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Porcine Insulin like growth factor binding protein 1 (IGFBP1) ELISA Kit-Sandwich

Cat. No.EK9F834

Product TypeAnimal Immunoassay Kits

Size

Product Overview

BioVenic Porcine IGFBP1 ELISA Kit-Sandwich is designed for the quantitative determination of Porcine insulin like growth factor binding protein 1 (IGFBP1) in serum, plasma, tissue homogenate, cell culture supernatant, cell lysate, and other biological fluids using a Sandwich ELISA method. For research use only.

Specifications

Assay Type ELISA-Sandwich
Specificity The assay kit is specific for Porcine IGFBP1.
Target Species Swine
Species Reactivity Swine
Detection Range 32-2000 pg/mL
Sensitivity 6.25 pg/mL
Reproducibility Intra-Assay: CV < 10%; Inter-Assay: CV < 10%
Assay Time Around 180 min
Sample Requirement Serum, plasma, tissue homogenate, cell culture supernatant, cell lysate, and other biological fluids.

Target Information

Insulin like growth factor binding protein 1 is encoded by the IGFBP1 gene in pigs. It was found that endoplasmic reticulum stress could significantly stimulate the secretion and synthesis of insulin-like growth factor (IGF-1), IGF-1 receptor (IGF-1R), and IGF-binding protein (IGFBP)-1 and IGFBP-3 in a porcine model.

Target/Biomarker Porcine IGFBP1
Target Synonym insulin like growth factor binding protein 1; IBP-1; IGFBP-1; insulin-like growth factor-binding protein 1; IGF-binding protein 1
Gene ID 397270
UniProt ID Q75ZP3

Shipping and Storage

This product is shipped with gel ice packs. It is recommended to store at 2-8 °C (Up to 6 months).

Documents

COA

To request a Certificate of Analysis, please enter the Lot No. in the search box. Note: Certificate of Analysis not available for kits.

The product is for research use only.
Not for commercial, prophylactic, diagnostic, or therapeutic applications.

References

  1. Wang, X. et al. GRP94 inhabits the immortalized porcine hepatic stellate cells apoptosis under endoplasmic reticulum stress through modulating the expression of IGF-1 and ubiquitin. International journal of molecular sciences. 2022, 23: 14059.
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