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MR-004-D EmbryoMax® Acidic Tyrode's Solution

MR-004-D
50 mL  
Purchase on Sigma-Aldrich

Descripción

Replacement Information

Tabla espec. clave

Key Applications
Cult, Embryo Culture
Description
Catalogue NumberMR-004-D
Trade Name
  • Embryomax
  • Specialty Media
DescriptionEmbryoMax® Acidic Tyrode's Solution
OverviewThis solution is designed for the removal of Zonae pellucidae from mouse oocytes.
References
Product Information
Quality LevelMQ300
Applications
ApplicationThe EmbryoMax Acidic Tyrode's Solution is available in a 50 mL format and has been optimized and validated for Embryo Culture.
Key Applications
  • Stem Cell Culture
  • Embryo Culture
Biological Information
Media FormLiquid
Stem Cell Type
  • Mouse Embryos
Physicochemical Information
Dimensions
Materials Information
Toxicological Information
Safety Information according to GHS
Safety Information
Product Usage Statements
Usage Statement
  • Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
Storage and Shipping Information
Storage ConditionsStore at -20°C upto 2 months & 1 day
Packaging Information
Material Size50 mL
Transport Information
Supplemental Information
Specifications
Global Trade Item Number
Número de referencia GTIN
MR-004-D 04053252504600

Documentation

EmbryoMax® Acidic Tyrode's Solution Ficha datos de seguridad (MSDS)

Título

Ficha técnica de seguridad del material (MSDS) 

Referencias bibliográficas

Visión general referenciasPub Med ID
Radical acceleration of nuclear reprogramming by chromatin remodeling with the transactivation domain of MyoD.
Hirai, Hiroyuki, et al.
Stem Cells, 29: 1349-61 (2011)  2010

Mostrar resumen
21732495 21732495

Licencias necesarias e Información técnica

Cargo
The Genetically Modified Mouse: An Indispensable Tool for Disease Modeling