Stem Cells

Includes embryonic stem cells, somatic stem cells of various species, and their genetically modified derivatives.
Mesenchymal Stem Cells
Mesenchymal stem cells (MSCs) are multipotent stem cells that can differentiate into a variety of cell types, including osteocytes, adipocytes, and chondrocytes. In addition, MSCs amplify quickly and are capable of generating a local immunosuppressive microenvironment, which contributes to their wide applications in tissue engineering, cell therapy and gene therapy.
Cyagen's OriCellTM Mesenchymal Stem Cells are derived from healthy human or qualified animals' bone marrow, cultured as a monolayer, and cryopreserved at the second passage. These cells express specific clusters of differentiation proteins for MSCs, and have a strong capacity for self-renewal while maintaining their multipotency. To ensure the highest quality to our customers, these cells have been tested negative for bacteria, fungi, and mycoplasma.
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Embryonic Stem Cells
Embryonic stem cells (ESCs) are pluripotent cells derived from the inner cell mass of the blastocyst. Unlike other stem cells, ESCs are capable of self-renewal indefinitely. Because of their plasticity and potentially unlimited capacity for self-renewal, ES cell therapies have been proposed for regenerative medicine and tissue replacement.
Cyagen's OriCellTM Embryonic Stem Cells maintain diploid karyotype after extended passages in vitro. These cells express specific clusters of differentiation proteins for ESCs and have the ability to form embryoid bodies in vitro and teratomas in immune-deficient mice. To ensure the highest quality to our customers, these cells have been tested negative for bacteria, fungi, and mycoplasma.
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Mouse Embryonic Fibroblasts
Cyagen’s OriCellTM Mouse Embryonic Fibroblasts are derived from strain ICR mouse embryos (12.5 dpc) and cultured as a monolayer for one passage in OriCellTM Embryonic Fibroblast Growth Medium. At the first passage of culture, cells are cryopreserved after irradiation.
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Neural Stem Cells
Neural stem cells (NSCs) are multipotent stem cells that can differentiate into many neural cell types, including neurons, astrocytes and oligodendrocytes. NSCs have been isolated from various areas of the adult mouse or rat brain and non-neurogenic areas such as the spinal cord. NSCs are able to rebuild functional neural circuits, offering a potential treatment for brain tissue impairments, and have been widely studied in animal models for treating neuro-degenerative diseases, hereditary central nervous system diseases, stroke, and spinal cord injuries.
Cyagen’s OriCellTM Neural Stem Cells are derived from brain tissues of mouse or rat embryos (12.5 dpc), cultured as neurospheres, and cryopreserved at the second passage. These cells express specific clusters of differentiation proteins for NSCs and have a large capacity for self-renewal while maintaining multipotency. To ensure the highest quality to our customers, these cells have been tested negative for bacteria, fungi, and mycoplasma.
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Adipose-Derived Mesenchymal Stem Cells
Adipose-derived mesenchymal stem cells (ADSCs) are multipotent stem cells that can differentiate into a variety of cell types, including osteocytes, adipocytes, and chondrocytes. In addition, ADSCs have wide applications in tissue engineering, cell therapy, and gene therapy.
Cyagen OriCellTM Adipose-Derived Mesenchymal Stem Cells are derived from healthy human adipose tissue by liposuction or from the adipose tissue of qualified animals, cultured as a monolayer, and cryopreserved at the second passage. These cells express specific clusters of differentiation proteins for ADSCs and have a strong capacity for self-renewal while maintaining their multipotency. To ensure the highest quality to our customers, these cells have been tested negative for bacteria, fungi, and mycoplasma.
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Mesenchymal Stem Cells with GFP
Cyagen's OriCellTM Mesenchymal Stem Cells with GFP constitutively express GFP that are driven by the human EF-1α promoter or other promoters. They are derived from healthy human or qualified animal bone marrow, cultured as a monolayer, and then transfected with a GFP-expressing lentiviral construct. Alternatively, the cells are also derived from transgenic GFP-expressing mouse bone marrow. Cells were selected using hygromycin and verified for GFP expression. These cells express specific clusters of differentiation proteins for MSCs and have a strong capacity for self-renewal while maintaining multipotency. These fluorescent-protein-expressing cells are a valuable tool in cell tracing and in other kinds of in vitro and in vivo research. To ensure the highest quality to our customers, these cells have been tested negative for bacteria, fungi, and mycoplasma.
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Mesenchymal Stem Cells with RFP
Cyagen’s OriCellTM Mesenchymal Stem Cells with RFP constitutively express RFP that are driven by human EF-1α promotor or other promoters. They are derived from healthy human or qualified animal bone marrow, cultured as a monolayer, and then transfected with a RFP-expressing lentiviral construct. Alternatively these cells are also derived from transgenic RFP-expressing mouse bone marrow. Cells were selected using hygromycin, and were verified for RFP expression. These cells express specific clusters of differentiation proteins for MSCs and have a strong capacity for self-renewal while maintaining multipotency. These fluorescent-protein-expressing cells are a valuable tool in cell tracing and in other kinds of in vitro and in vivo research. To ensure the highest quality to our customers, these cells have been tested negative for bacteria, fungi, and mycoplasma.
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Adipose-Derived Mesenchymal Stem Cells with GFP
Cyagen’s OriCellTM Adipose-Derived Mesenchymal Stem Cells with GFP constitutively express GFP driven by human EF-1α promoter or other promoters. They are derived from the inguen adipose tissues of healthy human or qualified animals, cultured as a monolayer, and then transfected with a GFP-expressing lentiviral construct. Alternatively these cells are derived from transgenic GFP-expressing mouse inguen adipose tissue. These cells express specific clusters of differentiation proteins for ADSCs and have a strong capacity for self-renewal while maintaining multipotency. These fluorescent-protein-expressing cells are a valuable tool in cell tracing and in other kinds of in vitro and in vivo research. To ensure the highest quality to our customers, these cells have been tested negative for bacteria, fungi and mycoplasma.
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Embryonic Stem Cells with GFP
Cyagen’s OriCellTM Embryonic Stem Cells with GFP constitutively express GFP driven by the human EF-1α promoter. These cells are transfected with a GFP-expressing lentiviral construct. These cells express specific clusters of differentiation proteins for ESCs and are capable of forming embryoid bodies and developing teratomas in nude mice. They maintain diploid karyotype after extended passages in vitro. These fluorescent-protein-expressing cells are a valuable tool in cell tracing and in other kinds of in vitro and in vivo research. To ensure the highest quality to our customers, these cells have been tested negative for bacteria, fungi, and mycoplasma.
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Neural Stem Cells with GFP
Cyagen’s OriCellTM Neural Stem Cells with GFP constitutively express GFP driven by the human EF-1α promoter. They are derived from transgenic GFP-expressing mouse brain tissues. These cells express specific clusters of differentiation proteins for NSCs and have a strong capacity for self-renewal while maintaining multipotency. These fluorescent-protein-expressing cells are a valuable tool in cell tracing and in other kinds of in vitro and in vivo research.To ensure the highest quality to our customers, these cells have been tested negative for bacteria, fungi, and mycoplasma.
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Embryonic Stem Cells with RFP
Cyagen’s OriCellTM Embryonic Stem Cells with RFP constitutively express RFP driven by the human EF-1α promoter. These cells are transfected with a RFP-expressing lentiviral construct. These cells express specific clusters of differentiation proteins for ESCs, and are capable of forming embryoid bodies in vitro and developing teratomas in nude mice. They maintain diploid karyotype after extended passages in vitro. These fluorescent-protein-expressing cells are a valuable tool in cell tracing and in other kinds of in vitro and in vivo research. To ensure the highest quality to our customers, these cells have been tested negative for bacteria, fungi, and mycoplasma.
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Other Stem Cells
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