抗EpCAM抗体(Anti-EpCAM, Human, Goat-Poly, Biotin antibody)

掲載日情報:2021/01/28 現在Webページ番号:29916

EpCAMに対する抗体(Anti-EpCAM, Human, Goat-Poly, Biotin )です。
本製品は研究用です。研究用以外には使用できません。

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[在庫・価格 :2024年05月18日 00時00分現在]

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納期 文献数
Anti-EpCAM, Human, Goat-Poly, Biotin
10日程度 ※ 表示されている納期は弊社に在庫がなく、取り寄せた場合の目安納期となります。 17
説明文
マッチドペア:Human EpCAM/TROP-1 サンドイッチELISAの検出用抗体として利用可能,補足用抗体として#MAB9601-500,スタンダードとして#960-EP-050を用いる。
別名:17-1A
Genbank No: 4072
Protein Accession No: CAA32870
法規制等
保存条件 -20℃ 法規備考
抗原種 Human 免疫動物 Goat クラス IgG 標識 Biotin
交差性 Human 適用 ELISA,FCM,Western Blot
クロナリティ Polyclonal フォーマット 性状 Antigen Affinity Purified 吸収処理
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製品記事
関連記事 R&D Systems(R&Dシステムズ)社 ELISA用ペア抗体を使用したELISA 構築ガイド

[在庫・価格 :2024年05月18日 00時00分現在]

※ 表示されている納期は弊社に在庫が無く、取り寄せた場合の納期目安となります。

Anti-EpCAM, Human, Goat-Poly, Biotin

文献数: 17

説明文 マッチドペア:Human EpCAM/TROP-1 サンドイッチELISAの検出用抗体として利用可能,補足用抗体として#MAB9601-500,スタンダードとして#960-EP-050を用いる。
別名:17-1A
Genbank No: 4072
Protein Accession No: CAA32870
法規制等
保存条件 -20℃ 法規備考
抗原種 Human 免疫動物 Goat
交差性 Human 適用 ELISA,FCM,Western Blot
標識 Biotin 性状 Antigen Affinity Purified
吸収処理 クラス IgG
クロナリティ Polyclonal フォーマット
掲載カタログ

製品記事
関連記事 R&D Systems(R&Dシステムズ)社 ELISA用ペア抗体を使用したELISA 構築ガイド



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Product Details

Species ReactivityHuman
LabelBiotin
ImmunogenMouse myeloma cell line NS0-derived recombinant human EpCAM, extracelllular domainGln24-Lys265Accession # CAA32870
SourcePolyclonal Goat IgG
PurificationAntigen Affinity-purified
SpecificityDetects human EpCAM/TROP-1 in sandwich immunoassays and Western blots. In sandwich immunoassays, less than 0.2% cross-reactivity with recombinant human (rh) ALCAM, rhBCAM, recombinant mouse MAdCAM-1, rhNCAM-1, and rhNCAM-L1 is observed.


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Applications and Data

 Recommended
Concentration
Sample
Western Blot0.1 µg/mLRecombinant Human EpCAM/TROP‑1 Fc Chimera (Catalog # 960-EP)
Flow Cytometry2.5 µg/106 cellsHT‑29 human colon adenocarcinoma cell line
Human EpCAM/TROP-1 Sandwich ImmunoassayReagent
ELISA Capture (Matched Antibody Pair)2-8 µg/mL Human
EpCAM/TROP‑1 Antibody (Catalog #MAB9601 )
ELISA Detection (Matched Antibody Pair)0.1-0.4 µg/mL Human EpCAM/TROP‑1 Biotinylated Antibody (Catalog #BAF960 )
ELISA Standard  Recombinant Human EpCAM/TROP1 Fc Chimera Protein, CF (Catalog #960-EP )
Please Note: Optimal dilutions should be determined by each laboratory for each application.General Protocolsare available in the Technical Information section on our website.Preparation and Storage
ReconstitutionReconstitute at 0.2 mg/mL in sterile PBS.Reconstitution Buffer Available
ShippingThe product is shipped at ambient temperature. Upon receipt, store it immediately at the temperature recommended below.
Stability & StorageUse a manual defrost freezer and avoid repeated freeze-thaw cycles. 12 months from date of receipt, -20 to -70 °C as supplied.
1 month, 2 to 8 °C under sterile conditions after reconstitution.
6 months, -20 to -70 °C under sterile conditions after reconstitution.
Background: EpCAM/TROP1

Epithelial Cellular Adhesion Molecule (EpCAM), also known as KS1/4, gp40, GA733-2, 17-1A, and TROP-1, is a 40 kDa transmembrane glycoprotein composed of a 242 amino acid (aa) extracellular domain with two epidermal-growth-factor-like (EGF-like) repeats within the cysteine-rich N-terminal region, a 23 aa transmembrane domain, and a 26 aa cytoplasmic domain. Human and mouse EpCAM share 82% aa sequence identity. In human, EpCAM also shares 49% aa sequence homology with TROP-2/EGP-1. During embryonic development, EpCAM is detected in fetal lung, kidney, liver, pancreas, skin, and germ cells. In adults, human EpCAM is detected in basolateral cell membranes of all simple, pseudo-stratified, and transitional epithelia, but is not detected in normal squamous stratified epithelia, mesenchymal tissue, muscular tissue, neuro-endocrine tissue, or lymphoid tissue (1). EpCAM expression has been found to increase in actively proliferating epithelia tissues and during adult liver regeneration (1, 2). EpCAM expression is also found to increase in human malignant neoplasias, with most carcinoma expressing EpCAM including those of arising from squamousal epithelia (1). EpCAM has been shown function as a homophilic Ca2+ independent adhesion molecule (3). Homophilic adhesion via EpCAM requires the interaction of both EGF-like repeats, with the first EGF-like repeat mediating reciprocal interaction between EpCAM molecules on opposing cells, while the second repeat is involved in lateral interaction of EpCAM. Lateral interaction of EpCAM lead to the formation of dimers and tetramers (4). During homophilic adhesion the cytoplasmic tail of EpCAM interacts with the actin cytoskeleton via a direct association alpha -actinin (5).

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References

Balzar, M. et al. (1999) J. Mol. Med. 77:699.
Boer, C.J, et al. (1999) J. Pathol. 188:201.
Litvinow, S.V. et al. (1994) J. Cell Biol. 125:437.
Balzar, M. et al. (2001) Mol. Cell. Biol. 21:2570.
Balzar, M. et al. (1998) Mol. Cell. Biol. 18:4388.
Long Name:Epithelial Cell Adhesion Molecule
Entrez Gene IDs:4072 (Human); 17075 (Mouse)
Alternate Names:17-1A; 323/A3; ACSTD1; antigen identified by monoclonal AUA1; CD326 antigen; CD326; Cell surface glycoprotein Trop-1; chromosome 4, surface marker (35kD glycoprotein); DIAR5; EGP; EGP-2; EGP314; EGP40; EpCAM; epithelial cell adhesion molecule; Epithelial cell surface antigen; Epithelial glycoprotein 314; Epithelial glycoprotein; ESA; GA733-2; GA733-2EGP34; gp40; hEGP314; HNPCC8; KS 1/4 antigen; KS1/4; KSAHEA125; M1S2; M4S1; M4S1Ly74; Major gastrointestinal tumor-associated protein GA733-2; MIC18MH99; MOC31; TACST-1; TACSTD1; TROP1; TROP1CD326; Tumor-associated calcium signal transducer 1CO-17A

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Related Research Areas

Adhesion Molecules in Angiogenesis
Cancer Biomarkers
Cancer Stem Cell Markers
Conventional/Classical Dendritic Cells
Embryonic and Induced Pluripotent Stem Cell Markers
Epithelial Cell Markers and Intracellular Molecules
Immunoglobulin Superfamily CAMs
Langerhans and Dermal Dendritic Cells
Surface Ectodermal Cells
Trophoblast Stem Cell Markers
  1. Tumor-Derived Exosomal Long Noncoding RNAs as Promising Diagnostic Biomarkers for Prostate Cancer
    Authors: YH Wang, J Ji, BC Wang, H Chen, ZH Yang, K Wang, CL Luo, WW Zhang, FB Wang, XL Zhang
    Cell. Physiol. Biochem., 2018;46(2):532-545.
    Species: Human
    Sample Type: Whole Cells
    Application: Functional Assay


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Related Product & Information

BackgroundEpCAM/TROP1
background_contentBackground:
EpCAM/TROP1
Epithelial Cellular Adhesion Molecule (EpCAM), also known as KS1/4, gp40, GA733-2, 17-1A, and TROP-1, is a 40 kDa transmembrane glycoprotein composed of a 242 amino acid (aa) extracellular domain with two epidermal-growth-factor-like (EGF-like) repeats within the cysteine-rich N-terminal region, a 23 aa transmembrane domain, and a 26 aa cytoplasmic domain. Human and mouse EpCAM share 82% aa sequence identity. In human, EpCAM also shares 49% aa sequence homology with TROP-2/EGP-1. During embryonic development, EpCAM is detected in fetal lung, kidney, liver, pancreas, skin, and germ cells. In adults, human EpCAM is detected in basolateral cell membranes of all simple, pseudo-stratified, and transitional epithelia, but is not detected in normal squamous stratified epithelia, mesenchymal tissue, muscular tissue, neuro-endocrine tissue, or lymphoid tissue (1). EpCAM expression has been found to increase in actively proliferating epithelia tissues and during adult liver regeneration (1, 2). EpCAM expression is also found to increase in human malignant neoplasias, with most carcinoma expressing EpCAM including those of arising from squamousal epithelia (1). EpCAM has been shown function as a homophilic Ca2+ independent adhesion molecule (3). Homophilic adhesion via EpCAM requires the interaction of both EGF-like repeats, with the first EGF-like repeat mediating reciprocal interaction between EpCAM molecules on opposing cells, while the second repeat is involved in lateral interaction of EpCAM. Lateral interaction of EpCAM lead to the formation of dimers and tetramers (4). During homophilic adhesion the cytoplasmic tail of EpCAM interacts with the actin cytoskeleton via a direct association alpha -actinin (5).


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Citations

R&D Systems personnel manually curate a database that contains references using R&D Systems products. The data collected includes not only links to publications in PubMed, but also provides information about sample types, species, and experimental conditions.
  1. Tumor-Derived Exosomal Long Noncoding RNAs as Promising Diagnostic Biomarkers for Prostate Cancer
    Authors: YH Wang, J Ji, BC Wang, H Chen, ZH Yang, K Wang, CL Luo, WW Zhang, FB Wang, XL Zhang
    Cell. Physiol. Biochem., 2018;46(2):532-545.
    Species: Human
    Sample Type: Whole Cells
    Application: Functional Assay

  2. Magnetic Nanowire Networks for Dual-Isolation and Detection of Tumor-Associated Circulating Biomarkers
    Authors: H Lee, M Choi, J Lim, M Jo, JY Han, TM Kim, Y Cho
    Theranostics, 2018;8(2):505-517.
    Application: Functional Assay

  3. Enhanced Isolation and Release of Circulating Tumor Cells Using Nanoparticle Binding and Ligand Exchange in a Microfluidic Chip
    Authors: MH Park, E Reátegui, W Li, SN Tessier, KH Wong, AE Jensen, V Thapar, D Ting, M Toner, SL Stott, PT Hammond
    J. Am. Chem. Soc., 2017;139(7):2741-2749.
    Species: Human
    Sample Type: Whole Cells
    Application: Microfluidic Chip

  4. Increased expression of long-noncoding RNA ZFAS1 is associated with epithelial mesenchymal transition of gastric cancer
    Aging (Albany NY), 2016;0(0):.
    Species: Human
    Sample Type: Whole Cells
    Application: ELISA detection

  5. Circulating tumour cells as a biomarker for diagnosis and staging in pancreatic cancer
    Authors: J S Ankeny
    Br J Cancer, 2016;114(12):1367-75.
    Species: Human
    Sample Type: Whole Cells
    Application: NanoVelcro Chip

  6. Soluble EpCAM levels in ascites correlate with positive cytology and neutralize catumaxomab activity in vitro.
    Authors: Seeber A, Martowicz A, Spizzo G, Buratti T, Obrist P, Fong D, Gastl G, Untergasser G
    BMC Cancer, 2015;15(0):372.
    Species: Human
    Sample Type: BALF
    Application: ELISA detection

  7. Urinary EpCAM in urothelial bladder cancer patients: characterisation and evaluation of biomarker potential.
    Authors: Bryan, R T, Shimwell, N J, Wei, W, Devall, A J, Pirrie, S J, James, N D, Zeegers, M P, Cheng, K K, Martin, A, Ward, D G
    Br J Cancer, 2014;110(3):679-85.
    Species: Human
    Sample Type: Urine
    Application: IP

  8. Molecular biomarker analyses using circulating tumor cells.
    Authors: Punnoose EA, Atwal SK, Spoerke JM
    PLoS ONE, 2010;5(9):e12517.
    Species: Human
    Sample Type: Whole Cells
    Application: Flow

  9. Circulating tumor cells are transcriptionally similar to the primary tumor in a murine prostate model.
    Authors: Helzer KT, Barnes HE, Day L, Harvey J, Billings PR, Forsyth A
    Cancer Res., 2009;69(19):7860-6.
    Species: Human
    Sample Type: Whole Cells
    Application: IP

  10. High aldehyde dehydrogenase activity: a novel functional marker of murine prostate stem/progenitor cells.
    Authors: Burger PE, Gupta R, Xiong X, Ontiveros CS, Salm SN, Moscatelli D, Wilson EL
    Stem Cells, 2009;27(9):2220-8.
    Species: Mouse
    Sample Type: Whole Cells
    Application: Flow



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