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Merck
CN

RAB0143

人类 Dkk-1 ELISA 试剂盒

for serum, plasma, cell culture supernatant and urine

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关于此项目

NACRES:
NA.84
UNSPSC Code:
41116158
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产品名称

人类 Dkk-1 ELISA 试剂盒, for serum, plasma, cell culture supernatant and urine

species reactivity

human

packaging

kit of 96 wells (12 strips x 8 wells)

technique(s)

ELISA: suitable
capture ELISA: suitable

input

sample type serum
sample type urine
sample type plasma
sample type cell culture supernatant(s)

assay range

inter-assay cv: <12%
intra-assay cv: <10%
sensitivity: 100 pg/mL
standard curve range: 122.9-30000 pg/mL

detection method

colorimetric

shipped in

wet ice

storage temp.

−20°C

Gene Information

human ... DKK1(22943)

Application

请参考Protocol了解详情。

Biochem/physiol Actions

Evidence strongly indicates that Dkk-1 protein functions as a potent inhibitor of the Wnt signaling pathway to enable appropriate positioning and development of the embryonic brain and other organ structures. hDkk-1 protein also has a pro-apoptotic function.

General description

The human Dkk-1 (hDkk-1) gene, a transcriptional target of the p53 tumor suppressor, encodes a powerful inhibitor of the Wnt signaling pathway and regulates the spatial patterning/morphogenesis of the mammalian central nervous system.The Dkk-1 gene, also called Dickkopf-1 , is a prototype member of a recently identified gene family that encodes secreted glycoproteins that control cell fate and neural patterning during embryonic development. This gene is located on human chromosome 10q.

Immunogen

Recombinant Human DKK1

Other Notes

A sample Certificate of Analysis is available for this product.
Please type the word sample in the text box provided for lot number.

pictograms

Corrosion

signalword

Warning

hcodes

Hazard Classifications

Met. Corr. 1

存储类别

8A - Combustible corrosive hazardous materials

法规信息

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分析证书(COA)

Lot/Batch Number

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Tumors of the Central Nervous System (2011)
Human Dkk-1, a gene encoding a Wnt antagonist, responds to DNA damage and its overexpression sensitizes brain tumor cells to apoptosis following alkylation damage of DNA
Shou J, et al.
Oncogene, 21(6), 878-878 (2002)
Mariusz L Hartman et al.
PloS one, 9(4), e95157-e95157 (2014-04-16)
The diversity of functional phenotypes observed within a tumor does not exclusively result from intratumoral genetic heterogeneity but also from the response of cancer cells to the microenvironment. We have previously demonstrated that the morphological and functional phenotypes of melanoma

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