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  • Qk045-0025

    规格:25(µg)

    Human NRG-1 (Neuregulin 1) protein is frequently used in the maintenance of human pluripotent stem cells. In addition to its widespread use in stem cell culture media, NRG-1 (also known as Heregulin-β1 , HRG-1) has essential roles in vivo including in nervous system, cardiac, and mammary gland development; cancer biology and neurological disorders. 7.5 kDa highly pure, bioactive domain of human NRG-1, comprised of the β isoform of the EGF-like domain of NRG-1 (HRG1-B1). This NRG-1 protein monomer is animal-free (AF) and carrier-protein free (CF).

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  • Qk042-1000

    规格:1000(µg)

    mouse FGF-2/bFGF protein is an important factor in the maintenance of mouse epiblast- derived stem cells (EpiSC). Mouse naïve pluripotency is maintained by LIF, BMP-4, and Wnt signalling pathways. However, the primed state of pluripotency in mouse EpiSCs is more similar to hESC and hiPSC, being maintained by FGF-2 and TGFβ/Activin/Nodal pathways. High purity and bioactivity 16 kDa murine bFGF / FGF-2 protein, animal-derived component free (ACDF) and carrier-protein free (CF).

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  • Qk042-0500

    规格:500(µg)

    mouse FGF-2/bFGF protein is an important factor in the maintenance of mouse epiblast- derived stem cells (EpiSC). Mouse naïve pluripotency is maintained by LIF, BMP-4, and Wnt signalling pathways. However, the primed state of pluripotency in mouse EpiSCs is more similar to hESC and hiPSC, being maintained by FGF-2 and TGFβ/Activin/Nodal pathways. High purity and bioactivity 16 kDa murine bFGF / FGF-2 protein, animal-derived component free (ACDF) and carrier-protein free (CF).

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  • Qk042-0100

    规格:100(µg)

    mouse FGF-2/bFGF protein is an important factor in the maintenance of mouse epiblast- derived stem cells (EpiSC). Mouse naïve pluripotency is maintained by LIF, BMP-4, and Wnt signalling pathways. However, the primed state of pluripotency in mouse EpiSCs is more similar to hESC and hiPSC, being maintained by FGF-2 and TGFβ/Activin/Nodal pathways. High purity and bioactivity 16 kDa murine bFGF / FGF-2 protein, animal-derived component free (ACDF) and carrier-protein free (CF).

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  • Qk042-0050

    规格:50(µg)

    mouse FGF-2/bFGF protein is an important factor in the maintenance of mouse epiblast- derived stem cells (EpiSC). Mouse naïve pluripotency is maintained by LIF, BMP-4, and Wnt signalling pathways. However, the primed state of pluripotency in mouse EpiSCs is more similar to hESC and hiPSC, being maintained by FGF-2 and TGFβ/Activin/Nodal pathways. High purity and bioactivity 16 kDa murine bFGF / FGF-2 protein, animal-derived component free (ACDF) and carrier-protein free (CF).

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  • Qk041-1000

    规格:1000(µg)

    Human IGF-1 LR3, insulin-like growth factor long arginine 3, protein is a synthetic form of IGF-1 with an N-terminal protein extension that improves potency and metabolic stability. IGF-1 LR3 is often used in the maintenance of human pluripotent stem cells Highly pure and bioactive 9 kDa IGR-1 LR3 protein monomer, animal-free (AF) and carrier-protein free (CF)

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  • Qk041-0500

    规格:500(µg)

    Human IGF-1 LR3, insulin-like growth factor long arginine 3, protein is a synthetic form of IGF-1 with an N-terminal protein extension that improves potency and metabolic stability. IGF-1 LR3 is often used in the maintenance of human pluripotent stem cells Highly pure and bioactive 9 kDa IGR-1 LR3 protein monomer, animal-free (AF) and carrier-protein free (CF)

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  • Qk041-0100

    规格:100(µg)

    Human IGF-1 LR3, insulin-like growth factor long arginine 3, protein is a synthetic form of IGF-1 with an N-terminal protein extension that improves potency and metabolic stability. IGF-1 LR3 is often used in the maintenance of human pluripotent stem cells Highly pure and bioactive 9 kDa IGR-1 LR3 protein monomer, animal-free (AF) and carrier-protein free (CF)

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  • Qk040-1000

    规格:1000(µg)

    Bovine/porcine FGF2 protein (bFGF, basic FGF) for development of species specific bovine (cow) and porcine (pig) cellular agriculture protocols and veterinary research applications. FGF-2 is used extensively in maintenance and proliferation of induced pluripotent (iPSC) and embryonic stem cells (ESC) and for enhancement of proliferation in primary cell culture.

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