SBI/Anti-CD9 Antibody (rabbit anti-human) with goat anti-rabbit HRP secondary antibody/EXOAB-CD9A-1/25 ?L
基因編輯
商品編號
EXOAB-CD9A-1
品牌
SBI
公司
System Biosciences(SBI)
公司分類(lèi)
exosome detection
商品信息
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Overview:
Confirm exosome isolation with confidence
When you’re ready to confirm that you’ve isolated exosomes, stick with the exosome experts at
SBI
. Our polyclonal rabbit anti-CD9 antibodies recognize the human, mouse, and rat forms of the protein, and are a great choice for general exosome detection, especially when used in conjunction with antibodies for other exosome
Marker
s such as the tetraspanins CD63 and CD81, as well as the heat shock protein HSP70 (if you have any questions about the best antibodies to use for your exosome project, we’re ready to help! Just email us at tech@systembio.com). And, like all of our antibodies, our anti-CD9 antibody and the included goat anti-rabbit HRP secondary antibodies are rigorously validated for exosome detection via Western blotting.
Rigorously validated
Hand-picked selection
Expert exosome support
Choose the right antibody for your exosome detection needs
Cat.#
Antibody to
Notes
Link to ExoCarta entry for the human protein
General exosome
Marker
s
EXOAB-CD9A-1
CD9
Tetraspanin
ExoCarta_928
EXOAB-CD63A-1
CD63
Tetraspanin
ExoCarta_967
EXOAB-CD81A-1
CD81
Tetraspanin
ExoCarta_93185
EXOAB-Hsp70A-1
HSP70
ExoCarta_3303, ExoCarta_3304, ExoCarta_3306, ExoCarta_3308, ExoCarta 3310, ExoCarta_3311
EXOAB-ALIX-1
ALIX
Programmed cell death 6 interacting protein (PDCD6IP)
ExoCarta_10015
EXOAB-ANXA5-1
ANXA5-1
Annexin A5
ExoCarta_308
EXOAB-TSG101-1
TSG101
Tumor susceptibility gene 101
ExoCarta_7251
EXOAB-FLOT1-1
FLOT-1
Flotillin-1
ExoCarta_10211
Tissue-specific exosome
Marker
s
EXOAB-CXCR4-1
CXCR4
Specific for B-cells, T-cells, and platelets
ExoCarta_7852
EXOAB-EPCAM1-1
EpCam
Specific for cancer-derived exosomes
ExoCarta_4072
EXOAB-VMTN-1
Vimentin
Specific for mesenchymal stem cells
ExoCarta_7431
Citations:
LIN, F, et al. (2017) Effects of esophageal cancer cell-derived exosomes on cancer cell migration and invasion and its mechanism research.
Medical Journal of Chinese People's Liberation Army
. 2017 Apr 1; 42(1):307-. Link: Medical Journal of Chinese People's Liberation Army
Yoon, S, et al. (2017) MLKL, the Protein that Mediates Necroptosis, Also Regulates Endosomal Trafficking and Extracellular Vesicle Generation.
Immunity
. 2017 Jun 22;. PM ID: 28666573
Dickman, CT, et al. (2017) Selective extracellular vesicle exclusion of miR-142-3p by oral cancer cells promotes both internal and extracellular malignant phenotypes.
Oncotarget
. 2017 Feb 28; 8(9):15252-15266. PM ID: 28146434
Hsu, YL, et al. (2017) Hypoxic lung cancer-secreted exosomal miR-23a increased angiogenesis and vascular perme
ABI
lity by targeting prolyl hydroxylase and tight junction protein ZO-1.
Oncogene
. 2017 Apr 24;. PM ID: 28436951
Hao, YX, et al. (2017) KRAS and BRAF mutations in serum exosomes from patients with colorectal cancer in a Chinese population.
Oncol Lett
. 2017 May 1; 13(5):3608-3616. PM ID: 28521461
Joy, M, et al. (2017) The Myocardin-related transcription factor MKL co-regulates the cellular levels of two profilin isoforms.
J. Biol. Chem.
. 2017 May 25;. PM ID: 28546428
Wen, S, et al. (2016) Mesenchymal stromal cell-derived extracellular vesicles rescue r
ADI
ation damage to murine marrow hematopoietic cells.
Leukemia
. 2016 Nov 1; 30(11):2221-2231. PM ID: 27150009
Spencer, B, et al. (2016) α-Synuclein interferes with the ESCRT-III complex contributing to the pathogenesis of Lewy body disease.
Hum. Mol. Genet.
. 2016 Mar 15; 25(6):1100-15. PM ID: 26740557
Silvers, CR, et al. (2016) Identification of extracellular vesicle-borne periostin as a feature of muscle-invasive bladder cancer.
Oncotarget
. 2016 Apr 26; 7(17):23335-45. PM ID: 26981774
Kouwaki, T, et al. (2016) Extracellular Vesicles Including Exosomes Regulate Innate Immune Responses to Hepatitis B Virus Infection.
Front Immunol
. 2016 Sep 16; 7:335. PM ID: 27630638
Diaz-Hidalgo, L, et al. (2016) Transglutaminase type 2-dependent selective recruitment of proteins into exosomes under stressful cellular conditions.
Biochim. Biophys. Acta
. 2016 Aug 1; 1863(8):2084-92. PM ID: 27169926
Koh, YQ, et al. (2016) Characterization of exosomal release in bovine endometrial intercaruncular stromal cells.
Reprod. Biol. Endocrinol.
. 2016 Nov 9; 14(1):78. PM ID: 27829441
McNicholas, K, et al. (2016) Albuminuria is not associated with elevated urinary vesicle concentration but can confound nanoparticle tracking analysis.
Nephrology (Carlton)
. 2016 Aug 6;. PM ID: 27496221
Fischer, S, et al. (2016) Indication of Horizontal DNA Gene Transfer by Extracellular Vesicles.
PLoS ONE
. 2016 Sep 29; 11(9):e0163665. PM ID: 27684368
Lee, JC, et al. (2015) Papillary thyroid cancer-derived exosomes contain miRNA-146b and miRNA-222.
J. Surg. Res.
. 2015 Jun 1; 196(1):39-48. PM ID: 25819770
Luo, X, et al. (2015) Exosomes are unlikely involved in intercellular Nef transfer.
PLoS ONE
. 2015 Apr 29; 10(4):e0124436. PM ID: 25919665
Kanada, M, et al. (2015) Differential fates of biomolecules delivered to target cells via extracellular vesicles.
Proc. Natl. Acad. Sci. U.S.A.
. 2015 Mar 24; 112(12):E1433-42. PM ID: 25713383
Endo-Munoz, L, et al. (2015) Progression of Osteosarcoma from a Non-Metastatic to a Metastatic Phenotype Is Causally Associated with Activation of an Autocrine and Paracrine uPA Axis.
PLoS ONE
. 2015 Aug 31; 10(8):e0133592. PM ID: 26317203
Amorim, M, et al. (2014) The overexpression of a single oncogene (ERBB2/HER2) alters the proteomic landscape of extracellular vesicles.
Proteomics
. 2014 Jun 1; 14(12):1472-9. PM ID: 24733759
產(chǎn)品貨號:1524.0