Kidneys maintain homeostasis through an array of parallel nephrons, which fuse during development to a system of collecting ducts (CDs), establishing the essential luminal pathway for excretion of metabolic waste. Human kidney organoids derived from pluripotent stem cells (human pluripotent stem cells [hPSCs]) generate nephrons that lack CDs and terminate as blind-ended tubules, limiting their functional potential. Here, we describe a developmentally inspired hPSC differentiation system that addresses this deficiency through assembly of induced nephrogenic mesenchyme with ureteric bud (UB) progenitors, leading to a CD network functionally integrated in kidney organoids through fusion with the distal tubule. The nephron fusion occurs stereotypically and is regulated by proximal-distal nephron patterning, which can be modulated through temporal manipulation of developmental pathways. This work provides a platform for interrogating the principles and mechanisms underlying nephron-UB fusion and a framework for engineering unobstructed nephrons with collecting systems, an important step toward de novo generation of functional kidney tissue.
Integrating collecting systems in human kidney organoids through fusion of distal nephron to ureteric bud.
通过将远端肾单位与输尿管芽融合,在人类肾脏类器官中整合集合系统
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作者:Shi Min, Crouse Brittney, Sundaram Nambirajan, Pode Shakked Naomi, Thorner Konrad, King Nathaniel M, Dutta Parna, Ester Lioba, Zhang Weitao, Govindarajah Vinothini, Kopan Raphael, Cebrian Cristina, Mayhew Christopher N, Helmrath Michael A, Bonventre Joseph V, McCracken Kyle W
| 期刊: | Cell Stem Cell | 影响因子: | 20.400 |
| 时间: | 2025 | 起止号: | 2025 Jul 3; 32(7):1055-1070 |
| doi: | 10.1016/j.stem.2025.04.008 | 种属: | Human |
| 研究方向: | 其它 | ||
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