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Titlebook: Cell-Based Assays Using iPSCs for Drug Development and Testing; Carl-Fredrik Mandenius,James A. Ross Book 2019 Springer Science+Business M

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楼主: 厌氧
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Human Induced Pluripotent Stem Cell-Derived Definitive Endoderm Bulk Culture and Hepatic Differentia Human iPSC-derived definitive endoderm cells were sorted based on the expression of CXCR4. The sorted cells were able to proliferate for extended periods and can be cryopreserved. The definitive endoderm cells were subsequently utilized to generate functional hepatocytes expressing albumin and α-fe
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Production of Cardiomyocytes from Human Pluripotent Stem Cells by Bioreactor Technologiesmacology. They may also provide a superior cell source for envisioned cell therapies to repair damaged hearts. All applications will require the production of cardiomyocytes (CMs) by robust upscalable bioprocesses via industry-compliant technologies. This paper describes a detailed procedure for pro
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Human Pluripotent Stem Cell Expansion in Stirred Tank Bioreactors-free culture medium in stirred tank bioreactors (STBRs). Starting with a frozen stock pre-expanded on conventional culture dishes (2D), the ultimate process is performed in 150 mL culture scale in stirred tank bioreactors (3D) and is designed to produce up to 500 million pluripotent hPSC within 7 d
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Preparation of iPSCs for Targeted Proteomic Analysisxtensive analysis of iPSC are required before their therapeutic applications. With recent developments in mass spectrometry and proteomics, this technique can become a great alternative to traditional genomic approaches for iPSC analysis. Here, we describe preparation of iPSC for targeted proteomic
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Mass Spectrometry Measurement of Albumin–Alpha Fetoprotein Ratio as an Indicator of iPSC-Derived Hepation. We present a new method to evaluate the stage of differentiation based on the monitoring of the ratio between two plasma proteins typically secreted by hepatocytes, that is, albumin and alpha-fetoprotein. This ratio is particularly useful for the direct comparison of cells grown in different
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