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AB274393

Human HSPG ELISA Kit (Perlecan)

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(4 Publications)

Human HSPG ELISA Kit (Perlecan) is a single-wash 90-min Simplestep used to quantify Human HSPG (Perlecan) with a sensitivity of 47.215 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

View Alternative Names

Basement membrane-specific heparan sulfate proteoglycan core protein, HSPG, Perlecan, PLC, HSPG2

2 Images
Sandwich ELISA - Human HSPG ELISA Kit (Perlecan) (AB274393)
  • sELISA

Supplier Data

Sandwich ELISA - Human HSPG ELISA Kit (Perlecan) (AB274393)

Example of human HSPG2 standard curve in Sample Diluent NS.

The HSPG2 standard curve was prepared as described in Section 10. Raw data values are shown in the table. Background-subtracted data values (mean +/- SD) are graphed.

Sandwich ELISA - Human HSPG ELISA Kit (Perlecan) (AB274393)
  • sELISA

Supplier Data

Sandwich ELISA - Human HSPG ELISA Kit (Perlecan) (AB274393)

Interpolated concentrations of native HSPG2 in human serum, plasma samples.

The concentrations of HSPG2 were measured in duplicates, interpolated from the HSPG2 standard curves and corrected for sample dilution. Undiluted samples are as follows : serum 15%, plasma (citrate) 15%, plasma (EDTA) % and plasma (Heparin) 15%. The interpolated dilution factor corrected values are plotted (mean +/- SD, n=2). The mean HSPG2 concentration was determined to be 39.48 ng/mL in serum, 27.14 ng/mL in plasma (citrate) and 76.72 ng/mL in plasma (EDTA) and 14.99 ng/ml in plasma (heparin)

Key facts

Detection method

Colorimetric

Sample types

Heparin Plasma, Citrate plasma, Serum, EDTA Plasma

Reacts with

Human

Assay type

Sandwich (quantitative)

Sensitivity

= 47.215 pg/mL

Range

109.38 - 7000 pg/mL

Assay time

1h 30m

Assay Platform

Pre-coated microplate (12 x 8 well strips)

Reactivity data

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Product details

Human HSPG ELISA kit (ab274393) is a single-wash 90 min sandwich ELISA designed for the quantitative measurement of Human HSPG protein in human serum and plasma. It uses our proprietary SimpleStep ELISA® technology. Quantitate Human HSPG with 47.215 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.

HSPG2 functions as an integral component of basement membranes. In the glomerular basement membrane, it provides a barrier that is both size- and charge-selective. HSPG2 serves as an attachment substrate for cells and plays essential roles in vascularization. It is critical for normal heart development and for regulating the vascular response to injury. HSPG2 in an anti-angiogenic and anti-tumor peptide that inhibits blood vessel growth in the chorioallantoic membrane. It blocks endothelial cell adhesion to fibronectin and type I collagen. Interaction with its ligand, integrin alpha2/beta1, is required for the anti-angiogenic properties.

Precision

[ { "reproducibilityType": "Inter", "sample": "Serum", "replicates": 3, "mean": null, "standardDeviation": null, "coefficientOfVariability": "9.4" }, { "reproducibilityType": "Intra", "sample": "Serum", "replicates": 8, "mean": null, "standardDeviation": null, "coefficientOfVariability": "6.5" } ]

Recovery

[ { "sample": "Serum", "range": "83 - 95 %", "average": "= 89" }, { "sample": "EDTA Plasma", "range": "85 - 98 %", "average": "= 93" }, { "sample": "Heparin Plasma", "range": "103 - 113 %", "average": "= 107" }, { "sample": "Citrate plasma", "range": "97 - 107 %", "average": "= 102" } ]

What's included?

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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.

Heparan Sulfate Proteoglycan 2 also known as Perlecan is a large multidomain proteoglycan with a mass of over 500 kDa. It contains heparan sulfate chains that contribute to its role in the extracellular matrix. Perlecan is expressed in various tissues including cartilage basement membranes and vascular tissues. It interacts with other matrix proteins providing structural integrity and influencing cell behavior.
Biological function summary

Perlecan plays a critical role in cell adhesion proliferation and growth factor signaling. It is an important component of basement membranes and forms a structural complex with other matrix proteins. Its interaction with heparan sulfate chains enables binding with various ligands such as growth factors and cytokines optimizing their availability and functionality at the cell surface. This interaction is essential in tissue maintenance and repair processes.

Pathways

Perlecan participates in the regulation of the Wnt and Hedgehog signaling pathways. These pathways influence key developmental processes and dictate cellular differentiation and migration. Perlecan and its heparan sulfate chains modulate protein interactions within these pathways notably affecting proteins such as Dsh and Ctnnb1 which are essential in signal transduction.

Perlecan involvement has been linked with tumorigenesis and cardiovascular diseases. Aberrations in its structure or expression can alter cellular microenvironments impacting key processes like angiogenesis and metastasis. Furthermore its interaction with growth factors can facilitate the progression of diseases like cancer highlighting its connection with proteins such as VEGF and TGF-beta which play major roles in disease modulation.

Product protocols

Target data

Integral component of basement membranes. Component of the glomerular basement membrane (GBM), responsible for the fixed negative electrostatic membrane charge, and which provides a barrier which is both size- and charge-selective. It serves as an attachment substrate for cells. Plays essential roles in vascularization. Critical for normal heart development and for regulating the vascular response to injury. Also required for avascular cartilage development.. Endorepellin. Anti-angiogenic and anti-tumor peptide that inhibits endothelial cell migration, collagen-induced endothelial tube morphogenesis and blood vessel growth in the chorioallantoic membrane. Blocks endothelial cell adhesion to fibronectin and type I collagen. Anti-tumor agent in neovascularization. Interaction with its ligand, integrin alpha2/beta1, is required for the anti-angiogenic properties. Evokes a reduction in phosphorylation of receptor tyrosine kinases via alpha2/beta1 integrin-mediated activation of the tyrosine phosphatase, PTPN6.. LG3 peptide. Has anti-angiogenic properties that require binding of calcium ions for full activity.
See full target information Basement membrane-specific heparan sulfate proteoglycan core protein

Publications (4)

Recent publications for all applications. Explore the full list and refine your search

International journal of molecular sciences 25: PubMed39518935

2024

Proteomic Profiling of Endothelial Cell Secretomes After Exposure to Calciprotein Particles Reveals Downregulation of Basement Membrane Assembly and Increased Release of Soluble CD59.

Applications

Unspecified application

Species

Unspecified reactive species

Alexander Stepanov,Daria Shishkova,Victoria Markova,Yulia Markova,Alexey Frolov,Anastasia Lazebnaya,Karina Oshchepkova,Daria Perepletchikova,Daria Smirnova,Liubov Basovich,Egor Repkin,Anton Kutikhin

Clinical kidney journal 16:1278-1287 PubMed37529650

2023

Plasma glycocalyx pattern: a mirror of endothelial damage in chronic kidney disease.

Applications

Unspecified application

Species

Unspecified reactive species

Gemma Valera,Andrea Figuer,Jara Caro,Claudia Yuste,Enrique Morales,Noemí Ceprián,Guillermo Bodega,Rafael Ramírez,Matilde Alique,Julia Carracedo

Life (Basel, Switzerland) 12: PubMed35207580

2022

Multi-Omics Characterization of a Human Stem Cell-Based Model of Cardiac Hypertrophy.

Applications

Unspecified application

Species

Unspecified reactive species

Markus Johansson,Benjamin Ulfenborg,Christian X Andersson,Sepideh Heydarkhan-Hagvall,Anders Jeppsson,Peter Sartipy,Jane Synnergren

Nature communications 12:3543 PubMed34112803

2021

Tumor microenvironmental cytokines bound to cancer exosomes determine uptake by cytokine receptor-expressing cells and biodistribution.

Applications

Unspecified application

Species

Unspecified reactive species

Luize G Lima,Sunyoung Ham,Hyunku Shin,Edna P Z Chai,Erica S H Lek,Richard J Lobb,Alexandra F Müller,Suresh Mathivanan,Belinda Yeo,Yeonho Choi,Belinda S Parker,Andreas Möller
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