Effect of Notch Signaling Pathway on Differentiation of Mouse Embryonic Stem Cells into Hematopoietic Stem Cells or Hematopoietic Progenitor Cells by VEGF

To investigate the effect of Notch signaling pathways on differentiation of mouse embryonic stem cells(ESC) into haematopoietic stem cells or haematopoietic progenitors cells(HSC/HPC). Mouse embryonic stem cells were proliferated in vitro to form embryoid bodies; the differentiation of embryoid bodi...

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Published inZhongguo shi yan xue ye xue za zhi Vol. 26; no. 6; p. 1780
Main Authors Song, Bo, Chen, Ri-Ling, Liao, Feng-Ling
Format Journal Article
LanguageChinese
Published China 01.12.2018
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Abstract To investigate the effect of Notch signaling pathways on differentiation of mouse embryonic stem cells(ESC) into haematopoietic stem cells or haematopoietic progenitors cells(HSC/HPC). Mouse embryonic stem cells were proliferated in vitro to form embryoid bodies; the differentiation of embryoid bodies should be induced in vitro, the experiments were divided into BE, control, VEGF, DAPT and VEGF-DAPT groups; HSC/HPC ohenotype: CD117 D34 Sca1 was detected by flow cytometry; the related gene expression was detected by RT-PCR. The number of VEGF-induced HSC/HPC in VEGF group was significantey higher than that in the control and EB group (P<0.05), suggesting that VEGF promotes ESC differentiation to HSC/HPC; the number of DAPT-induced HSC/HPC in DAPT group was significanty higher than that in the Control and EB groups(P<0.05), suggesting that DAPT promotes ESC differentiation to HSC/HPC; the number of VEGF+DAPT-induced HSC/HPC in VEGF-DAPT group was significantly higher than that in VEGF and DAPT groups(P<0.05), s
AbstractList To investigate the effect of Notch signaling pathways on differentiation of mouse embryonic stem cells(ESC) into haematopoietic stem cells or haematopoietic progenitors cells(HSC/HPC). Mouse embryonic stem cells were proliferated in vitro to form embryoid bodies; the differentiation of embryoid bodies should be induced in vitro, the experiments were divided into BE, control, VEGF, DAPT and VEGF-DAPT groups; HSC/HPC ohenotype: CD117 D34 Sca1 was detected by flow cytometry; the related gene expression was detected by RT-PCR. The number of VEGF-induced HSC/HPC in VEGF group was significantey higher than that in the control and EB group (P<0.05), suggesting that VEGF promotes ESC differentiation to HSC/HPC; the number of DAPT-induced HSC/HPC in DAPT group was significanty higher than that in the Control and EB groups(P<0.05), suggesting that DAPT promotes ESC differentiation to HSC/HPC; the number of VEGF+DAPT-induced HSC/HPC in VEGF-DAPT group was significantly higher than that in VEGF and DAPT groups(P<0.05), s
Author Song, Bo
Liao, Feng-Ling
Chen, Ri-Ling
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  givenname: Bo
  surname: Song
  fullname: Song, Bo
  organization: Department of Pediatrics, Guangdong Medical University,Guangdong Province, China
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  givenname: Ri-Ling
  surname: Chen
  fullname: Chen, Ri-Ling
  email: chenrl319@163.com
  organization: Medical center of Pediatrics, the Affiliated Hospital of Guangdong Medical University, Zhanjiang 524023, Guangdong Province, China.E-mail: chenrl319@163.com
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  givenname: Feng-Ling
  surname: Liao
  fullname: Liao, Feng-Ling
  organization: Medical center of Pediatrics, the Affiliated Hospital of Guangdong Medical University, Zhanjiang 524023, Guangdong Province, China
BackLink https://www.ncbi.nlm.nih.gov/pubmed/30501720$$D View this record in MEDLINE/PubMed
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Title Effect of Notch Signaling Pathway on Differentiation of Mouse Embryonic Stem Cells into Hematopoietic Stem Cells or Hematopoietic Progenitor Cells by VEGF
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