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Cord Blood CD34+ Stem/Progenitor Cells

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Catalog # : CB005-0

CB-CD34+ Stem/Progenitor cells are positively isolated using a direct immunomagnetic CD34 MicroBead labeling system.CB-CD34+ Cells/Mixed indicates that multiple donors are pooled to obtain the cord blood CD34+ cells.
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Catalog #FormatDonor TypeProduct nameSizePriceQuantity 
CB007FCryopreservedMixed Cord Blood CD34+ Stem/Progenitor Cells0.2 million
$466.00
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CB005FCryopreservedMixed Cord Blood CD34+ Stem/Progenitor Cells0.5 million
$797.00
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CB008FCryopreservedMixed Cord Blood CD34+ Stem/Progenitor Cells1 million
$1,206.00
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CB005FreshMixed Cord Blood CD34+ Stem/Progenitor Cells1 million
$1,269.00
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CB009FCryopreservedMixed Cord Blood CD34+ Stem/Progenitor Cells5 million
$4,251.00
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CB007F-SCryopreservedSingle Cord Blood CD34+ Stem/Progenitor Cells0.2 million
$608.00
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-
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CB005F-SCryopreservedSingle Cord Blood CD34+ Stem/Progenitor Cells0.5 million
$1,049.00
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CB008F-SCryopreservedSingle Cord Blood CD34+ Stem/Progenitor Cells1 million
$1,889.00
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$466.00
Overview

Additional Information

CB-CD34+ Stem/Progenitor cells are positively isolated using a direct immunomagnetic CD34 MicroBead labeling system.CB-CD34+ Cells/Mixed indicates that multiple donors are pooled to obtain the cord blood CD34+ cells.

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Applications/Publications

Applications

  • Drug Screening
  • Toxicity or Immunogenicity Testing
  • Reagent validation
  • Colony-forming (CFU) assays
  • Humanized mice generation

To Study

  • Stem cell expansion, lineage-commitment, and transplantation

Publications

HIV-1 is Restricted Prior to Integration in Primary Cord-Derived Human CD34+ Cells

Daniel O. Griffin and Stephen Goff
Source: JVI Accepted Manuscript Posted Online 20 May 2015

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Derivation of Neural Stem Cells from Human Adult Peripheral CD34+ Cells for an Autologous Model of Neuroinflammation

Wang T, Choi E, Monaco MCG, Campanac E, Medynets M, et al.
Source: PLoS ONE 8(11): e81720. doi:10.1371/journal.pone.0081720 Published November 26, 2013

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Selective inhibition of spleen tyrosine kinase (SYK) with a novel orally bioavailable small molecule inhibitor, RO9021, impinges on various innate and adaptive immune responses: implications for SYK inhibitors in autoimmune disease therapy

Cheng Liao
Source: Arthritis Research & Therapy 2013, 15:R146

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Production of erythrocytes from directly isolated or Delta1 Notch ligand expanded CD34D hematopoietic progenitor cells: process characterization, monitoring and implications for manufacture

KATIE E. GLEN, et al.
Source: International Society for Cellular Therapy. Cytotherapy, 2013; 0: 1e12 (Received 7 January 2013; accepted 28 April 2013) ISSN 1465-3249 Copyright 2013

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High-Efficiency Transduction of Primary Human Hematopoietic Stem Cells and Erythroid Lineage- Restricted Expression by Optimized AAV6 Serotype Vectors In Vitro and in a Murine Xenograft Model In Vivo

Liujiang Song, et al.
Source: PLoS ONE 8(3): e58757 March 14, 2013

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Knockdown of HPRT for Selection of Genetically Modified Human Hematopoietic Progenitor Cells

Rashmi Choudhary
Source: PLoS ONE 8(3): e63718 March 15, 2013

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Growth Factor-Activated Stem Cell Circuits and Stromal Signals Cooperatively Accelerate Non-Integrated iPSC Reprogramming of Human Myeloid Progenitors

Tea Soon Park, et al.
Source: PLoS ONE 7(8): e42838. doi:10.1371/journal.pone.0042838 August 8, 2012

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A Universal System for Highly Efficient Cardiac Differentiation of Human Induced Pluripotent Stem Cells That Eliminates Interline Variability

Paul W. Burridge, et al.
Source: PLoS ONE 6(4): e18293. doi:10.1371/journal.pone.0018293 April 8, 2011

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Human CD34+ CD133+ Hematopoietic Stem Cells Cultured with Growth Factors Including Angptl5 Efficiently Engraft Adult NOD-SCID Il2rc2/2 (NSG) Mice

Adam C. Drake, et al.
Source: PLoS ONE 6(4): e18382. doi:10.1371/journal.pone.0018382 April 29, 2011

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Expression of HLA Class II Molecules in Humanized NOD.Rag1KO.IL2RgcKO Mice Is Critical for Development and Function of Human T and B Cells

Rebecca Danner, et al.
Source: PLoS ONE 6(5): e19826. doi:10.1371/journal.pone.0019826 17, 2011

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Generation of Induced Pluripotent Stem Cells from CD34+ Cells across Blood Drawn from Multiple Donors with Non-Integrating Episomal Vectors

Amanda A. Mack*, et al.
Source: PLoS ONE 6(11): e27956. doi:10.1371/journal.pone.0027956 November 22, 2011

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A novel potent Fas agonist for selective depletion of tumor cells in hematopoietic transplants

A Nahimana, et al.
Source: Blood Cancer Journal (2011) 1, e47; doi:10.1038/bcj.2011.47

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Developmental differences in megakaryocytopoiesis are associated with up-regulated TPO signaling through mTOR and elevated GATA-1 levels in neonatal megakaryocytes

Zhi-Jian Liu, et al.
Source: Blood April 14, 2011 vol. 117 no. 15 4106-4117

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A new disulfide-linked dimer of a single-chain antibody fragment against human CD47 induces apoptosis in lymphoid malignant cells via the hypoxia inducible factor-1a pathway

Morihiko Sagawa, et al.
Source: Cancer Science Volume 102, Issue 6, Article first published online: 3 MAY 2011

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Human responses against HER-2-positive cancer cells in human immune system-engrafted mice

C De Giovanni, et al.
Source: British Journal of Cancer advance online publication 28 August 2012; doi: 10.1038/bjc.2012.394

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JAK-STAT and AKT pathway-coupled genes in erythroid progenitor cells through ontogeny

Vladan P Cokic, et al.
Source: Cokic et al. Journal of Translational Medicine 2012, 10:116

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15-deoxy-Δ12,14 prostaglandin J2-induced heme oxygenase-1 in megakaryocytes regulates thrombopoiesis

Jamie J. O’Brien, et al.
Source: J Thromb Haemost. 2009 January ; 7(1): 182. doi:10.1111/j.1538-7836.2008.03191.x.

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The Minimal Instrumentation Requirements for Hoechst Side Population Analysis: Stem Cell Analysis on Low-Cost Flow Cytometry Platforms

RAQUEL CABANA, et al.
Source: STEMCELLS 2006;24:2573–2581

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RGS18 is a myeloerythroid lineage-specific regulator of G-protein-signalling molecule highly expressed in megakaryocytes

David YOWE, et al.
Source: Biochem. J. (2001) 359, 109±118 (Printed in Great Britain)

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Preclinical characterization of Aurora kinase inhibitor R763/ AS703569 identiWed through an image-based phenotypic screen

John McLaughlin, et al.
Source: J Cancer Res Clin Oncol (2010) 136:99–113

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