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BRAND / VENDOR: Abcam

Abcam, ab290980, Rat WISP1 ELISA Kit - Extracellular

CATALOG NUMBER: ab290980
Regular price$0.99
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Product Description

Size: 1 x 96Tests
Rat WISP1 ELISA Kit - Extracellular is a single-wash 90-min Simplestep used to quantify Rat WISP1 with a sensitivity of 6.012 pg/ml. The assay uses a simple mix-wash-read protocol with just one incubation and one wash step. - Colorimetric Sandwich ELISA - 450 nm readout : works on any standard plate reader - Design your own immunoassay: we also offer the conjugation-ready antibody pair
Key facts
Detection method:Colorimetric,
Sample types:Cell culture supernatant, EDTA Plasma, Serum, Urine,
Reacts with:Rat,
Assay type:Sandwich (quantitative),
Sensitivity:= 6.012 pg/mL,
Range:15.625 - 1000 pg/mL,
Assay time:1h 30m,
Assay Platform:Pre-coated microplate (12 x 8 well strips)

Product details:
Rat WISP1 SimpleStep ELISA® kit is a single-wash 90 min sandwich ELISA designed for the quantitative measurement of WISP1 protein in rat serum, plasma (EDTA), plasma (citrate), cell culture supernatant, and urine. Quantitate Rat WISP1 with 6.012 pg/ml sensitivity.
SimpleStep ELISA® technology employs capture antibodies conjugated to an affinity tag that is recognized by the monoclonal antibody used to coat our SimpleStep ELISA® plates. This approach to sandwich ELISA allows the formation of the antibody-analyte sandwich complex in a single step, significantly reducing assay time. See the SimpleStep ELISA® protocol summary in the image section for further details. Our SimpleStep ELISA® technology provides several benefits:
-Single-wash protocol reduces assay time to 90 minutes or less
-High sensitivity, specificity and reproducibility from superior antibodies
-Fully validated in biological samples
-96-wells plate breakable into 12 x 8 wells strips
A 384-well SimpleStep ELISA® microplate (
ab203359
) is available to use as an alternative to the 96-well microplate provided with SimpleStep ELISA® kits.

Properties and Storage Information:
Shipped at conditions-Blue Ice, Appropriate short-term storage conditions-+4°C, Appropriate long-term storage conditions-+4°C, Storage information-+4°C

Supplementary Information:
This supplementary information is collated from multiple sources and compiled automatically.
WISP1 also known as Wnt1 Inducible Signaling Pathway Protein 1 or CCN4 is a protein with significant roles in cellular processes. This protein has an approximate mass of 41 kDa. You can find its expression in various tissues including bone cartilage and vascular tissues. WISP1 belongs to the CCN family of proteins which are matricellular proteins that interact with different cell surface molecules and receptor systems to modulate cellular functions.
Biological function summary
WISP1 plays an important role in cellular proliferation differentiation and survival. It functions as a matricellular protein that can form complexes with integrins and other cell surface receptors. This interaction influences cellular responses to environmental signals. WISP1 contributes to extracellular matrix interaction and cellular adhesion. By regulating these processes WISP1 supports tissue development repair and regeneration.
Pathways
The network of interactions influenced by WISP1 impacts several key signaling pathways including the Wnt signaling pathway and the TGF-beta pathway. These pathways are important for regulating cell growth and differentiation. In connection with the Wnt pathway WISP1 interacts with proteins like beta-catenin which plays an important role in signal transduction and gene expression. These interactions help maintain proper cellular function and structural integrity.
WISP1 shows links to cancer and fibrosis. Dysregulation of WISP1 expression and its related pathways can contribute to the development and progression of these conditions. In cancers WISP1 interacts with proteins like beta-catenin and contributes to the regulation of oncogenic processes such as tumor growth and metastasis. In fibrosis WISP1 influences the deposition of extracellular matrix proteins affecting tissue scarring and organ function.


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Collaboration

Tony Tang

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