Stem Cell Culture Media

R&D Systems Methylcellulose Stock Solution

For the growth and differentiation of human, mouse, and rat hematopoietic stem cells using Iscove's Modified Dulbecco's Media

R&D Systems Human Methylcellulose Base Media

Defined media for human hematopoietic stem cell growth and differentiation

R&D Systems Human Methylcellulose Serum-Free Base Media

Defined media for human hematopoietic stem cell growth and differentiation

R&D Systems CellXVivo Human Monocyte-derived DC Differentiation Kit

For the differentiation of monocyte-derived dendritic cells

R&D Systems Human Methylcellulose Complete Media

For the differentiation and enumeration of human hematopoietic stem cells, optimized with cytokines

R&D Systems Human Methylcellulose Complete Media Without Epo

For the differentiation and enumeration of granulocyte-macrophage progenitor cells and for detection of Epo-independent erythropoiesis, optimized with cytokines

R&D Systems StemXVivo Serum-Free Dendritic Cell Base Media

Pre-optimized base media for successful dendritic cell culture

R&D Systems Mouse Embryonic Fibroblast (MEF) Conditioned Media

Conditioned media to support growth and maintain the pluripotency of embryonic and induced pluripotent stem cells

R&D Systems StemXVivo Serum-Free MSC Freezing Media

Freezing media for human, mouse or rat MSC cryopreservation

R&D Systems Human Methylcellulose Enriched Media

Complete media with G-CSF and IL-6 for the differentiation and enumeration of CD34+ human hematopoietic stem cells

R&D Systems StemXVivo Mesenchymal Stem Cell Expansion Media

A complete, fetal bovine serum-containing media formulated and optimized for the maintenance and expansion of purified human, mouse and rat MSCs

R&D Systems StemXVivo Adipogenic Supplement

Media supplement to induce the differentiation of human, mouse or rat MSCs into adipocytes

R&D Systems Human/Mouse Dopaminergic Neuron Differentiation Kit

Optimized to efficiently differentiate pluripotent cells into dopaminergic neurons under serum-free conditions

R&D Systems StemXVivo™ Cardiomyocyte Differentiation Kit

Used for drug toxicity and small molecule screening.

R&D Systems StemXVivo Human/Mouse Chondrogenic Supplement

Media supplement to induce the differentiation of MSCs into chondrocytes

R&D Systems StemXVivo EMT Inducing Media Supplement

To reliably induce epithelial to mesenchymal transition (EMT) in vitro

R&D Systems Human Methylcellulose Serum-Free Enriched Media

Complete, defined media for the differentiation and enumeration of human hematopoietic stem cells

R&D Systems Rat Methylcellulose Complete Media Without Epo

Complete media for the differentiation and enumeration of rat colony-forming myeloid progenitors (CFU-GM) and for the identification of Epo-independent erythropoiesis

R&D Systems N-2 Plus Media Supplement

To culture neural progenitor cells and their differentiated derivatives under defined, serum-free conditions

R&D Systems StemXVivo Serum-Free Human MSC Expansion Media

A complete media formulated and optimized for the maintenance and expansion of purified human MSCs

R&D Systems StemXVivo Serum-Free Human T Cell Base Media

Pre-optimized for ex vivo culture of human T lymphocytes

R&D Systems StemXVivo Xeno-Free Human MSC Expansion Media

Optimized for the expansion of human mesenchymal stem cells

R&D Systems StemXVivo Chondrogenic Base Media

Base media for the differentiation of MSCs into chondrocytes

Corning NutriStem™ hPSC XF Medium

Supports long-term culture of human pluripotent stem cells

Corning™ Intestinal Epithelium Differentiation Medium

Promotes the rapid differentiation of intestinal epithelium in vitro

R&D Systems StemXVivo Methylcellulose Concentrate

For the growth and differentiation of human, mouse and rat hematopoietic stem cells using Iscove'ss Modified Dulbecco's Media or any other basal media

R&D Systems StemXVivo Serum-Free Tumorsphere Media

Semisolid media formulated and optimized for tumorsphere formation

R&D Systems StemXVivo Mouse/Rat Osteogenic Supplement

Media supplement to induce the differentiation of mouse or rat MSCs into osteocytes

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