Blocking Buffer (2X) for Fluorescent Western Blotting
Referência MB-070-0050
Tamanho : 50mL
Marca : Rockland Immunochemicals
Specifications for Blocking Buffer (2X) for Fluorescent Western Blotting
Product Details
Blocking Buffer (2X) for Fluorescent Western Blotting - MB-070-0050
Multiplex Blocking Buffer, Fluorescent Blocking Buffer, Blocking Solution, Blocking Buffer Western Blot, IRDye Western Blot Blocking Buffer, Alexa Dye Blocking Buffer, DyLight Blocking Buffer
Target Details
Blocking buffer is specifically formulated to achieve superior reproducible Western blotting images using this system.
Application Details
WB
Cellular Assay, ELISA, IF, IHC, Microarray, Other - View References
This product is a 2X concentrated stock solution. Prepare a 1X working solution by diluting 1 part 2X concentrate with 1 parts TBS or equivalent. This buffer was meticulously prepared using ultra pure reagents dissolved in pharmaceutical grade water (WFI) and consists of a proprietary protein formulation in TRIS buffered saline at pH 7.6 with thimerosal added as an antimicrobial agent.
Formulation
2X
See application note.
Thimerosal is added as an antimicrobial agent.
Shipping & Handling
Wet Ice
Store blocking buffer at 4° C prior to opening. DO NOT FREEZE.
Expiration date is six (6) months from date of receipt.
Background
This blocking buffer is ideal for infrared Western blotting. Fluorescence technology is widely used to detect proteins. However, many common visible fluorophores often result in considerable background fluorescence in the visible range. Visible fluorophores are rarely used for membrane-based protein detection because of this high background. IRDye™800, IRDye™700DX, Alexa Fluor® 680 and Cy5.5™ antibody and reagent conjugates are specifically designed for protein detection methods that use longer-wavelength, near-infrared (IR) fluorophores to visualize proteins in western blotting and other applications. IRDye™800 and IRDye™700DX fluoresce outside the range of most autofluorescence and therefore specific signal is sharply evident from any background giving the best possible signal-to-noise ratio. Detection levels in the picogram range on Western blots rival the sensitivity of chemiluminescence on film. IRDye™800 conjugates are also suitable for immunofluorescence microscopy using commercially available excitation/emission filters in the 780nm/820nm range. Dual simultaneous labeling in Western blots or microscopy is achieved when IRDye™800 conjugates are used in conjunction with IRDye™700 or Cy5.5™ conjugates. IRDye™800 and IRDye™700DX conjugates provide an ultra-sensitive and convenient alternative to standard chemiluminescent protein detection methods, as well as a valuable tool for multicolor imaging. Once reacted with the membrane and dried, IRDye™800 and IRDye™700DX conjugated antibody-protein complexes are very stable, and membranes can be stored protected from light, re-washed and/or rescanned.
References (102)
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Microarray PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA Source
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IF, Confocal Microscopy; IHC, ICC, Histology PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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Microarray PubMed
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WB, IB, PCA PubMed
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Microarray PubMed
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WB, IB, PCA PubMed
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Microarray PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA Source
Dhanendra Tomar, Manfred Thomas, Joanne F. Garbincius, Devin W. Kolmetzky, Oniel Salik, Pooja Jadiy (2019). MICU1 regulates mitochondrial cristae structure and function independent of the mitochondrial calcium uniporter channel. bioRxiv
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WB, IB, PCA Source
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WB, IB, PCA PubMed
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Microarray PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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Microarray PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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Microarray PubMed
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WB, IB, PCA PubMed
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Microarray PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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E, EIA PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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Microarray PubMed
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Microarray PubMed
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WB, IB, PCA PubMed
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Microarray PubMed
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Microarray PubMed
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WB, IB, PCA PubMed
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WB, IB, PCA PubMed
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Microarray PubMed
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Other PubMed
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WB, IB, PCA PubMed
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Applications
Microarray PubMed
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Applications
WB, IB, PCA PubMed
Wilhelmson AS, Fagman JB, Johansson I, et al. (2016). Increased Intimal Hyperplasia After Vascular Injury in Male Androgen Receptor-Deficient Mice. Endocrinology.
Applications
WB, IB, PCA PubMed
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Applications
Microarray PubMed
Ashoor R, Lee D, Cheng A, Jessen B, Huang W. (2016). Validation of Cross-Species Reactivity of the VEGF-A/PDGFRβ Bifunctional Antibody PF-06653157. J Ocul Pharmacol Ther.
Applications
WB, IB, PCA PubMed
Morales Betanzos C, Federspiel JD, Palubinsky AM, McLaughlin B, Liebler DC. (2016). Dynamic Phosphorylation of Apoptosis Signal Regulating Kinase 1 (ASK1) in Response to Oxidative and Electrophilic Stress. Chem Res Toxicol.
Applications
WB, IB, PCA PubMed
Sabiha Runa, Dipesh Khanal, Melissa L. Kemp, and Christine K. Payne. (2016). TiO2 Nanoparticles Alter the Expression of Peroxiredoxin Antioxidant Genes. J. Phys. Chem. C
Applications
WB, IB, PCA Source
Mock et al. (2015). Printed peptide arrays identify prognostic TNC serumantibodies in glioblastoma patients. Oncotarget
Applications
Microarray PubMed
Gomes et al. (2015). Proteomic analysis of physiological versus pathological cardiac remodeling in animal models expressing mutations in myosin essential light chains. Journal of Muscle Research and Cell Motility
Applications
WB, IB, PCA PubMed
Gourbeyre P, Berri M, Lippi Y, et al. (2015). Pattern recognition receptors in the gut: analysis of their expression along the intestinal tract and the crypt/villus axis. Physiol Rep.
Applications
WB, IB, PCA PubMed
Vernet T, Choulier L, Nominé Y, et al. (2015). Spot peptide arrays and SPR measurements: throughput and quantification in antibody selectivity studies. J Mol Recognit.
Applications
Microarray PubMed
Simpson-Lavy KJ, Bronstein A, Kupiec M, Johnston M. (2015). Cross-Talk between Carbon Metabolism and the DNA Damage Response in S. cerevisiae. Cell Rep.
Applications
WB, IB, PCA PubMed
McKinstry SU, Karadeniz YB, Worthington AK, et al. (2014). Huntingtin is required for normal excitatory synapse development in cortical and striatal circuits. J Neurosci.
Applications
WB, IB, PCA PubMed
Stagi M, Klein ZA, Gould TJ, Bewersdorf J, Strittmatter SM. (2014). Lysosome size, motility and stress response regulated by fronto-temporal dementia modifier TMEM106B. Mol Cell Neurosci.
Applications
WB, IB, PCA PubMed
Heming JD, Huffman JB, Jones LM, Homa FL. (2014). Isolation and characterization of the herpes simplex virus 1 terminase complex. J Virol.
Applications
WB, IB, PCA PubMed
Musset L, Miyara M, Benveniste O, et al. (2014). Analysis of autoantibodies to 3-hydroxy-3-methylglutaryl-coenzyme A reductase using different technologies. J Immunol Res.
Applications
Microarray PubMed
Wang X, Dang R, Liu W, Yang Z, Du E, Zhang S. (2014). Antigenic characteristics of glycosylated protein 3 of highly pathogenic porcine reproductive and respiratory syndrome virus. Virus Res.
Applications
Microarray PubMed
Prasanphanich AF, Arencibia CA, Kemp ML. (2014). Redox processes inform multivariate transdifferentiation trajectories associated with TGFβ-induced epithelial-mesenchymal transition. Free Radic Biol Med.
Applications
Other PubMed
Haas LT, Kostylev MA, Strittmatter SM. (2014). Therapeutic molecules and endogenous ligands regulate the interaction between brain cellular prion protein (PrPC) and metabotropic glutamate receptor 5 (mGluR5). J Biol Chem.
Applications
WB, IB, PCA PubMed
Wang X, Qui L, Dang Y, Xiao S, Zhang S, Yang Z. (2014). Linear epitope recognition antibodies strongly respond to the C-terminal domain of HP-PRRSV GP5. Vet Microbiol.
Applications
Microarray PubMed
Giegerich AK, Kuchler L, Sha LK, et al. (2014). Autophagy-dependent PELI3 degradation inhibits proinflammatory IL1B expression. Autophagy.
Applications
WB, IB, PCA PubMed
Risher WC, Patel S, Kim IH, et al. (2014). Astrocytes refine cortical connectivity at dendritic spines. Elife.
Applications
WB, IB, PCA PubMed
Simpson-Lavy KJ, Johnston M. (2013). SUMOylation regulates the SNF1 protein kinase. Proc Natl Acad Sci U S A.
Applications
WB, IB, PCA PubMed
Ramón-García S, Ng C, Jensen PR, et al. (2013). WhiB7, an Fe-S-dependent transcription factor that activates species-specific repertoires of drug resistance determinants in actinobacteria. J Biol Chem.
Applications
WB, IB, PCA PubMed
Boschert V, van Dinther M, Weidauer S, et al. (2013). Mutational analysis of sclerostin shows importance of the flexible loop and the cystine-knot for Wnt-signaling inhibition. PLoS One.
Applications
Cellular assay PubMed
Um JW, Nygaard HB, Heiss JK, et al. (2012). Alzheimer amyloid-β oligomer bound to postsynaptic prion protein activates Fyn to impair neurons. Nat Neurosci.
Applications
WB, IB, PCA PubMed
Schirwitz C, Loeffler FF, Felgenhauer T, Stadler V, Breitling F, Bischoff FR. (2012). Sensing immune responses with customized peptide microarrays. Biointerphases.
Applications
Microarray PubMed
Cockrell SK, Huffman JB, Toropova K, Conway JF, Homa FL. (2011). Residues of the UL25 protein of herpes simplex virus that are required for its stable interaction with capsids. J Virol.
Applications
WB, IB, PCA PubMed
Humphries WH 4th, Szymanski CJ, Payne CK. (2011). Endo-lysosomal vesicles positive for Rab7 and LAMP1 are terminal vesicles for the transport of dextran. PLoS One.
Applications
WB, IB, PCA PubMed
Villarreal G Jr, Oh DJ, Kang MH, Rhee DJ. (2011). Coordinated regulation of extracellular matrix synthesis by the microRNA-29 family in the trabecular meshwork. Invest Ophthalmol Vis Sci.
Applications
WB, IB, PCA PubMed
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This product is for research use only and is not intended for therapeutic or diagnostic applications. Please contact a technical service representative for more information. All products of animal origin manufactured by Rockland Immunochemicals are derived from starting materials of North American origin. Collection was performed in United States Department of Agriculture (USDA) inspected facilities and all materials have been inspected and certified to be free of disease and suitable for exportation. All properties listed are typical characteristics and are not specifications. All suggestions and data are offered in good faith but without guarantee as conditions and methods of use of our products are beyond our control. All claims must be made within 30 days following the date of delivery. The prospective user must determine the suitability of our materials before adopting them on a commercial scale. Suggested uses of our products are not recommendations to use our products in violation of any patent or as a license under any patent of Rockland Immunochemicals, Inc. If you require a commercial license to use this material and do not have one, then return this material, unopened to: Rockland Inc., P.O. BOX 5199, Limerick, Pennsylvania, USA.
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