SCR030
Human Embryonic Germ Layer Characterization Kit
CHEMICON′s Human Embryonic Germ Layer Characterization Kit allows researchers to assess the differentiation potential of their Human Embryonic Stem Cell (HESC) to form derivatives of all three embryonic germ layers.
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About This Item
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质量水平
种属反应性
human
制造商/商品名称
Chemicon®
技术
cell culture | stem cell: suitable
immunocytochemistry: suitable
输入
sample type induced pluripotent stem cell(s)
sample type: human embryonic stem cell(s)
运输
wet ice
一般描述
Human embryonic stem cells (HESC) are pluripotent stem cells that are capable of self-renewal and of differentiation in vitro and in vivo into a wide variety of cell types, including derivatives of all three embryonic germ layers. These primary germ layers will eventually give rise to all the tissues and organs of the body.
Mesoderm: bone, cartilage, muscle, blood and vascular system
Endoderm: gastrointestinal tract, respiratory tract and endocrine glands (including liver and pancreas)
Ectoderm: nervous system, skin
CHEMICON®′s Human Embryonic Germ Layer Characterization Kit (SCR030) allows researchers to assess the differentiation potential of their HESC to form derivatives of all three embryonic germ layers. Included in the kit are antibodies that are routinely used by stem cell researchers to identify the lineage fates of HESC following either spontaneous or directed differentiation.
Mesoderm: Smooth Muscle Actin (CBL171)
Cardiac Troponin I (MAB1691-50UG)
Endoderm: Alpha Fetoprotein (2004189)
Ectoderm: Nestin (ABD69)
MAP-2 (MAB3418-50UG)
Mesoderm: bone, cartilage, muscle, blood and vascular system
Endoderm: gastrointestinal tract, respiratory tract and endocrine glands (including liver and pancreas)
Ectoderm: nervous system, skin
CHEMICON®′s Human Embryonic Germ Layer Characterization Kit (SCR030) allows researchers to assess the differentiation potential of their HESC to form derivatives of all three embryonic germ layers. Included in the kit are antibodies that are routinely used by stem cell researchers to identify the lineage fates of HESC following either spontaneous or directed differentiation.
Mesoderm: Smooth Muscle Actin (CBL171)
Cardiac Troponin I (MAB1691-50UG)
Endoderm: Alpha Fetoprotein (2004189)
Ectoderm: Nestin (ABD69)
MAP-2 (MAB3418-50UG)
应用
CHEMICON′s Human Embryonic Germ Layer Characterization Kit allows researchers to assess the differentiation potential of their Human Embryonic Stem Cell (HESC) to form derivatives of all three embryonic germ layers.
Research Category
Stem Cell Research
Stem Cell Research
组分
50 μL of Alpha Fetoprotein mouse monoclonal 2004189
50 μg of Smooth Muscle Actin mouse monoclonal CBL171
50 μL of Nestin rabbit polyclonal ABD69
50 μg of Cardiac Troponin I mouse monoclonal MAB1691-50UG
50 μg of MAP-2 mouse monoclonal MAB3418-50UG
50 μg of Smooth Muscle Actin mouse monoclonal CBL171
50 μL of Nestin rabbit polyclonal ABD69
50 μg of Cardiac Troponin I mouse monoclonal MAB1691-50UG
50 μg of MAP-2 mouse monoclonal MAB3418-50UG
储存及稳定性
Maintain components according to the individual data sheets. Antibodies to alpha fetoprotein (2004189) and nestin (ABD69) are to be stored at -20°C (SCR030 - Part 1). Antibodies to smooth muscle actin (CBL171), cardiac troponin I (MAB1691-50UG) and MAP-2 (MAB3418-50UG) are to be stored at 2 - 8°C (SCR030 - Part 2).
法律信息
CHEMICON is a registered trademark of Merck KGaA, Darmstadt, Germany
免责声明
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.
警示用语:
Warning
危险声明
危险分类
Acute Tox. 4 Dermal - Acute Tox. 4 Inhalation - Aquatic Chronic 3
储存分类代码
10 - Combustible liquids
法规信息
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Techniques to evaluate gene expression profiling, including real-time quantitative PCR, TaqMan low-density arrays, and sufficiently sensitive cDNA microarrays, are efficient methods for monitoring human embryonic stem cell (hESC) cultures. However, most of these high-throughput tests have a limited use due
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