product summary
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company name :
Invitrogen
other brands :
NeoMarkers, Lab Vision, Endogen, Pierce, BioSource International, Zymed Laboratories, Caltag, Molecular Probes, Research Genetics, Life Technologies, Applied Biosystems, GIBCO BRL, ABgene, Dynal, Affinity BioReagents, Nunc, Invitrogen, NatuTec, Oxoid, Richard-Allan Scientific, Arcturus, Perseptive Biosystems, Proxeon, eBioscience
product type :
antibody
product name :
CD34 Monoclonal Antibody (RAM34), FITC, eBioscience™
catalog :
11-0341-82
quantity :
100 µg
price :
US 309.00
clonality :
monoclonal
host :
rat
conjugate :
FITC
clone name :
RAM34
reactivity :
human, mouse, rat
application :
immunocytochemistry, flow cytometry
more info or order :
citations: 270
Published Application/Species/Sample/DilutionReference
  • flow cytometry; mouse; 1:2000; loading ...; fig s1-1
Zaro B, Noh J, Mascetti V, Demeter J, George B, Zukowska M, et al. Proteomic analysis of young and old mouse hematopoietic stem cells and their progenitors reveals post-transcriptional regulation in stem cells. elife. 2020;9: pubmed publisher
  • flow cytometry; mouse; loading ...; fig 2a
Bai L, Lyu Y, Shi G, Li K, Huang Y, Ma Y, et al. Polymerase I and transcript release factor transgenic mice show impaired function of hematopoietic stem cells. Aging (Albany NY). 2020;12:20152-20162 pubmed publisher
  • flow cytometry; mouse; loading ...
Ricci B, Tycksen E, Celik H, Belle J, Fontana F, Civitelli R, et al. Osterix-Cre marks distinct subsets of CD45- and CD45+ stromal populations in extra-skeletal tumors with pro-tumorigenic characteristics. elife. 2020;9: pubmed publisher
  • flow cytometry; mouse; loading ...; fig s2a
Nagai M, Noguchi R, Takahashi D, Morikawa T, Koshida K, Komiyama S, et al. Fasting-Refeeding Impacts Immune Cell Dynamics and Mucosal Immune Responses. Cell. 2019;178:1072-1087.e14 pubmed publisher
  • flow cytometry; mouse; loading ...; fig s1l
Baryawno N, Przybylski D, Kowalczyk M, Kfoury Y, Severe N, Gustafsson K, et al. A Cellular Taxonomy of the Bone Marrow Stroma in Homeostasis and Leukemia. Cell. 2019;177:1915-1932.e16 pubmed publisher
  • flow cytometry; mouse; loading ...; fig 1b
Rao T, Gupta M, Softic S, Wang L, Jang Y, Thomou T, et al. Attenuation of PKCδ enhances metabolic activity and promotes expansion of blood progenitors. EMBO J. 2018;37: pubmed publisher
  • flow cytometry; mouse; loading ...; fig 6b
Hsu J, Dayaram T, Tovy A, De Braekeleer E, Jeong M, Wang F, et al. PPM1D Mutations Drive Clonal Hematopoiesis in Response to Cytotoxic Chemotherapy. Cell Stem Cell. 2018;23:700-713.e6 pubmed publisher
  • flow cytometry; mouse; loading ...; fig s1e
Baumgartner C, Toifl S, Farlik M, Halbritter F, Scheicher R, Fischer I, et al. An ERK-Dependent Feedback Mechanism Prevents Hematopoietic Stem Cell Exhaustion. Cell Stem Cell. 2018;22:879-892.e6 pubmed publisher
  • flow cytometry; mouse; fig s1
Kaufmann E, Sanz J, Dunn J, Khan N, Mendonça L, Pacis A, et al. BCG Educates Hematopoietic Stem Cells to Generate Protective Innate Immunity against Tuberculosis. Cell. 2018;172:176-190.e19 pubmed publisher
  • flow cytometry; mouse; loading ...; fig 2a
Guarnerio J, Mendez L, Asada N, Menon A, Fung J, Berry K, et al. A non-cell-autonomous role for Pml in the maintenance of leukemia from the niche. Nat Commun. 2018;9:66 pubmed publisher
  • immunocytochemistry; mouse; loading ...; fig 3b
Kasaai B, Caolo V, Peacock H, Lehoux S, Gomez Perdiguero E, Luttun A, et al. Erythro-myeloid progenitors can differentiate from endothelial cells and modulate embryonic vascular remodeling. Sci Rep. 2017;7:43817 pubmed publisher
  • flow cytometry; mouse; loading ...; fig s2a
Rychtarčíková Z, Lettlova S, Tomkova V, Korenkova V, Langerova L, Simonova E, et al. Tumor-initiating cells of breast and prostate origin show alterations in the expression of genes related to iron metabolism. Oncotarget. 2017;8:6376-6398 pubmed publisher
  • flow cytometry; rat; loading ...; fig 1a
Wang D, Ding X, Xue W, Zheng J, Tian X, Li Y, et al. A new scaffold containing small intestinal submucosa and mesenchymal stem cells improves pancreatic islet function and survival in vitro and in vivo. Int J Mol Med. 2017;39:167-173 pubmed publisher
  • flow cytometry; mouse; fig 4a
Agarwal S, Drake J, Qureshi A, Loder S, Li S, Shigemori K, et al. Characterization of Cells Isolated from Genetic and Trauma-Induced Heterotopic Ossification. PLoS ONE. 2016;11:e0156253 pubmed publisher
  • flow cytometry; mouse; loading ...; fig s1
Wen S, Dooner M, Cheng Y, Papa E, Del Tatto M, Pereira M, et al. Mesenchymal stromal cell-derived extracellular vesicles rescue radiation damage to murine marrow hematopoietic cells. Leukemia. 2016;30:2221-2231 pubmed publisher
  • flow cytometry; mouse; fig 3
Braun J, Meixner A, Brachner A, Foisner R. The GIY-YIG Type Endonuclease Ankyrin Repeat and LEM Domain-Containing Protein 1 (ANKLE1) Is Dispensable for Mouse Hematopoiesis. PLoS ONE. 2016;11:e0152278 pubmed publisher
  • flow cytometry; mouse; 1:400; fig 7
Miller M, Rosten P, Lemieux M, Lai C, Humphries R. Meis1 Is Required for Adult Mouse Erythropoiesis, Megakaryopoiesis and Hematopoietic Stem Cell Expansion. PLoS ONE. 2016;11:e0151584 pubmed publisher
  • flow cytometry; mouse
Chen J, Miyanishi M, Wang S, Yamazaki S, Sinha R, Kao K, et al. Hoxb5 marks long-term haematopoietic stem cells and reveals a homogenous perivascular niche. Nature. 2016;530:223-7 pubmed publisher
  • flow cytometry; mouse; loading ...
Cole C, Verdoni A, Ketkar S, Leight E, Russler Germain D, Lamprecht T, et al. PML-RARA requires DNA methyltransferase 3A to initiate acute promyelocytic leukemia. J Clin Invest. 2016;126:85-98 pubmed publisher
  • flow cytometry; mouse; fig 2
Zhang J, Li L, Baldwin A, Friedman A, Paz Priel I. Loss of IKKβ but Not NF-κB p65 Skews Differentiation towards Myeloid over Erythroid Commitment and Increases Myeloid Progenitor Self-Renewal and Functional Long-Term Hematopoietic Stem Cells. PLoS ONE. 2015;10:e0130441 pubmed publisher
  • flow cytometry; mouse; fig 2
Charmsaz S, Beckett K, Smith F, Bruedigam C, Moore A, Al Ejeh F, et al. EphA2 Is a Therapy Target in EphA2-Positive Leukemias but Is Not Essential for Normal Hematopoiesis or Leukemia. PLoS ONE. 2015;10:e0130692 pubmed publisher
  • flow cytometry; mouse; fig s1
Liang X, Ding Y, Zhang Y, Chai Y, He J, Chiu S, et al. Activation of NRG1-ERBB4 signaling potentiates mesenchymal stem cell-mediated myocardial repairs following myocardial infarction. Cell Death Dis. 2015;6:e1765 pubmed publisher
  • flow cytometry; mouse; tbl s3
Pannu J, Belle J, Forster M, Duerr C, Shen S, Kane L, et al. Ubiquitin specific protease 21 is dispensable for normal development, hematopoiesis and lymphocyte differentiation. PLoS ONE. 2015;10:e0117304 pubmed publisher
  • flow cytometry; mouse; fig 1
Hu W, Dooley J, Chung S, Chandramohan D, Cimmino L, Mukherjee S, et al. miR-29a maintains mouse hematopoietic stem cell self-renewal by regulating Dnmt3a. Blood. 2015;125:2206-16 pubmed publisher
  • flow cytometry; mouse
Weston W, Zayas J, Perez R, George J, Jurecic R. Dynamic equilibrium of heterogeneous and interconvertible multipotent hematopoietic cell subsets. Sci Rep. 2014;4:5199 pubmed publisher
  • flow cytometry; mouse; 10 ug/ml; tbl 1
Hittinger M, Czyz Z, Huesemann Y, Maneck M, Botteron C, Kaeufl S, et al. Molecular profiling of single Sca-1+/CD34+,- cells--the putative murine lung stem cells. PLoS ONE. 2013;8:e83917 pubmed publisher
  • flow cytometry; human; tbl 1
Alessio A, Beltrame M, Nascimento M, Vicente C, de Godoy J, Silva J, et al. Circulating progenitor and mature endothelial cells in deep vein thrombosis. Int J Med Sci. 2013;10:1746-54 pubmed publisher
  • flow cytometry; mouse
Jenkins C, Shevchuk O, Giambra V, Lam S, Carboni J, Gottardis M, et al. IGF signaling contributes to malignant transformation of hematopoietic progenitors by the MLL-AF9 oncoprotein. Exp Hematol. 2012;40:715-723.e6 pubmed publisher
  • flow cytometry; mouse
Ripich T, Jessberger R. SWAP-70 regulates erythropoiesis by controlling ?4 integrin. Haematologica. 2011;96:1743-52 pubmed publisher
  • flow cytometry; mouse; fig 1, 2, 3
Böiers C, Buza Vidas N, Jensen C, Pronk C, Kharazi S, Wittmann L, et al. Expression and role of FLT3 in regulation of the earliest stage of normal granulocyte-monocyte progenitor development. Blood. 2010;115:5061-8 pubmed publisher
  • flow cytometry; mouse; fig 1
Guibal F, Alberich Jorda M, Hirai H, Ebralidze A, Levantini E, Di Ruscio A, et al. Identification of a myeloid committed progenitor as the cancer-initiating cell in acute promyelocytic leukemia. Blood. 2009;114:5415-25 pubmed publisher
Kalafati L, Kourtzelis I, Schulte Schrepping J, Li X, Hatzioannou A, Grinenko T, et al. Innate Immune Training of Granulopoiesis Promotes Anti-tumor Activity. Cell. 2020;183:771-785.e12 pubmed publisher
Shao B, Wang L, Yu Y, Chen L, Gan N, Huang W. Effects of CD4+ T lymphocytes from ovariectomized mice on bone marrow mesenchymal stem cell proliferation and osteogenic differentiation. Exp Ther Med. 2020;20:84 pubmed publisher
Patra D, Kim J, Zhang Q, Tycksen E, Sandell L. Site-1 protease ablation in the osterix-lineage in mice results in bone marrow neutrophilia and hematopoietic stem cell alterations. Biol Open. 2020;9: pubmed publisher
Lisse T, Sharma M, Vishlaghi N, Pullagura S, Braun R. GDNF promotes hair formation and cutaneous wound healing by targeting bulge stem cells. NPJ Regen Med. 2020;5:13 pubmed publisher
Zhang Y, Deng Z, Li Y, Yuan R, Yang M, Zhao Y, et al. Mesenchymal Stem Cells Provide Neuroprotection by Regulating Heat Stroke-Induced Brain Inflammation. Front Neurol. 2020;11:372 pubmed publisher
Cui H, Joo S, Cho Y, Park J, Kim J, Seo C. Effect of Combining Low Temperature Plasma, Negative Pressure Wound Therapy, and Bone Marrow Mesenchymal Stem Cells on an Acute Skin Wound Healing Mouse Model. Int J Mol Sci. 2020;21: pubmed publisher
Kuznetsova T, Smolina T, Makarenkova I, Ivanushko L, Persiyanova E, Ermakova S, et al. Immunoadjuvant Activity of Fucoidans from the Brown Alga Fucus evanescens. Mar Drugs. 2020;18: pubmed publisher
Giannini S, Lee Sundlov M, Rivadeneyra L, Di Buduo C, Burns R, Lau J, et al. β4GALT1 controls β1 integrin function to govern thrombopoiesis and hematopoietic stem cell homeostasis. Nat Commun. 2020;11:356 pubmed publisher
Hidalgo San Jose L, Sunshine M, Dillingham C, Chua B, Krutá M, Hong Y, et al. Modest Declines in Proteome Quality Impair Hematopoietic Stem Cell Self-Renewal. Cell Rep. 2020;30:69-80.e6 pubmed publisher
Luo Z, Dai Y, Chen M, Zhu C, Wu K, Li G, et al. Silencing of RBP‑JK promotes the differentiation of bone marrow mesenchymal stem cells into vascular endothelial cells. Mol Med Rep. 2020;21:69-76 pubmed publisher
Yamashita M, Passegue E. TNF-α Coordinates Hematopoietic Stem Cell Survival and Myeloid Regeneration. Cell Stem Cell. 2019;: pubmed publisher
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Zhao M, Tao F, Venkatraman A, Li Z, Smith S, Unruh J, et al. N-Cadherin-Expressing Bone and Marrow Stromal Progenitor Cells Maintain Reserve Hematopoietic Stem Cells. Cell Rep. 2019;26:652-669.e6 pubmed publisher
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Lee S, North K, Kim E, Jang E, Obeng E, Lu S, et al. Synthetic Lethal and Convergent Biological Effects of Cancer-Associated Spliceosomal Gene Mutations. Cancer Cell. 2018;34:225-241.e8 pubmed publisher
Avigad Laron E, Aamar E, Enshell Seijffers D. The Mesenchymal Niche of the Hair Follicle Induces Regeneration by Releasing Primed Progenitors from Inhibitory Effects of Quiescent Stem Cells. Cell Rep. 2018;24:909-921.e3 pubmed publisher
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Rao T, Marks Bluth J, Sullivan J, Gupta M, Chandrakanthan V, Fitch S, et al. High-level Gpr56 expression is dispensable for the maintenance and function of hematopoietic stem and progenitor cells in mice. Stem Cell Res. 2015;14:307-22 pubmed publisher
Wu C, Wang C, Chang C, Cheng Y, Song J, Jan J, et al. Function-oriented development of CXCR4 antagonists as selective human immunodeficiency virus (HIV)-1 entry inhibitors. J Med Chem. 2015;58:1452-65 pubmed publisher
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product information
Product Type :
Antibody
Product Name :
CD34 Monoclonal Antibody (RAM34), FITC, eBioscience™
Catalog # :
11-0341-82
Quantity :
100 µg
Price :
US 309.00
Clonality :
Monoclonal
Purity :
Affinity chromatography
Host :
Rat
Reactivity :
Mouse
Applications :
Flow Cytometry: 1 µg/test
Species :
Mouse
Clone :
RAM34
Isotype :
IgG2a, kappa
Storage :
4° C, store in dark, DO NOT FREEZE!
Description :
CD34 is a highly glycosylated monomeric with a molecular weight range of 111-115 kDa surface protein that is present on many stem cell populations. CD34 is a stem cell marker although its expression on human hematopoietic stem cells is reversible. CD34 may serve as a surface receptor that undergoes receptor-mediated endocytosis and regulates adhesion, differentiation and proliferation of hematopoietic stem cells and other progenitors. CD34 expression is likely to represent a specific state of hematopoietic development that may have altered adhering properties with expanding and differentiating capabilities in both in vitro and in vivo conditions. CD34 is possibly an adhesion molecule with a putative role for mediating the attachment of stem cells to the bone marrow extracellular matrix or directly to stromal cells. Further, CD34 could act as a scaffold for the attachment of lineage specific glycans, allowing stem cells to bind to lectins expressed by stromal cells or other marrow components. CD34 is thought to have a role in presenting carbohydrate ligands to selectins. The intracellular chain of the CD34 antigen is a site of phosphorylation by activated protein kinase C suggesting a putative role in signal transduction. Diseases associated with CD34 dysfunction include dermatofibrosarcoma and neurofibroma.
Format :
Liquid
Applications w/Dilutions :
Flow Cytometry: 1 µg/test
Aliases :
(E3-independent) E2 ubiquitin-conjugating enzyme R1; AU040960; CD34; CD34 antigen; CD34 molecule; CDC34; cell division cycle 34; cell division cycle 34 homolog; cluster designation 34; cluster of differentiation antigen 34; E2 ubiquitin-conjugating enzyme R1; E2-CDC34; hematopoietic progenitor cell antigen CD34; hematopoietic progenitor cell marker CD34; Mucosialin; RP11-328D5.2; sialomucin protein; type 1 transmembrane protein; UBC3; UBCH3; UBE2R1; ubiquitin carrier protein; ubiquitin conjugating enzyme E2 R1; ubiquitin-conjugating enzyme E2 R1; Ubiquitin-conjugating enzyme E2-32 kDa complementing; ubiquitin-conjugating enzyme E2-CDC34; Ubiquitin-protein ligase R1
more info or order :
company information
Invitrogen
Thermo Fisher Scientific
81 Wyman Street
Waltham, MA USA 02451
https://www.thermofisher.com
800-678-5599
headquarters: USA