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Creative Biolabs

Neural Progenitor Cell Products

Neural progenitor cells (NPCs) are progenitor cells that have the ability to proliferate and differentiate into more than one cell type. Unlike neural stem cells, NPCs exist in the CNS of developing embryos as well as newborns and mature adult brains; therefore, they are not strictly embryonic stem cells. A distinctive feature of neural progenitor cells is that they have limited proliferation capacity, do not produce non-nerve cells, and will not exhibit self-renewal. NPCs can be produced in vitro by differentiating embryonic stem cells or induced pluripotent stem cells (iPSC).

Neural Progenitor Cell Lines

Creative Biolabs now offers a series of new neural lineage progenitor cells derived from control human iPSC using a non-integrated epigenetic-based differentiation method. In addition, we also provide optimized media and kits for your in-house work on expanding and differentiating NPCs into high-quality neural lineage cells.

We offer various kits and media for different research needs. To order the best media system for your NPCs, please select the appropriate tab below.

For Research Use Only. Not For Clinical Use.

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Progenitors

Host Species:
Mouse
Species Reactivity:
Human
Applications:
IHC; IF

Low-insulin, animal component-free medium for the differentiation of human ES and iPS cells

Applications:
Cell Differentiation
Cell Types:
iPSC; Embryonic Stem Cell

For the generation of microglia from human ES and iPS cell-derived microglia precursors

Applications:
Cell Differentiation
Cell Types:
Microglia; iPSC
NeuroDiff™ Hematopoietic Kit [CAT#: NCC200627ZP]

For differentiation of human ES or iPS cells into hematopoietic progenitor cells

Applications:
Cell Differentiation
Cell Types:
iPSC; Embryonic Stem Cell

For the generation of microglia precursors from human ES and iPS cell-derived hematopoietic progenitor cells

Applications:
Cell Differentiation
Cell Types:
Microglia; iPSC

For the differentiation of human ES and iPS cells to definitive endoderm.

Applications:
Cell Differentiation
Cell Types:
iPSC; Embryonic Stem Cell

For differentiation of human PSCs to cardiomyocytes and long-term maintenance of human PSC-derived cardiomyocytes

Applications:
Cell Differentiation
Cell Types:
iPSC; Embryonic Stem Cell

For thawing and culturing hPSC-derived cardiomyocytes

Applications:
Cell Culture
Cell Types:
iPSC; Embryonic Stem Cell

For dissociation of hPSC-derived cardiomyocytes

Applications:
Cell Dissociation
Cell Types:
iPSC; Embryonic Stem Cell

For long-term maintenance of human PSC-derived cardiomyocytes

Applications:
Cell Culture; Cell Maintenance
Cell Types:
iPSC; Embryonic Stem Cell

For cryopreserving hPSC-derived cardiomyocytes

Applications:
Cell Culture
Cell Types:
iPSC; Embryonic Stem Cell

Serum-free neurophysiological basal medium for improved neuronal live imaging and function

Applications:
Cell Culture
Cell Types:
Neural Stem Cell; Neural Progenitor Cell; Neural Lineage Cell

Serum-free neural supplement without antioxidants

Applications:
Cell Culture; Cell Differentiation
Cell Types:
Neural Stem Cell; Neural Progenitor Cell

Serum-free neural supplement without insulin

Applications:
Cell Culture; Cell Differentiation
Cell Types:
Neural Stem Cell; Neural Progenitor Cell

Supplement for the serum-free culture of primary tissue-derived neurons and hPSC-derived neural progenitor cells

Applications:
Cell Culture; Cell Differentiation
Cell Types:
Neural Stem Cell; Neural Progenitor Cell; iPSC; Neuron
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