Derivation of Epithelial-Only Airway Organoids from Human Pluripotent Stem Cells

Q2 Biochemistry, Genetics and Molecular Biology
Katherine B. McCauley, Finn Hawkins, Darrell N. Kotton
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引用次数: 40

Abstract

New protocols to efficiently generate functional airway epithelial organoids from human pluripotent stem cells (PSCs) would represent a major advance towards effective disease modeling, drug screening and cell based therapies for lung disorders. This unit describes an approach using stage-specific signaling pathway manipulation to differentiate cells to proximal airway epithelium via key developmental intermediates. Cells are directed via definitive endoderm (DE) to anterior foregut, and then specified to NKX2-1+ lung epithelial progenitors. These lung progenitors are purified using cell surface marker sorting and replated in defined culture conditions to form three-dimensional, epithelial-only airway organoids. This directed differentiation approach using serum-free, defined media also includes protocols for evaluation of DE induction, intracellular FACS analysis of NKX2-1 specification efficiency and enrichment, and approaches for characterization and expansion of airway organoids. Taken together, this represents an efficient and reproducible approach to generate expandable airway organoids from human PSCs for use in numerous downstream applications. © 2018 by John Wiley & Sons, Inc.

Abstract Image

从人多能干细胞中衍生上皮性气道类器官
从人类多能干细胞(PSCs)中高效生成功能性气道上皮类器官的新方案将代表着有效的疾病建模、药物筛选和基于细胞的肺部疾病治疗的重大进展。本单元描述了一种使用阶段特异性信号通路操纵的方法,通过关键的发育中间体将细胞分化为近端气道上皮。细胞通过最终内胚层(DE)被引导到前前肠,然后被指定到NKX2-1+肺上皮祖细胞。使用细胞表面标记分选纯化这些肺祖细胞,并在规定的培养条件下复制,形成三维的、仅上皮的气道类器官。这种使用无血清的定向分化方法还包括评估DE诱导的方案,细胞内FACS分析NKX2-1的规范效率和富集,以及表征和扩展气道类器官的方法。综上所述,这代表了一种有效且可重复的方法,可以从人类psc中生成可扩展的气道类器官,用于许多下游应用。©2018 by John Wiley &儿子,Inc。
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来源期刊
Current Protocols in Stem Cell Biology
Current Protocols in Stem Cell Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
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期刊介绍: Published in affiliation with the International Society for Stem Cell Research (ISSCR), Current Protocols in Stem Cell Biology (CPSC) covers the most fundamental protocols and methods in the rapidly growing field of stem cell biology. Updated monthly, CPSC will constantly evolve with thelatest developments and breakthroughs in the field. Drawing on the expertise of leading researchers from around the world, Current Protocols in Stem Cell Biology includes methods and insights that will enhance the progress of global research.
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