搜索结果: 'methocult media formulations for human hematopoietic cells serum containing'
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Tapping Technique for Passaging Pluripotent Stem Cells Using ReLeSR™ Selection and Passaging Reagent Tip for the successful tapping technique when using ReLeSR™
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How to Count hPSC Aggregates to Determine Plating Density for Maintenance and Differentiation Step-by-step instructions for counting human pluripotent stem cell (hPSC) aggregates to determine and adjust the plating densities for hPSC maintenance and differentiation
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mTeSR™1: Standardized Medium for the Feeder-Independent Maintenance of hESCs & hiPSCs How mTeSR™1 simplifies and standardizes human embryonic & induced pluripotent stem cell cultures to minimize experimental variability
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Genome Editing From Modeling Disease to Novel Therapeutics The use of genome editing tools to generate specific DNA variants in hPSCs provide more accurate modeling of human disease when differentiated into human-derived tissues. View this webinar presented by Dr. Chad Cowan at Harvard University, who discussed the design and use of TALENs or CRISPR/Cas9 systems with hPSCs and the applications of modified hPSCs, including disease modeling and gene therapy.
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Generate Size-Controlled Spheroids and Embryoid Bodies Using AggreWell™ Microwell Plates AggreWell™ plates provide an easy and standardized approach to control size of embryoid bodies (EBs) for differentiation by adjusting initial cell input
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Tap Your Way to Easy Pluripotent Stem Cell Passaging Using ReLeSR™ Technical tip from our dedicated team of Product and Scientific Support specialists
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Scaling Biomimetic Culture of Pluripotent Stem Cells Hear from Dr. Maxime Feyeux, who discusses what the in vivo growth environment of pluripotent stem cells (PSCs) can teach us about in vitro culture. He summarizes some of the current challenges facing standard PSC culture technologies and shares a solution for mass producing high-quality PSCs for downstream applications.
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“Neuronal Diversity” Featuring Dr. Paola Arlotta On this episode of the Stem Cell Podcast, Dr. Paola Arlotta from Harvard University talks about brain organoids as models for human development, neuropsychiatric disorders, and neurodegenerative diseases.
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STEMdiff™ Neural System for hPSC-Based Neurological Modeling Use the STEMdiff™ Neural System to generate, expand, differentiate, characterize and cryopreserve your hPSC-derived neural progenitor cells