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AB213815

Human PEDF ELISA Kit (SerpinF1)

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(5 Publications)

Human PEDF ELISA Kit (SerpinF1) is a sandwich ELISA designed to quantify Human PEDF (SerpinF1) with a sensitivity of 20 pg/mL.

- Colorimetric sandwich ELISA - 450 nm readout - works on any plate reader
- Wide dynamic range - quantifies 0.78 - 50 ng/mL

View Alternative Names

PEDF, PIG35, SERPINF1, Pigment epithelium-derived factor, Cell proliferation-inducing gene 35 protein, EPC-1, Serpin F1

1 Images
Sandwich ELISA - Human PEDF ELISA Kit (SerpinF1) (AB213815)
  • sELISA

Supplier Data

Sandwich ELISA - Human PEDF ELISA Kit (SerpinF1) (AB213815)

Human PEDF ELISA Kit (SerpinF1) (ab213815) Standard Curve

Key facts

Detection method

Colorimetric

Sample types

Cell Lysate, Cell culture supernatant, EDTA Plasma, Heparin Plasma, Serum

Reacts with

Human

Assay type

Sandwich

Results type

Quantitative

Sensitivity

< 20 pg/mL

Range

0.78 - 50 ng/mL

Assay time

3h 30m

Assay Platform

Pre-coated microplate (12 x 8 well strips)

Reactivity data

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Product details

Human PEDF ELISA Kit (SerpinF1) ab213815 is a sandwich ELISA to measure Human PEDF (SerpinF1) in serum, EDTA plasma, heparin plasma, cell culture supernatant, cell lysate with a sensitivity of 20 pg/ml.

How the assay works

The ELISA kit is based on standard sandwich enzyme-linked immunosorbent assay technology. A polyclonal antibody from goat specific for PEDF has been pre-coated onto 96-well plates. Standards (NSO, M1-P418) and test samples are added to the wells, a biotinylated detection polyclonal antibody from goat specific for PEDF is added subsequently and then followed by washing with PBS or TBS buffer. Avidin-Biotin-Peroxidase Complex was added and unbound conjugates were washed away with PBS or TBS buffer. HRP substrate TMB was used to visualize HRP enzymatic reaction. TMB was catalyzed by HRP to produce a blue color product that changed into yellow after adding acidic stop solution. The density of yellow is proportional to the Human PEDF amount of sample captured in plate.

Assay Specificity

Our ELISA kits are rigorously validated to ensure the highest level of consistency and reproducibility. Please check the protocol booklet for more details

Human PEDF ELISA Kit (SerpinF1) ab213815 protocol summary

1. Add standard or sample to each well used. Incubate 37C
2. Add prepared biotin antibody to each well. Incubate at 37C
3. Add prepared Avidin-BiotinPeroxidase Complex (ABC). Incubate at 37C
4. Add TMB to each well. Incubate at room temperature.
5. Add Stop Solution to each well. Read at 450 nm

Pigment epithelium-derived factor (PEDF) is also known as serpin F1 (SERPINF1). In humans, it is encoded by the SERPINF1 gene. PEDF has a variety of functions including antiangiogenic, anti-tumorigenic, and neurotrophic properties. It suppresses retinal neovascularization and endothelial cell proliferation. And Antiangiogenic function is also conferred by PEDF through inhibition of both VEGFR-1 and VEGFR-2. In addition, the anti-tumorigenic effects of PEDF are not only due to inhibition of supporting vasculature, but also due to effects on the cancer cells themselves. PEDF is shown to inhibit cancer cell proliferation and increase apoptosis via the FAS/FASL pathway. Expression of PEDF in the human retina is found at 7.4 weeks of gestation, suggesting it may play a role in retinal neuron differentiation.

Precision

[ { "reproducibilityType": "Inter", "sample": "Sample 1", "replicates": 24, "mean": "6.23 ng/mL", "standardDeviation": "0.467", "coefficientOfVariability": "7.5" }, { "reproducibilityType": "Inter", "sample": "Sample 2", "replicates": 24, "mean": "12.1 ng/mL", "standardDeviation": "0.835", "coefficientOfVariability": "6.9" }, { "reproducibilityType": "Inter", "sample": "Sample 3", "replicates": 24, "mean": "26.4 ng/mL", "standardDeviation": "1.95", "coefficientOfVariability": "7.4" }, { "reproducibilityType": "Intra", "sample": "Sample 1", "replicates": 16, "mean": "5.62 ng/mL", "standardDeviation": "0.259", "coefficientOfVariability": "4.6" }, { "reproducibilityType": "Intra", "sample": "Sample 2", "replicates": 16, "mean": "10.1 ng/mL", "standardDeviation": "0.444", "coefficientOfVariability": "4.4" }, { "reproducibilityType": "Intra", "sample": "Sample 3", "replicates": 16, "mean": "25.5 ng/mL", "standardDeviation": "1.07", "coefficientOfVariability": "4.2" } ]

What's included?

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Properties and storage information

Shipped at conditions
Blue Ice
Appropriate short-term storage conditions
-20°C
Appropriate long-term storage conditions
-20°C
Storage information
-20°C

Supplementary information

This supplementary information is collated from multiple sources and compiled automatically.

PEDF also known as pigment epithelium-derived factor is a secreted glycoprotein with a mass of approximately 50 kDa. Its expression is highest in the retina and also occurs in several other tissues including liver and brain. PEDF has neurotrophic and neuroprotective properties. The PEDF protein works mechanically by interacting with receptors on cell surfaces to inhibit angiogenesis and promote neuronal survival and differentiation.
Biological function summary

PEDF plays a significant role in controlling angiogenesis due to its ability to inhibit excessive blood vessel formation. This makes PEDF essential in balancing the vasculature and nutrient availability in tissues. While PEDF does not form part of a larger protein complex its activity influences the biological interplay between cells by stabilizing the extracellular matrix and influencing cell signaling pathways involved in maintaining tissue homeostasis.

Pathways

PEDF interacts directly within the angiogenesis and neuroprotection pathways influencing cellular processes critical for normal tissue function. In angiogenesis PEDF disrupts the VEGF pathway by serving as an inhibitor thereby restricting uncontrolled vessel growth. It also plays a role in neuroprotection pathways where it cooperates with proteins like nerve growth factor to enhance neuronal survival and repair processes.

PEDF relates significantly to diabetic retinopathy and cancer. PEDF's angiogenesis inhibition has therapeutic implications in diabetic retinopathy where unregulated blood vessel growth leads to vision loss. It also shows potential in cancer therapy by targeting tumor angiogenesis. In both conditions its interaction with VEGF is notable as it competes to modulate angiogenesis with potential consequences for disease progression and treatment strategies.

Product protocols

Target data

Neurotrophic protein; induces extensive neuronal differentiation in retinoblastoma cells. Potent inhibitor of angiogenesis. As it does not undergo the S (stressed) to R (relaxed) conformational transition characteristic of active serpins, it exhibits no serine protease inhibitory activity.
See full target information SERPINF1

Publications (5)

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

Translational research : the journal of laboratory and clinical medicine 259:35-45 PubMed37085047

2023

Diabetes mellitus and aortic stenosis head to head: toward personalized medicine in patients with both pathologies.

Applications

Unspecified application

Species

Unspecified reactive species

Nerea Corbacho-Alonso,Tamara Sastre-Oliva,Luis F López-Almodovar,Jorge Solis,Luis R Padial,Teresa Tejerina,Montserrat Carrascal,Laura Mourino-Alvarez,Maria G Barderas

American journal of cancer research 12:3405-3421 PubMed35968337

2022

SHMT2 promotes tumor growth through VEGF and MAPK signaling pathway in breast cancer.

Applications

Unspecified application

Species

Unspecified reactive species

Shuang-Yan Xie,Ding-Bo Shi,Yi Ouyang,Fei Lin,Xiao-Yu Chen,Tong-Chao Jiang,Wen Xia,Ling Guo,Huan-Xin Lin

International journal of molecular sciences 21: PubMed32842471

2020

In Vitro Maturation of Retinal Pigment Epithelium Is Essential for Maintaining High Expression of Key Functional Genes.

Applications

Unspecified application

Species

Unspecified reactive species

Abdullah Al-Ani,Saud Sunba,Bilal Hafeez,Derek Toms,Mark Ungrin

Scientific reports 10:4815 PubMed32179759

2020

Multiplexed MRM-based protein quantification of putative prognostic biomarkers for chronic kidney disease progression in plasma.

Applications

Unspecified application

Species

Unspecified reactive species

Manousos Makridakis,Georgia Kontostathi,Eleni Petra,Rafael Stroggilos,Vasiliki Lygirou,Szymon Filip,Flore Duranton,Harald Mischak,Angel Argiles,Jerome Zoidakis,Antonia Vlahou

Diabetes therapy : research, treatment and education of diabetes and related disorders 11:229-245 PubMed31691133

2019

Impact of a Formulation Containing Unusual Polyunsaturated Fatty Acids, Trace Elements, Polyphenols and Plant Sterols on Insulin Resistance and Associated Disturbances.

Applications

Unspecified application

Species

Unspecified reactive species

María J Peláez-Jaramillo,Natalia Valencia-Enciso,Allison A Cárdenas-Mojica,Paula V Gaete,Eitan A Scher-Nemirovsky,Luisa F Gómez-Arango,Daniel Colmenares-Araque,Camilo A Castro-López,Eddy Betancourt-Villamizar,Jesús Jaimes-Madrigal,Carlos A Alvarez,Mario A Jiménez-Mora,Pedro J Quiroga-Padilla,Danna K Puerto-Baracaldo,Carlos O Mendivil
View all publications
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