-Aldrich

Human Neural Stem Cell Characterization Kit

The Human Neural Stem Cell Characterization Kit contains three molecular markers, Nestin, Sox 2 & Musashi that are frequently used to identify neural stem/progenitor cells.

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About This Item

UNSPSCコード:
12161503
eCl@ss:
32161000
NACRES:
NA.84

品質水準

化学種の反応性

human

メーカー/製品名

Chemicon®

テクニック

cell culture | stem cell: suitable
immunocytochemistry: suitable

入力

sample type neural stem cell(s)

輸送温度

dry ice

詳細

The Human Neural Stem Cell Characterization Kit (Catalog Number SCR060) contains three molecular markers, Nestin (Lendahl, et al., 1990) and Sox 2 (Graham, et al., 2003) and Musashi (Sakakibara, et al., 1996) that are frequently used to identify neural stem/progenitor cells along with more differentiated lineage markers including bIII-tubulin for neurons, GFAP for astrocytes and O1 for oligodendrocytes. Mouse and rabbit immunoglobulins for the assessment of background staining are also included. All of the antibodies provided in the kit have been tested and optimized for use in immunocytochemistry on human neural stem cells. We recommend that the Human Neural Stem Cell Characterization Kit be used in conjunction with differentiation assays that demonstrate multipotentiality of the starting cell population.

アプリケーション

Research Category
幹細胞研究
The Human Neural Stem Cell Characterization Kit contains three molecular markers, Nestin, Sox 2 & Musashi that are frequently used to identify neural stem/progenitor cells.

構成

Mouse anti-Nestin, 50ug

Rabbit anti-Sox-2, 20ug

Rabbit anti-Musashi, 50ug

Mouse anti-bIII Tubulin, 50ul

Rabbit anti-GFAP, 50ul

Mouse anti-Oligodendrocyte marker O1, 20ug

Mouse IgM, 50ug

Mouse IgG, 100ug

Rabbit IgG, 100ug

保管および安定性

When stored at the recommended storage conditions (refer to Kit Components), components are stable up to the expiration date. Do not expose to elevated temperatures. Discard any remaining reagents after the expiration date.

法的情報

CHEMICON is a registered trademark of Merck KGaA, Darmstadt, Germany

免責事項

Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.

保管分類コード

10 - Combustible liquids


適用法令

試験研究用途を考慮した関連法令を主に挙げております。化学物質以外については、一部の情報のみ提供しています。 製品を安全かつ合法的に使用することは、使用者の義務です。最新情報により修正される場合があります。WEBの反映には時間を要することがあるため、適宜SDSをご参照ください。

Jan Code

SCR060:


試験成績書(COA)

製品のロット番号・バッチ番号を入力して、試験成績書(COA) を検索できます。ロット番号・バッチ番号は、製品ラベルに「Lot」または「Batch」に続いて記載されています。

以前この製品を購入いただいたことがある場合

文書ライブラリで、最近購入した製品の文書を検索できます。

文書ライブラリにアクセスする

S Sakakibara et al.
Developmental biology, 176(2), 230-242 (1996-06-15)
There is increasing interest in the role of RNA-binding proteins during neural development. Drosophila Musashi is one of the neural RNA-binding proteins essential for neural development and required for asymmetric cell divisions in the Drosophila adult sensory organ development. Here
Jin-Seon Song et al.
Differentiation; research in biological diversity, 77(1), 29-37 (2009-03-14)
Regenerating human tooth ex vivo and biological repair of dental caries are hampered by non-viable odontogenic stem cells that can regenerate different tooth components. Odontoma is a developmental dental anomaly that may contain putative post-natal stem cells with the ability
Sakthidasan Jayaprakash et al.
Molecular and cellular biochemistry, 461(1-2), 171-182 (2019-08-21)
The BAF complex (SWI/SNF) is an ATP-dependent chromatin remodeler that adapts the structural organization of the chromatin. Despite a growing understanding of the composition of BAF in different cell types, the interaction network within the BAF complex is poorly understood.
U Lendahl et al.
Cell, 60(4), 585-595 (1990-02-23)
Multipotential CNS stem cells receive and implement instructions governing differentiation to diverse neuronal and glial fates. Exploration of the mechanisms generating the many cell types of the brain depends crucially on markers identifying the stem cell state. We describe a

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