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Bovine Solute Carrier Family 2, Facilitated Glucose Transporter Member 1 (SLC2A1) ELISA Kit-Sandwich

Cat. No.EK11F512

Product TypeAnimal Immunoassay Kits

Size

Product Overview

BioVenic Bovine Solute Carrier Family 2, Facilitated Glucose Transporter Member 1 (SLC2A1) ELISA Kit-Sandwich is designed for the quantitative determination of Bovine Solute Carrier Family 2, Facilitated Glucose Transporter Member 1 (SLC2A1) in serum, plasma, tissue homogenate, cell culture supernatant, cell extract, 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 Bovine SLC2A1.
Target Species Bovine
Species Reactivity Bovine
Detection Range 1.56-100 ng/mL
Reproducibility Intra-Assay: CV < 10%; Inter-Assay: CV < 10%
Assay Time Around 270 min
Sample Requirement Serum, plasma, tissue homogenate, cell culture supernatant, cell extract, and other biological fluids.

Target Information

SLC2A1, also known as Glucose Transporter 1 (GLUT1), is a uniporter protein encoded by the SLC2A1 gene. It facilitates the transport of glucose across the plasma membranes of mammalian cells. Bovine Solute Carrier Family 2, Facilitated Glucose Transporter Member 1 is encoded by the SLC2A1 gene in cattle. The expression of LDHA and SLC2A1 in bovine blastocysts is regulated by oxygen levels and may be controlled by HIF2.

Target/Biomarker Bovine SLC2A1
Target Synonym solute carrier family 2 member 1; solute carrier family 2, facilitated glucose transporter member 1; GLUT-1; glucose transporter type 1, erythrocyte/brain; solute carrier family 2 (facilitated glucose transporter), member 1
Gene ID 282356
UniProt ID P27674

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. Sjaarda, C. P. et al. Interplay between maternal Slc6a4 mutation and prenatal stress: a possible mechanism for autistic behavior development. Scientific reports. 2017, 7: 8735.
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