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AB100749

Mouse RANKL ELISA Kit (TNFSF11)

5

(3 Reviews)

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(27 Publications)

Mouse RANKL ELISA Kit (TNFSF11) is a sandwich ELISA designed to quantify Mouse RANKL (TNFSF11) with a sensitivity of 4 pg/mL.

- Colorimetric sandwich ELISA - 450 nm readout - works on any plate reader
- Wide dynamic range - quantifies 2.74 - 2000 pg/mL
- Cited in over 20 publications

View Alternative Names

CD254, Opgl, Rankl, Trance, Tnfsf11, Tumor necrosis factor ligand superfamily member 11, Osteoclast differentiation factor, Osteoprotegerin ligand, Receptor activator of nuclear factor kappa-B ligand, TNF-related activation-induced cytokine, ODF, OPGL, RANKL, TRANCE

3 Images
Sandwich ELISA - Mouse RANKL ELISA Kit (TNFSF11) (AB100749)
  • sELISA

Supplier Data

Sandwich ELISA - Mouse RANKL ELISA Kit (TNFSF11) (AB100749)

Representative Standard Curve using ab100749

Sandwich ELISA - Mouse RANKL ELISA Kit (TNFSF11) (AB100749)
  • sELISA

Supplier Data

Sandwich ELISA - Mouse RANKL ELISA Kit (TNFSF11) (AB100749)

Representative Standard Curve using ab100749

Sandwich ELISA - Mouse RANKL ELISA Kit (TNFSF11) (AB100749)
  • sELISA

Lab

Sandwich ELISA - Mouse RANKL ELISA Kit (TNFSF11) (AB100749)

RANKL measured in biological fluids showing quantity (pg) per mL of tested sample

Key facts

Detection method

Colorimetric

Sample types

Plasma, Cell culture supernatant, Serum

Reacts with

Mouse

Assay type

Sandwich (quantitative)

Sensitivity

< 4 pg/mL

Range

2.74 - 2000 pg/mL

Assay Platform

Microplate

Reactivity data

{ "title": "Reactivity Data", "filters": { "stats": ["", "Reactivity", "Dilution Info", "Notes"] }, "values": { "sELISA": { "reactivity":"TESTED_AND_REACTS", "dilution-info":"", "notes":"<p></p>" } } }

Product details

Mouse RANKL ELISA Kit (TNFSF11) ab100749 is a sandwich ELISA to measure Mouse RANKL (TNFSF11) in serum, plasma, cell culture supernatant with a sensitivity of 4 pg/ml.

How the assay works

This assay employs an antibody specific for Mouse RANKL coated on a 96- well plate. Standards and samples are pipetted into the wells and RANKL present in a sample is bound to the wells by the immobilized antibody. The wells are washed and biotinylated anti-Mouse RANKL antibody is added. After washing away unbound biotinylated antibody, HRP-conjugated streptavidin is pipetted to the wells. The wells are again washed, a TMB substrate solution is added to the wells and color develops in proportion to the amount of RANKL bound. The Stop Solution changes the color from blue to yellow, and the intensity of the color is measured at 450 nm.

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

Mouse RANKL ELISA Kit (TNFSF11) ab100749 protocol summary

1. Add standard or sample to each well used. Incubate at room temperature
2. Wash and add prepared biotinylated antibody to each well. Incubate at room temperature.
3. Wash and add prepared streptavidin solution. Incubate at room temperature.
4. Add TMB Development Solution to each well. Incubate at room temperature.
5. Add Stop Solution to each well. Read at 450nm immediately.

Recovery

[ { "sample": "Cell culture supernatant", "range": "95 - 115 %", "average": "= 106.5" }, { "sample": "Serum", "range": "83 - 104 %", "average": "= 95.05" }, { "sample": "Plasma", "range": "74 - 104 %", "average": "= 89.2" } ]

What's included?

{ "values": { "1x96Tests": { "sellingSize": "1 x 96 Tests", "publicAssetCode":"ab100749-1x96Tests", "assetComponentDetails": [ { "size":"1 x 25 mL", "name":"20X Wash Buffer", "number":"AB100749-CMP03", "productcode":"" }, { "size":"1 x 8 mL", "name":"Stop Solution", "number":"AB100749-CMP07", "productcode":"" }, { "size":"2 x 1 Vial", "name":"Recombinant Mouse RANKL Standard (lyophilized)", "number":"AB100749-CMP02", "productcode":"" }, { "size":"1 x 1 Unit", "name":"RANKL Microplate (12 strips x 8 wells)", "number":"AB100749-CMP01", "productcode":"" }, { "size":"1 x 15 mL", "name":"5X Assay Diluent B", "number":"AB100749-CMP06", "productcode":"" }, { "size":"1 x 30 mL", "name":"Assay Diluent A", "number":"AB100749-CMP05", "productcode":"" }, { "size":"1 x 12 mL", "name":"TMB One-Step Substrate Reagent", "number":"AB100749-CMP08", "productcode":"" }, { "size":"2 x 1 Vial", "name":"Biotinylated anti-Mouse RANKL", "number":"AB100749-CMP09", "productcode":"" }, { "size":"1 x 200 µL", "name":"200X HRP-Streptavidin Concentrate", "number":"AB100749-CMP04", "productcode":"" } ] } } }

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

Product protocols

Target data

Cytokine that binds to TNFRSF11B/OPG and to TNFRSF11A/RANK. Osteoclast differentiation and activation factor (PubMed : 22437732). Augments the ability of dendritic cells to stimulate naive T-cell proliferation. May be an important regulator of interactions between T-cells and dendritic cells and may play a role in the regulation of the T-cell-dependent immune response. May also play an important role in enhanced bone-resorption in humoral hypercalcemia of malignancy (By similarity). Induces osteoclastogenesis by activating multiple signaling pathways in osteoclast precursor cells, chief among which is induction of long lasting oscillations in the intracellular concentration of Ca (2+) resulting in the activation of NFATC1, which translocates to the nucleus and induces osteoclast-specific gene transcription to allow differentiation of osteoclasts (PubMed : 18586671, PubMed : 24039232, PubMed : 27336669). During osteoclast differentiation, in a TMEM64 and ATP2A2-dependent manner induces activation of CREB1 and mitochondrial ROS generation necessary for proper osteoclast generation (PubMed : 23395171, PubMed : 26644563).
See full target information Tnfsf11

Publications (27)

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

Journal for immunotherapy of cancer 13: PubMed40081943

2025

RANKL blockade inhibits cancer growth through reversing the tolerogenic profile of tumor-infiltrating (plasmacytoid) dendritic cells.

Applications

Unspecified application

Species

Unspecified reactive species

Charlotte Pilard,Patrick Roncarati,Marie Ancion,Margaux Luyckx,Michael Renard,Celia Reynders,Thomas Lerho,Florian Poulain,Diane Bruyere,Alizee Lebeau,Elodie Hendrick,Rebekah Crake,Raphael Peiffer,Marie-Julie Nokin,Olivier Peulen,Philippe Delvenne,Pascale Hubert,Michael Herfs

Frontiers in endocrinology 14:1207502 PubMed37795376

2023

Azilsartan inhibits inflammation-triggered bone resorption and osteoclastogenesis via suppression of TNF-α expression in macrophages.

Applications

Unspecified application

Species

Unspecified reactive species

Ziqiu Fan,Hideki Kitaura,Jiayi Ren,Fumitoshi Ohori,Takahiro Noguchi,Aseel Marahleh,Jinghan Ma,Kayoko Kanou,Mariko Miura,Kohei Narita,Angyi Lin,Itaru Mizoguchi

Cell reports. Medicine 4:101120 PubMed37451269

2023

Co-targeting RANK pathway treats and prevents acquired resistance to CDK4/6 inhibitors in luminal breast cancer.

Applications

Unspecified application

Species

Unspecified reactive species

Inês Gomes,Lina M Gallego-Paez,Maria Jiménez,Patricia G Santamaria,André Mansinho,Rita Sousa,Catarina Abreu,Eva González Suárez,Luis Costa,Sandra Casimiro

iScience 26:106470 PubMed37091244

2023

An inducible explant model of osteoclast-osteoprogenitor coordination in exacerbated osteoclastogenesis.

Applications

Unspecified application

Species

Unspecified reactive species

Jarred M Whitlock,Luis F de Castro,Michael T Collins,Leonid V Chernomordik,Alison M Boyce

Bioengineered 13:13632-13642 PubMed35653787

2022

Plumbagin relieves rheumatoid arthritis through nuclear factor kappa-B (NF-κB) pathway.

Applications

Unspecified application

Species

Unspecified reactive species

Chang Shu,Jun Chen,Meiyan Lv,Yiyuan Xi,Jujia Zheng,Xiangwei Xu

Drug delivery 29:889-905 PubMed35285760

2022

Bone-targeted nanoplatform enables efficient modulation of bone tumor microenvironment for prostate cancer bone metastasis treatment.

Applications

Unspecified application

Species

Unspecified reactive species

Xiangyu Zhang,Qingbin Liu,Tingting Zhang,Pei Gao,Hui Wang,Lu Yao,Jingwen Huang,Shulong Jiang

Bone research 10:12 PubMed35145063

2022

IκB-ζ signaling promotes chondrocyte inflammatory phenotype, senescence, and erosive joint pathology.

Applications

Unspecified application

Species

Unspecified reactive species

Manoj Arra,Gaurav Swarnkar,Yael Alippe,Gabriel Mbalaviele,Yousef Abu-Amer

Nature communications 13:771 PubMed35140213

2022

An optogenetic approach for regulating human parathyroid hormone secretion.

Applications

Unspecified application

Species

Unspecified reactive species

Yunhui Liu,Lu Zhang,Nan Hu,Jie Shao,Dazhi Yang,Changshun Ruan,Shishu Huang,Liping Wang,William W Lu,Xinzhou Zhang,Fan Yang

International journal of molecular sciences 23: PubMed35008749

2021

Intermittent Hypoxic Therapy Inhibits Allogenic Bone-Graft Resorption by Inhibition of Osteoclastogenesis in a Mouse Model.

Applications

Unspecified application

Species

Unspecified reactive species

Natasja Leth Bergholt,Ari Demirel,Michael Pedersen,Ming Ding,Tue Wenzel Kragstrup,Thomas Andersen,Bent Winding Deleuran,Casper Bindzus Foldager

Journal of biomedical science 28:74 PubMed34749728

2021

Restoration of 5-methoxytryptophan protects against atherosclerotic chondrogenesis and calcification in ApoE mice fed high fat diet.

Applications

Unspecified application

Species

Unspecified reactive species

Guan-Lin Lee,Tsai-Lien Liao,Jing-Yiing Wu,Kenneth K Wu,Cheng-Chin Kuo
View all publications
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