TeSR™e6

定义,无血清,无异种培养基的多能干细胞

产品号 #(选择产品)

产品号 #05946_C

定义,无血清,无异种培养基的多能干细胞

产品组分包括

  • TeSR™-E5/E6基础培养基,475 mL
  • TeSR™-E6 20X补充剂,25 mL

概述

TeSR™- e6是一种明确的、无血清和无xeno培养基,基于TeSR™- e8™配方,但不含转化生长因子β (TGF-β)或碱性成纤维细胞生长因子(bFGF)。它可以用作人类胚胎干细胞(ES)和诱导多能干细胞(iPS)细胞分化的基础培养基,或用于需要去除上述细胞因子的其他应用。

Subtype
Specialized Media
 
Cell Type
Pluripotent Stem Cells
 
Species
Human
 
Application
Cell Culture, Characterization, Differentiation
 
Brand
TeSR
 
Area of Interest
Drug Discovery and Toxicity Testing, Stem Cell Biology
 
Formulation Category
Serum-Free, Xeno-Free
 

Protocols and Documentation

Find supporting information and directions for use in the Product Information Sheet or explore additional protocols below.

Document Type
Product Name
Catalog #
Lot #
Language
Product Name
TeSR™-E6
Catalog #
05946
Lot #
All
Language
English
Document Type
Safety Data Sheet 1
Product Name
TeSR™-E6
Catalog #
05946
Lot #
All
Language
English
Document Type
Safety Data Sheet 2
Product Name
TeSR™-E6
Catalog #
05946
Lot #
All
Language
English

Applications

This product is designed for use in the following research area(s) as part of the highlighted workflow stage(s). Explore these workflows to learn more about the other products we offer to support each research area.

Resources and Publications

Educational Materials (5)

Publications (1)

α-Ketoglutarate Accelerates the Initial Differentiation of Primed Human Pluripotent Stem Cells. TeSlaa T et al. Cell metabolism 2016 SEP

Abstract

Pluripotent stem cells (PSCs) can self-renew or differentiate from naive or more differentiated, primed, pluripotent states established by specific culture conditions. Increased intracellular α-ketoglutarate (αKG) was shown to favor self-renewal in naive mouse embryonic stem cells (mESCs). The effect of αKG or αKG/succinate levels on differentiation from primed human PSCs (hPSCs) or mouse epiblast stem cells (EpiSCs) remains unknown. We examined primed hPSCs and EpiSCs and show that increased αKG or αKG-to-succinate ratios accelerate, and elevated succinate levels delay, primed PSC differentiation. αKG has been shown to inhibit the mitochondrial ATP synthase and to regulate epigenome-modifying dioxygenase enzymes. Mitochondrial uncoupling did not impede αKG-accelerated primed PSC differentiation. Instead, αKG induced, and succinate impaired, global histone and DNA demethylation in primed PSCs. The data support αKG promotion of self-renewal or differentiation depending on the pluripotent state.

更多信息

更多信息
Species Human
Formulation Category Serum-Free, Xeno-Free
Legal Statement: This product was developed under license to intellectual property owned by WiCell™ Research Institute. This product is sold for research use only (whether the buyer is an academic or for-profit entity) under a non-transferable, limited-use license. Purchase of this product does not include the right to sell, use or otherwise transfer this product for commercial purposes (i.e., any activity undertaken for consideration, such as use of this product for manufacturing, or resale of this product or any materials made using this product, or use of this product or any materials made using this product to provide services) or clinical use (i.e., administration of this product or any material using this product to humans) or the right to implant any material made using this product into an animal by, or in collaboration with, a for-profit entity, for purposes other than basic pre-clinical research applications (including without limitation teratoma assays) to validate the function of the cells. Purchasers who do not agree to the terms and conditions set forth above should return the product in acceptable conditions to the seller for a refund. PRODUCTS ARE FOR RESEARCH USE ONLY AND NOT INTENDED FOR HUMAN OR ANIMAL DIAGNOSTIC OR THERAPEUTIC USES UNLESS OTHERWISE STATED. FOR ADDITIONAL INFORMATION ON QUALITY AT STEMCELL, REFER TO WWW.STEMCELL.COM/COMPLIANCE.
版权 © 2025 STEMCELL Technologies 技术有限公司。保留所有权利。