Human Mesenchymal Stem Cells (hMSC)

Primary Human Mesenchymal Stem Cells. Available from adipose tissue, bone marrow and umbilical cord matrix.

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Selected product Human Mesenchymal Stem Cells (hMSC)

umbilical cord matrix hMSC, cryopreserved 500,000 cells

umbilical cord matrix hMSC, proliferating 500,000 cells

bone marrow hMSC, cryopreserved 500,000 cells

bone marrow hMSC, proliferating 500,000 cells

adipose tissue hMSC, cryopreserved 500,000 cells

adipose tissue hMSC, proliferating 500,000 cells

bone marrow hMSC, cell pellet in RNAlater 1,000,000 cells

umbilical cord matrix hMSC, cell pellet in RNAlater 1,000,000 cells

adipose tissue hMSC, cell pellet in RNAlater 1,000,000 cells

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Mesenchymal Stem Cells (MSC), also termed Mesenchymal Stromal Cells, are multipotent cells that can differentiate into a variety of cell types and have the capacity for self renewal. MSC have been shown to differentiate in vitro or in vivo into adipocytes, chondrocytes, osteoblasts, myocytes, neurons, hepatocytes, and pancreatic islet cells. Optimized standard and GMP compliant media are available to support both the growth of MSC and their differentiation into several different lineages. Recent experiments suggest that differentiation capabilities into diverse cell types vary between MSC of different origin.

Our hMSC are harvested from normal human adipose tissue, bone marrow, and umbilical cord matrix (Wharton’s jelly) of individual donors.

The cells are tested for their ability to differentiate in vitro into adipocytes, chondrocytes, and osteoblasts. Our hMSC show a verified marker expression profile that complies with ISCT* recommendations, providing well characterized cells.

*ISCT (International Society for Cellular Therapy) Cytotherapy (2006) Vol. 8, No. 4, 315-317

NEW:

Available formats:

  • Cryopreserved: Cryogenic vial containing 500.000 viable cells.
  • Proliferating: >500.000 viable cells shipped in growth medium (T75 flask).
  • Cell pellet: 1 million cells dissolved in 200µl RNAlater© for subsequent RNA, DNA or protein analysis. Cell pellets cannot be revived.
Recommended plating density 4,000 cells per cm2
Passage after thawing P2
Tested Markers Differentiation capacity to adipogenic, osteogenic and chondrognic cells tested, CD105 positive, CD73 positive, CD90 positive, CD45 negative, CD34 negative, CD14 negative, CD19 negative, HLA-DR negative
Guaranteed population doubling > 10
human-mesenchymal-stem-cell-culture-from-bone-marrow-undifferentiated-in-growth-medium
Figure 1. Human Mesenchymal Stem Cell Culture isolated from bone marrow in MSC Growth Medium in phase contrast.
human-mesenchymal-stem-cell-culture-from-bone-marrow-undifferentiated-in-growth-medium
Figure 1. Human Mesenchymal Stem Cell Culture isolated from bone marrow in MSC Growth Medium in phase contrast.
Human Mesenchymal Stem Cell Culture from Bone Marrow undifferentiated in growth medium
Figure 2. Human Mesenchymal Stem Cell Culture isolated from bone marrow in MSC Growth Medium DXF in phase contrast.
Human Mesenchymal Stem Cell Culture from Bone Marrow undifferentiated in growth medium
Figure 2. Human Mesenchymal Stem Cell Culture isolated from bone marrow in MSC Growth Medium DXF in phase contrast.
human-mesenchymal-stem-cell-culture-from-adipose-tissue-undifferentiated-in-growth-medium
Figure 3. Human Mesenchymal Stem Cell Culture isolated from adipose tissue in MSC Growth Medium in phase contrast.
human-mesenchymal-stem-cell-culture-from-adipose-tissue-undifferentiated-in-growth-medium
Figure 3. Human Mesenchymal Stem Cell Culture isolated from adipose tissue in MSC Growth Medium in phase contrast.
Human Mesenchymal Stem Cell Culture From Bone Marrow Differentiated into adipocytes
Figure 4. hMSC-BM after in vitro differentiation into adipocytes using PromoCell Mesenchymal Stem Cell Adipogenic Differentiation Medium.
Human Mesenchymal Stem Cell Culture From Bone Marrow Differentiated into adipocytes
Figure 4. hMSC-BM after in vitro differentiation into adipocytes using PromoCell Mesenchymal Stem Cell Adipogenic Differentiation Medium.
Human Mesenchymal Stem Cell Culture From Bone Marrow Differentiated into cartilage
Figure 5. hMSC-BM spheroid after in vitro differentiation into cartilage using PromoCell Mesenchymla Stem Cell Chondrogenic Differentiation Medium (Alcian Blue Staining).
Human Mesenchymal Stem Cell Culture From Bone Marrow Differentiated into cartilage
Figure 5. hMSC-BM spheroid after in vitro differentiation into cartilage using PromoCell Mesenchymla Stem Cell Chondrogenic Differentiation Medium (Alcian Blue Staining).
Human Mesenchymal Stem Cell Culture from Bone Marrow differentiated into osteoblasts
Figure 6. hMSC-BM after in vitro differentiation into osteoblasts using PromoCell Mesenchymal Stem Cell Osteogenic Differentiation Medium (Alizarin Red S staining).
Human Mesenchymal Stem Cell Culture from Bone Marrow differentiated into osteoblasts
Figure 6. hMSC-BM after in vitro differentiation into osteoblasts using PromoCell Mesenchymal Stem Cell Osteogenic Differentiation Medium (Alizarin Red S staining).
Human Mesenchymal Stem Cell Culture from Bone Marrow differentiated into neuronal cells
Figure 7. hMSC-BM after in vitro differentiation into neuronal cells using PromoCell Mesenchymal Stem Cell Neurogenic Differentiation Medium.
Human Mesenchymal Stem Cell Culture from Bone Marrow differentiated into neuronal cells
Figure 7. hMSC-BM after in vitro differentiation into neuronal cells using PromoCell Mesenchymal Stem Cell Neurogenic Differentiation Medium.

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