跳转至内容
Merck
CN
  • The negative impact of Wnt signaling on megakaryocyte and primitive erythroid progenitors derived from human embryonic stem cells.

The negative impact of Wnt signaling on megakaryocyte and primitive erythroid progenitors derived from human embryonic stem cells.

Stem cell research (2014-01-15)
Prasuna Paluru, Kristin M Hudock, Xin Cheng, Jason A Mills, Lei Ying, Aline M Galvão, Lin Lu, Amita Tiyaboonchai, Xiuli Sim, Spencer K Sullivan, Deborah L French, Paul Gadue
摘要

The Wnt gene family consists of structurally related genes encoding secreted signaling molecules that have been implicated in many developmental processes, including regulation of cell fate and patterning during embryogenesis. Previously, we found that Wnt signaling is required for primitive or yolk sac-derived-erythropoiesis using the murine embryonic stem cell (ESC) system. Here, we examine the effect of Wnt signaling on the formation of early hematopoietic progenitors derived from human ESCs. The first hematopoietic progenitor cells in the human ESC system express the pan-hematopoietic marker CD41 and the erythrocyte marker, glycophorin A or CD235. We have developed a novel serum-free, feeder-free, adherent differentiation system that can efficiently generate large numbers of CD41+CD235+ cells. We demonstrate that this cell population contains progenitors not just for primitive erythroid and megakaryocyte cells but for the myeloid lineage as well and term this population the primitive common myeloid progenitor (CMP). Treatment of mesoderm-specified cells with Wnt3a led to a loss of hematopoietic colony-forming ability while the inhibition of canonical Wnt signaling with DKK1 led to an increase in the number of primitive CMPs. Canonical Wnt signaling also inhibits the expansion and/or survival of primitive erythrocytes and megakaryocytes, but not myeloid cells, derived from this progenitor population. These findings are in contrast to the role of Wnt signaling during mouse ESC differentiation and demonstrate the importance of the human ESC system in studying species-specific differences in development.

材料
Product Number
品牌
产品描述

Sigma-Aldrich
碳酸氢钠, ACS reagent, ≥99.7%
Sigma-Aldrich
碳酸氢钠, powder, BioReagent, Molecular Biology, suitable for cell culture, suitable for insect cell culture
Sigma-Aldrich
碳酸氢钠, ReagentPlus®, ≥99.5%, powder
Sigma-Aldrich
L -抗坏血酸, powder, suitable for cell culture, γ-irradiated
Sigma-Aldrich
L -抗坏血酸, BioXtra, ≥99.0%, crystalline
Sigma-Aldrich
L -抗坏血酸, suitable for cell culture, suitable for plant cell culture, ≥98%
Sigma-Aldrich
L -抗坏血酸, 99%
Sigma-Aldrich
丙酮酸钠, powder, BioReagent, suitable for cell culture, suitable for insect cell culture, ≥99%
Sigma-Aldrich
L -抗坏血酸, reagent grade, crystalline
Supelco
维生素C, Pharmaceutical Secondary Standard; Certified Reference Material
Sigma-Aldrich
丙酮酸钠, ReagentPlus®, ≥99%
Sigma-Aldrich
碳酸氢钠, anhydrous, free-flowing, Redi-Dri, ACS reagent, ≥99.7%
Sigma-Aldrich
碳酸氢钠, puriss., meets analytical specification of Ph. Eur., BP, USP, FCC, E500, 99.0-100.5%, powder
USP
抗坏血酸, United States Pharmacopeia (USP) Reference Standard
Sigma-Aldrich
L -抗坏血酸, ACS reagent, ≥99%
Supelco
L -抗坏血酸, analytical standard
Sigma-Aldrich
L -抗坏血酸, meets USP testing specifications
Sigma-Aldrich
碳酸氢钠, BioXtra, 99.5-100.5%
Sigma-Aldrich
L -抗坏血酸, reagent grade
Sigma-Aldrich
丙酮酸钠, powder, BioXtra, suitable for mouse embryo cell culture
USP
碳酸氢钠, United States Pharmacopeia (USP) Reference Standard
Sigma-Aldrich
丙酮酸钠, Hybri-Max, powder, suitable for hybridoma
Sigma-Aldrich
L -抗坏血酸, puriss. p.a., ACS reagent, reag. ISO, Ph. Eur., 99.7-100.5% (oxidimetric)
Sigma-Aldrich
L -抗坏血酸, FCC, FG
Sigma-Aldrich
L -抗坏血酸, BioUltra, ≥99.5% (RT)
维生素C, European Pharmacopoeia (EP) Reference Standard
Sigma-Aldrich
碳酸氢钠, anhydrous, free-flowing, Redi-Dri, ReagentPlus®, ≥99.5%
Sigma-Aldrich
L -抗坏血酸, puriss. p.a., ≥99.0% (RT)
Sigma-Aldrich
碳酸氢钠, −40-+140 mesh, ≥95%
Sigma-Aldrich
丙酮酸钠, BioXtra, ≥99%