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iPSC-Derived Cells - BPS Bioscience Explore BPS Bioscience’s iPSC-derived cells for advanced research Discover our range of high-quality, pluripotent stem cell products designed for disease modeling, drug screening, and regenerative medicine
Human iPSC-Derived Endothelial Cells - stemcell. com Start your vascular research confidently with high-quality, ready-to-use Human iPSC-Derived Endothelial Cells (ECs) These cryopreserved ECs are derived from the Healthy Control Human iPSC Line, Female, SCTi003-A using STEMdiff™ Mesoderm Induction Medium and STEMdiff™ Endothelial Differentiation Kit
GMP-compliant manufacturing of iPSC-derived therapeutic cell products . . . The development of induced pluripotent stem cells (iPSCs) has transformed the field of regenerative medicine However, to use iPSCs for therapeutic applications, iPSC-based products must be produced under Good Manufacturing Practice (GMP) conditions This process involves reprogramming somatic cells …
iXCells Biotechnologies | iPSC Models | Primary Cells | Preclinical CRO We offer iPSC reprogramming, Cas9 genome editing, directed differentiation, custom cell isolation, in vitro assays, and ASO screening services Our team of PhD scientists provides disease-relevant, patent-derived models that accelerate drug discovery and disease understanding
Induced pluripotent stem cell - Wikipedia iPSCs are typically derived by introducing products of specific sets of pluripotency-associated genes, or "reprogramming factors", into a given cell type The original set of reprogramming factors (also dubbed Yamanaka factors) are the transcription factors Oct4 (Pou5f1), Sox2, Klf4 and cMyc
Human Induced Pluripotent Stem Cells - ATCC ATCC’s iPSCs are derived by episomal, retroviral, or Sendai viral reprogramming After gaining pluripotent status, the iPSCs may then be induced to differentiate into many cell types