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468R-1

Sigma-Aldrich

Claudin-4 (EP417) Rabbit Monoclonal Primary Antibody

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About This Item

UNSPSC Code:
12352203

biological source

rabbit

Quality Level

100
500

conjugate

unconjugated

antibody form

culture supernatant

antibody product type

primary antibodies

clone

EP417, monoclonal

description

For In Vitro Diagnostic Use in Select Regions

form

buffered aqueous solution

species reactivity

human

packaging

vial of 0.1 mL concentrate (468R-14)
vial of 0.1 mL concentrate Research Use Only (468R-14-RUO)
vial of 0.5 mL concentrate (468R-15)
vial of 1.0 mL concentrate (468R-16)
vial of 1.0 mL concentrate Research Use Only (468R-16-RUO)
vial of 1.0 mL pre-dilute Research Use Only (468R-17-RUO)
vial of 1.0 mL pre-dilute ready-to-use (468R-17)
vial of 7.0 mL pre-dilute ready-to-use (468R-18)
vial of 7.0 mL pre-dilute ready-to-use Research Use Only (468R-18-RUO)

manufacturer/tradename

Cell Marque

technique(s)

immunohistochemistry (formalin-fixed, paraffin-embedded sections): 1:50-1:100 (concentrated)

isotype

IgG

control

lung adenocarcinoma

shipped in

wet ice

storage temp.

2-8°C

visualization

membranous

Gene Information

human ... CLDN4(1364)

Related Categories

General description

The claudin-family proteins are a group of tight-junction membranous proteins responsible for paracellular molecular flow between adjacent cells of the epithelium.1 In normal kidney, claudin-4 plays a key role in paracellular ion reabsorption.2 Claudin-4 is expressed in most epithelial cells yet is absent in mesothelial cells, making it of great use in characterizing epithelial malignincies.3 Immunohistochemical identification of this antigen may help identify poorly differentiated lung adenocarcinoma from lesions of mesothelial origin.4 Likewise, identification of claudin-4 expression by IHC may be useful in characterizing breast and endometrial lesions.5,6

Quality

United States - IVD
Canada - IVD
European Union - IVD
Japan - RUO

Physical form

Solution in Tris Buffer, pH 7.3-7.7, with 1% BSA and <0.1% Sodium Azide.

Preparation Note

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Other Notes

For Technical Service please contact: 800-665-7284 or email: service@cellmarque.com

Legal Information

Cell Marque is a trademark of Merck KGaA, Darmstadt, Germany

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Storage Class Code

12 - Non Combustible Liquids

WGK

WGK 2


Certificates of Analysis (COA)

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Nelson G Ordóñez
American journal of clinical pathology, 139(5), 611-619 (2013-04-19)
Claudin-4 (CL-4) is a tight junction-associated protein that is expressed in most epithelial cells but absent in mesothelial cells. The purpose of this study is to evaluate the utility of CL-4 immunostaining for assisting in the differential diagnosis of mesothelioma.
Xin Cong et al.
Journal of cell science, 128(12), 2271-2286 (2015-05-08)
The epithelial cholinergic system plays an important role in water, ion and solute transport. Previous studies have shown that activation of muscarinic acetylcholine receptors (mAChRs) regulates paracellular transport of epithelial cells; however, the underlying mechanism is still largely unknown. Here
A Neesse et al.
Archives of biochemistry and biophysics, 524(1), 64-70 (2012-01-31)
Intercellular junctional complexes such as adherens junctions and tight junctions are critical regulators of cellular polarity, paracellular permeability and metabolic and structural integrity of cellular networks. Abundant expression analysis data have yielded insights into the complex pattern of differentially expressed
Jianghui Hou et al.
Proceedings of the National Academy of Sciences of the United States of America, 107(42), 18010-18015 (2010-10-06)
Tight junctions (TJs) play a key role in mediating paracellular ion reabsorption in the kidney. The paracellular pathway in the collecting duct of the kidney is a predominant route for transepithelial chloride reabsorption that determines the extracellular NaCl content and
Gottfried E Konecny et al.
Gynecologic oncology, 109(2), 263-269 (2008-03-04)
Tight junction (TJ) proteins claudin-3 and claudin-4 may be differentially expressed in uterine serous papillary carcinoma (USPC), a rare form of endometrial cancer characterized by a particularly poor prognosis. Our aim was to determine the expression pattern and prognostic relevance

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