Proteome Profiler Human sReceptor Array, Non-hematopoietic

Contains 4 membranes - 2 spotted in duplicate with 62 different non-hematopoietic antibodies and 2 spotted in duplicate with 57 common antibodies
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R&D Systems Proteome Profiler Antibody Array Kits
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Citations (17)
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Proteome Profiler Human sReceptor Array, Non-hematopoietic Summary

Kit Summary

To simultaneously detect the relative levels of 119 different soluble receptors expressed and released by non-hematopoietic cells in a single sample. No specialized equipment is necessary.

General Assay Principle

Carefully selected capture antibodies have been spotted in duplicate on nitrocellulose membranes. Cell culture supernatant, serum, or cell lysate samples are diluted and incubated with each array part of the Non-Hematopoietic Panel. This panel is comprised of the Non-Hematopoietic Array and the Common Analytes Array, which is also used in the Hematopoietic Array Panel (R&D Systems, Catalog # ARY011). The membranes are washed to remove unbound material followed by incubation with their specific cocktail of biotinylated detection antibodies. Streptavidin-Horseradish Peroxidase and chemiluminescent detection reagents are added, and a signal is produced in proportion to the amount of receptor bound. Chemiluminescence is detected in the same manner as a Western blot.


Kit Contents
  • 2 Non-Hematopoeitic Array Membranes
  • 2 Common Analyte Array Membranes
  • 4-Well Multi-dish
  • Array Buffers
  • Wash Buffer
  • Antibody Detection Cocktail
  • Streptavidin-HRP
  • Chemiluminescent Detection Reagents
  • Transparency Overlay Template
  • Detailed Protocol

For a complete list of the kit contents and necessary materials, please see the Materials Provided/Other Supplies Required sections of the product datasheet.

Stability and Storage

Store the unopened kit at 2 °C to 8 °C. Do not use past kit expiration date.


Simultaneously detect the levels of these soluble receptors in a single sample.
Non-Hematopoeitic Array     Common Analytes Array
ADAM15 Integrin alpha 6/CD49f     ACE HB-EGF
betaIG-H3 Integrin alpha 9     ADAM8 ICAM-2/CD102
BMPR-IB/ALK-6 Integrin alpha V/CD51     ADAM9 IL-1 RII
Cadherin-4/R-Cadherin Jagged 1/CD339     ADAM10 IL-15 R alpha
Cadherin-11 JAM-B/VE-JAM/JAM2/CD322     ALCAM/CD166 Integrin beta 1/CD29
Cadherin-13 JAM-C/JAM3     Amphiregulin Integrin beta 2/CD18
E-Cadherin LRP-6     APP (pan) Integrin beta 3/CD61
N-Cadherin MCAM/CD146     BACE-1 Integrin beta 4/CD104
P-Cadherin MEPE     BCAM/CD239 Integrin beta 5
VE-Cadherin MUCDHL     C1q R1/CD93 Integrin beta 6
Cathepsin D Nectin-2/CD112     CD9 JAM-A/CD321
CD40 Nectin-4     CD23/Fc epsilon RII Lipocalin-2/NGAL
CEACAM-5/CD66e Neurotrimin     CD31/PECAM-1 LOX-1/SR-E1/CLEC8A
CHL-1/L1CAM-2 Notch-1     CD36/SR-B3 MD-1/LY86
Clusterin NrCAM     CD40 Ligand MMP-2 (total)
Coagulation Factor II/Thrombin Periostin/OSF-2     CD44H NCAM-1/CD56
COMP/Thrombospondin-5 Podocalyxin     CD58/LFA-3 NCAM-L1/CD171
CRELD2 E-Selectin     CD90/Thy1 Osteopontin
Desmoglein 2 Semaphorin 3A     CD99 PAR1
ECM-1 SREC-I/SR-F1     CD155/PVR Pref-1/DLK-1/FA1
Endoglycan Stanniocalcin 1     CX3CL1/Fractalkine Stabilin-1
EpCAM/TROP-1 Syndecan-1/CD138     CXCL8/IL-8 TACE/ADAM17
ErbB2/HER2 Syndecan-4     EMMPRIN/CD147 Thrombospondin-1
ErbB3/HER3 Thrombospondin-2     Endoglin/CD105 TIMP-1
ErbB4/HER4 TIMP-4     Epiregulin TIMP-2
ESAM TROP-2     Galectin-1 TIMP-3
Galectin-2 VAP-1/AOC3     Galectin-3 TNF RII
HPRG VCAM-1     Galectin-3BP/MAC-2BP  
Integrin alpha 3/CD49c VEGF R1/Flt-1        
Integrin alpha 5/CD49e VEGF R2/KDR/Flk-1        


Shipping Conditions
The product is shipped with polar packs. Upon receipt, store it immediately at the temperature recommended below.
Store the unopened product at 2 - 8 °C. Do not use past expiration date.

Product Datasheets

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Citations for Proteome Profiler Human sReceptor Array, Non-hematopoietic

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.

17 Citations: Showing 1 - 10
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  1. Peripheral blood mononuclear cell response to YKL-40 and Galectin-3 in cystic fibrosis
    Authors: GF Bouvet, O Bulka, A Coriati, L Sognigbé, G St-Pierre, C Massé, S Sato, Y Berthiaume
    Cytokine, 2021-07-15;146(0):155635.  2021-07-15
  2. Low RECK Expression Is Part of the Cervical Carcinogenesis Mechanisms
    Authors: S Herbster, M Trombetta-, PT de Souza-S, A Paladino, CRF Silveira, MC Sogayar, LL Villa, AP Lepique, E Boccardo
    Cancers, 2021-05-06;13(9):.  2021-05-06
  3. High Levels of Receptor Tyrosine Kinases in CCM3-Deficient Cells Increase Their Susceptibility to Tyrosine Kinase Inhibition
    Authors: M Sartages, E Floridia, M García-Col, C Iglesias, M Macía, P Peñas, PO Couraud, IA Romero, B Weksler, CM Pombo, J Zalvide
    Biomedicines, 2020-12-17;8(12):.  2020-12-17
  4. Tumor cell-derived exosomes home to their cells of origin and can be used as Trojan horses to deliver cancer drugs
    Authors: L Qiao, S Hu, K Huang, T Su, Z Li, A Vandergrif, J Cores, PU Dinh, T Allen, D Shen, H Liang, Y Li, K Cheng
    Theranostics, 2020-02-10;10(8):3474-3487.  2020-02-10
  5. TGFBI Protein Is Increased in the Urine of Patients with High-Grade Urothelial Carcinomas, and Promotes Cell Proliferation and Migration
    Authors: K Lang, S Kahveci, N Bonberg, K Wichert, T Behrens, J Hovanec, F Roghmann, J Noldus, YC Tam, A Tannapfel, HU Käfferlein, T Brüning
    Int J Mol Sci, 2019-09-11;20(18):.  2019-09-11
  6. Transmembrane Protease TMPRSS11B Promotes Lung Cancer Growth by Enhancing Lactate Export and Glycolytic Metabolism
    Authors: BL Updegraff, X Zhou, Y Guo, MS Padanad, PH Chen, C Yang, J Sudderth, C Rodriguez-, L Girard, JD Minna, P Mishra, RJ DeBerardin, KA O'Donnell
    Cell Rep, 2018-11-20;25(8):2223-2233.e6.  2018-11-20
  7. MPDU1 regulates CEACAM1 and cell adhesion in vitro and in vivo
    Authors: DC Bennett, A Cazet, J Charest, JN Contessa
    Glycoconj. J., 2018-04-18;0(0):.  2018-04-18
  8. GPRC5A suppresses protein synthesis at the endoplasmic reticulum to prevent radiation-induced lung tumorigenesis
    Authors: Jian Wang
    Nat Commun, 2016-06-08;7(0):11795.  2016-06-08
  9. ADAM17 Promotes Motility, Invasion, and Sprouting of Lymphatic Endothelial Cells.
    Authors: Mezyk-Kopec R, Wyroba B, Stalinska K, Prochnicki T, Wiatrowska K, Kilarski W, Swartz M, Bereta J
    PLoS ONE, 2015-07-15;10(7):e0132661.  2015-07-15
  10. MMP16 Mediates a Proteolytic Switch to Promote Cell-Cell Adhesion, Collagen Alignment, and Lymphatic Invasion in Melanoma.
    Authors: Tatti O, Gucciardo E, Pekkonen P, Holopainen T, Louhimo R, Repo P, Maliniemi P, Lohi J, Rantanen V, Hautaniemi S, Alitalo K, Ranki A, Ojala P, Keski-Oja J, Lehti K
    Cancer Res, 2015-03-25;75(10):2083-94.  2015-03-25
  11. ADAM8 as a drug target in pancreatic cancer.
    Authors: Schlomann U, Koller G, Conrad C, Ferdous T, Golfi P, Garcia A, Hofling S, Parsons M, Costa P, Soper R, Bossard M, Hagemann T, Roshani R, Sewald N, Ketchem R, Moss M, Rasmussen F, Miller M, Lauffenburger D, Tuveson D, Nimsky C, Bartsch J
    Nat Commun, 2015-01-28;6(0):6175.  2015-01-28
  12. Inhibition of breast cancer growth and metastasis by a biomimetic peptide.
    Authors: Lee, Esak, Lee, Seung Ja, Koskimaki, Jacob E, Han, Zheyi, Pandey, Niranjan, Popel, Aleksand
    Sci Rep, 2014-11-20;4(0):7139.  2014-11-20
  13. RECK controls breast cancer metastasis by modulating a convergent, STAT3-dependent neoangiogenic switch.
    Authors: Walsh, L A, Roy, D M, Reyngold, M, Giri, D, Snyder, A, Turcan, S, Badwe, C R, Lyman, J, Bromberg, J, King, T A, Chan, T A
    Oncogene, 2014-06-16;34(17):2189-203.  2014-06-16
  14. Targeting cadherin-17 inactivates Ras/Raf/MEK/ERK signaling and inhibits cell proliferation in gastric cancer.
    Authors: Lin Z, Zhang C, Zhang M, Xu D, Fang Y, Zhou Z, Chen X, Qin N, Zhang X
    PLoS ONE, 2014-01-20;9(1):e85296.  2014-01-20
  15. Novel genes and pathways modulated by syndecan-1: implications for the proliferation and cell-cycle regulation of malignant mesothelioma cells.
    Authors: Szatmari T, Mundt F, Heidari-Hamedani G, Zong F, Ferolla E, Alexeyenko A, Hjerpe A, Dobra K
    PLoS ONE, 2012-10-29;7(10):e48091.  2012-10-29
  16. Isolation of osteoprogenitors from human jaw periosteal cells: a comparison of two magnetic separation methods.
    Authors: Olbrich M, Rieger M, Reinert S, Alexander D
    PLoS ONE, 2012-10-19;7(10):e47176.  2012-10-19
  17. microRNA-214 contributes to melanoma tumour progression through suppression of TFAP2C.
    Authors: Penna E, Orso F, Cimino D, Tenaglia E, Lembo A, Quaglino E, Poliseno L, Haimovic A, Osella-Abate S, De Pitta C, Pinatel E, Stadler MB, Provero P, Bernengo MG, Osman I, Taverna D
    EMBO J., 2011-04-05;30(10):1990-2007.  2011-04-05


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