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  1. popular TempoCal™-control cells image1

    TempoCal™-Rapid: Calcium Biosensor Assay using Immortalized Human Neuroepithelial Cells

    $595.00

    TempoCal™ is a calcium biosensor that responds as a fluorescent reporter: 605nm-625nm fluorescent range (Excitation/Emission=610nm/625nm) . It is incorporated into Tempo's proprietary immortalized human cell line, TempoRapid™. TempoCal™-control cells serve as a control for all products containing the TempoCal™ biosensor. This product can be used for single-cell applications, as well as medium to high-throughput screening platforms.

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  2. popular iNStem(TM) induced neural progenitor cells. Immunocytochemistry with anti-Vimentin antibodies.

    Tempo-iNStem™: Human iPS-derived Neural Progenitor Cells

    $750.00

    Out of stock

    Neural stem cells are self-renewing, multipotent cells that can generate neurons and glial-specific cellular lineages. Primarily, neural stem cells differentiate into neurons, astrocytes, and oligodendrocytes. Neural progenitor cells are adult stem cells committed to their neural and glial lineages.

    Tempo-iNStem™ cells are induced neural progenitor cells reprogrammed from human fibroblasts or blood cells using proprietary foot-print-free stem cell technologies. iNStem™ cells are cryopreserved at low passage numbers. Each vial will maintain 5 subsequent passages and expansions without spontaneous differentiations. Cells have been tested to be able to differentiate into multiple neural and glial subtypes. Each vial contains >1 x 10cells. iNStem™  cells are characterized via standard morphological examinations and via immunocytochemistry methods against known marker proteins (such as Vimentin).

    Academic scientists receive a special rate!

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  3. popular iAstro (TM) human astrocytes, light transmission

    Tempo-iAstro™: Human iPS-derived Astrocytes

    $775.00

    Astrocytes, also known as Astroglia, belong to the family of glial cells in the human central and peripheral nervous system. They have been shown to have central roles in the maintenance of neuronal metabolism and neurotransmitter synthesis. They have been implicated in many human neurodegenerative disorders such as multiple sclerosis, amyotrophic lateral sclerosis (ALS), Alzheimer’s disorder, Huntington’s disease and Parkinson’s disease.

    Tempo’s iAstro™ cells are induced astrocytes reprogrammed from human fibroblasts or blood cells using proprietary stem cell reprogramming technologies. iAstro™ cells are cryopreserved at low passage numbers. Each vial contains >1 x 10cells. iAstro™ cells are characterized via standard morphological examinations and via immunocytochemistry methods against known marker proteins (such as GFAP and S100beta), and they exhibit calcium wave activities.

    Academic scientists receive a special rate!   Check out our new citations!

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  4. popular iOligo (O4 marker, Green)

    Tempo-iOligo™: Human iPS-derived Oligodendrocyte Progenitor Cells (OPCs)

    $895.00

    Oligodendrocytes belong to the family of glial cells in the human central and peripheral nervous system. They are multifunctional cells and are implicated in many disabling neurological disorders, including adult-onset demyelinating disorders, as well as leukodystrophies and cerebral palsy.

    Tempo’s iOligo™ are induced oligodendrocyte progenitors reprogrammed from human fibroblasts cells using proprietary foot-print-free stem cell technologies. iOligo™ cells are cryopreserved at low passage numbers. Each vial contains ~1.05 x 10cells. iOligo™ cells are characterized via standard morphological examinations and via immunocytochemistry methods against known marker proteins (such as O4, PDGFalphaR, NG2, and CNPase) and can be induced to express MBP upon T3 hormone induction.

    Academic scientists receive a special rate! Check out our new citations! 

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  5. TempoCal with 20uM Histamine and 20uM Carbachol stimulations

    TempoCal™-iNStem: Calcium Biosensor Assay using Human Neural Progenitor Cells

    $950.00

    TempoCalTM calcium biosensors are incorporated into human neural progenitor cells. They respond to intracellular calcium changes in the 605nm-625nm fluorescent range (Excitation/Emission = 610nm/625nm), measuring increases or decreases in cytosolic calcium concentrations. With excellent signal-to-noise ratios, these calcium biosensors can operate on second-to-minute scales. They can be used for single-cell applications, as well as medium to high-throughput screening platforms.

    Academic scientists receive a special rate!

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  6. Immunocytochemistry with anti-COX IV antibodies

    TempoMito™-iAstro: Mitochondrial Biosensor Assay using Human Astrocytes

    $950.00

    TempoMito™-iAstro cells contain mitochondrial biosensors in human iPS-derived astrocytes. Disruption of mitochondrial functions in human astrocytes has been implicated in Alzheimer's disorder and ischemia. Tempo's biosensor responds to mitochondrial calcium changes and reports in the 605nm-625nm fluorescent range (Excitation/Emission) as calcium levels increase or decrease. With excellent signal-to-noise ratios, these sensors can operate on second-to-minute scales. This tool provides an efficient way of detecting changes in the mitochondrial organelle and enables high-throughput screening approaches for drug discovery and toxicology screening. 

    Academic scientists receive a special rate!

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  7. TempoCal™-iAstro; 1mM CaCl2

    TempoCal™-iAstro: Calcium Biosensor Assay using Human Astrocytes

    $950.00

    TempoCal™-iAstro: Tempo’s calcium biosensors are incorporated into induced human astrocytes. They respond to intracellular calcium changes in the 605nm-625nm fluorescent range (Excitation/Emission=610nm/625nm). With excellent signal-to-noise ratios, these biosensors operate on second-to-minute scales.

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  8. popular TempoMito responses2

    TempoMito™-iNStem: Mitochondrial Biosensor Assay using Human Neural Progenitors

    $950.00

    TempoMito™-iNStem cells comprise mitochondrial biosensors incorporated into human iPS-derived neural progenitor cells. Mitochondrial dysfunctions have been implicated in human neurological and psychiatric disorders, and neural progenitor cells have been used as a cellular model. Tempo's biosensor responds to mitochondrial calcium changes and reports in the 605nm-625nm fluorescent range (Excitation/Emission) as calcium levels increase or decrease. With excellent signal-to-noise ratios, these sensors can operate on second-to-minute scales. This tool provides an efficient way of detecting changes in the mitochondrial organelle and enables high-throughput screening approaches for drug discovery and toxicology screening.

    Academic scientists receive a special rate!

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  9. popular Tempo-iMSC, monolayer, 9 days post-thaw

    Tempo-iMSC™: Human iPS-derived Mesenchymal Stem Cells

    $695.00

    Mesenchymal stem cells ("MSCs") are non-haematopoietic, multipotent multipotent stromal stem cells that can differentiate into a variety of cell types, including: osteoblasts, chondrocytes, myocytes, and adipocytes. MSCs express cell surface markers such as CD73, CD90, CD166, and CD105, in addition to Oct4 and Nanog. Tempo-iMSC™ are human iPS-derived mesenchymal stem cells. NEW! For scientists working on exosomes, please contact us for conditional media for exosome extractions and biomarker validations.

    Academic scientists receive a special rate!

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  10. popular Tempo-iRPE; immunocytochemistry, anti-human-RPE65 (ThermoFisher)

    Tempo-iRPE™: human iPS-derived retinal pigment epithelial cells

    $675.00

    Retinal pigment epithelium (RPE) is the pigmented cell layer surrounding the neurosensory retina. The cells support the retinal visual cells, and they are attached to the underlying choroid and overlying retinal visual cells. The RPE has several functions: light absorption, epithelial transport, spatial ion buffering, visual cycle, phagocytosis, secretion and immune modulation. Tempo-iRPETM are human iPS-derived retinal pigment epithelial cells. They express biomarkers such as RPE-65, RLBP1, and BEST.

    Academic scientists receive a special rate!

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