Close
0
Inquiry Basket
Hot Products

Quantitative Human REG1β (Glycosylated) Sandwich ELISA Kit

CAT#: GLJF-0525-HX432

Datasheet Request COA
Specifications
Product Description
The quantitative human REG1β (glycosylated) sandwich ELISA kit is designed to detect human regenerating islet derived protein 1β (REG1β) levels. REG1β is a protein secreted by the pancreas, which has been implicated in pancreatic regeneration and cell survival. The kit is suitable for various biological samples such as tissue homogenates, cell lysates, serum, plasma. Its sensitivity is 0.836 ng/mL, which can accurately detect low concentrations of REG1β in the sample.
Target
REG1β
Kit Components
Pre-coated ELISA plate; Lyophilized standard; Biotin-labeled antibody; HRP-avidin; Various diluents; Wash buffer; TMB chromogenic substrate; Stop solution
Sample Types
Tissue homogenates, cell lysates, serum, plasma
Sample Volume
100 μL
Sensitivity
0.836 ng/mL
Detection Principle
Quantitative sandwich ELISA
Detection Range
2.50 ng/mL-100 ng/mL
Detection Time
1 h-5 h
Detection Wavelength
450 nm
Storage
Store at 2-8°C for long term storage.
Target Information
Species
Human
Full Name
Regenerating islet derived protein 1β
Alternate Names
REG1β; Regenerating islet derived protein 1β; PSPS2; REGH; Pancreatic stone protein
Uniprot No.
O-Glycosylation Site
27
Application Notes
Application
The quantitative human REG1β (glycosylated) sandwich ELISA kit is designed to measure glycosylated REG1β levels in samples. This measurement is valuable in research related to pancreatic functions and inflammation. The kit is applied in studies of conditions such as pancreatitis, which helps in understanding the role of REG1β.
Precision
Intra-Assay: n=20, CV <8%;
Inter-Assay: n=20, CV <10%;
Recovery
Serum sample: n=5, 85-100%;
Plasma sample: n=4, 80-95%;
Standard Curve

The standard curve is for reference only, and a new standard curve should be generated for each set of samples tested.
For Research Use Only.
Online Inquiry
Copyright © Creative Biolabs. All Rights Reserved.