Antigen Retrieval Reagent-Universal

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Discontinued Product

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R&D Systems Immunohistochemistry Reagents
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Citations (15)
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Antigen Retrieval Reagent-Universal Summary

Antigen Retrival Reagent Universal

R&D Systems offers reagents to promote epitope availability and enhance immunoreactivity. Antigen Retrieval Reagent-Universal is an antigen retrieval system that utilizes heat-induced recovery of cell and tissue antigens. The optimal antigen unmasking condition is a function of temperature (90 - 100 °C) and incubation time (up to 30 minutes), and should be established by each individual investigator.

Specifications

Shipping Conditions
The product is shipped at ambient temperature. Upon receipt, store it immediately at the temperature recommended below.
Storage
Store the unopened product at room temperature. Do not use past expiration date.

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Citations for Antigen Retrieval Reagent-Universal

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.

15 Citations: Showing 1 - 10
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  1. The CXCL2/IL8/CXCR2 Pathway Is Relevant for Brain Tumor Malignancy and Endothelial Cell Function
    Authors: RM Urbantat, A Blank, I Kremenetsk, P Vajkoczy, G Acker, S Brandenbur
    International Journal of Molecular Sciences, 2021-03-05;22(5):.  2021-03-05
  2. LRP receptors in chondrocytes are modulated by simulated microgravity and cyclic hydrostatic pressure
    Authors: RC Nordberg, LF Mellor, AR Krause, HJ Donahue, EG Loboa
    PLoS ONE, 2019-10-04;14(10):e0223245.  2019-10-04
  3. PKC? facilitates lymphatic metastatic spread of prostate cancer cells in a mice xenograft model
    Authors: G Zang, Y Mu, L Gao, A Bergh, M Landström
    Oncogene, 2019-01-31;38(22):4215-4231.  2019-01-31
  4. Effects of excess thromboxane A2 on placental development and nutrient transporters in a Mus musculus model of fetal growth restriction
    Authors: KJ Gibbins, KN Gibson-Cor, AS Brown, M Wieben, RC Law, CM Fung
    Biol. Reprod., 2018-05-01;0(0):.  2018-05-01
  5. Cell-Surface Protein Profiling Identifies Distinctive Markers of Progenitor Cells in Human Skeletal Muscle
    Stem Cell Reports, 2016-08-09;7(2):263-78.  2016-08-09
  6. Intrinsic hepatocyte dedifferentiation is accompanied by upregulation of mesenchymal markers, protein sialylation and core alpha 1,6 linked fucosylation
    Authors: Anand Mehta
    Sci Rep, 2016-06-22;6(0):27965.  2016-06-22
  7. Adoptive Transfer of Treg Cells Combined with Mesenchymal Stem Cells Facilitates Repopulation of Endogenous Treg Cells in a Murine Acute GVHD Model.
    Authors: Lee E, Lim J, Im K, Kim N, Nam Y, Jeon Y, Cho S
    PLoS ONE, 2015-09-22;10(9):e0138846.  2015-09-22
  8. TGFbeta-induced phosphorylation of Par6 promotes migration and invasion in prostate cancer cells.
    Authors: Mu Y, Zang G, Engstrom U, Busch C, Landstrom M
    Br J Cancer, 2015-03-31;112(7):1223-31.  2015-03-31
  9. Control of the T follicular helper-germinal center B-cell axis by CD8(+) regulatory T cells limits atherosclerosis and tertiary lymphoid organ development.
    Authors: Clement M, Guedj K, Andreata F, Morvan M, Bey L, Khallou-Laschet J, Gaston A, Delbosc S, Alsac J, Bruneval P, Deschildre C, Le Borgne M, Castier Y, Kim H, Cantor H, Michel J, Caligiuri G, Nicoletti A
    Circulation, 2014-12-31;131(6):560-70.  2014-12-31
  10. Diffusion tensor imaging of brain abnormalities induced by prenatal exposure to radiation in rodents.
    Authors: Saito S, Sawada K, Hirose M, Mori Y, Yoshioka Y, Murase K
    PLoS ONE, 2014-09-09;9(9):e107368.  2014-09-09
  11. Deciphering the stromal and hematopoietic cell network of the adventitia from non-aneurysmal and aneurysmal human aorta.
    Authors: Dutertre C, Clement M, Morvan M, Schakel K, Castier Y, Alsac J, Michel J, Nicoletti A
    PLoS ONE, 2014-02-27;9(2):e89983.  2014-02-27
  12. Morphine inhibits migration of tumor-infiltrating leukocytes and suppresses angiogenesis associated with tumor growth in mice.
    Authors: Koodie L, Yuan H, Pumper J, Yu H, Charboneau R, Ramkrishnan S, Roy S
    Am J Pathol, 2014-02-01;184(4):1073-84.  2014-02-01
  13. Bone morphogenetic proteins and noggin: inhibiting and inducing fungiform taste papilla development.
    Authors: Zhou Y, Liu HX, Mistretta CM
    Dev. Biol., 2006-05-24;297(1):198-213.  2006-05-24
  14. Sonic hedgehog exerts distinct, stage-specific effects on tongue and taste papilla development.
    Authors: Liu HX, MacCallum DK, Edwards C, Gaffield W, Mistretta CM
    Dev. Biol., 2004-12-15;276(2):280-300.  2004-12-15
  15. Cyclopamine and jervine in embryonic rat tongue cultures demonstrate a role for Shh signaling in taste papilla development and patterning: fungiform papillae double in number and form in novel locations in dorsal lingual epithelium.
    Authors: Mistretta CM, Liu HX, Gaffield W, MacCallum DK
    Dev. Biol., 2003-02-01;254(1):1-18.  2003-02-01

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