Integrating collecting systems in kidney organoids through fusion of distal nephron to ureteric bud.

类有机物 肾单位 输尿管芽 生物 计算机科学 解剖 细胞生物学 内分泌学 肾脏发育 生物化学 胚胎干细胞 基因
作者
Min Shi,Brittney Crouse,Nambirajan Sundaram,Naomi Pode‐Shakked,Lioba Ester,Weitao Zhang,Vinothini Janakiram,Raphael Kopan,Michael A. Helmrath,Joseph V. Bonventre,Kyle W. McCracken
标识
DOI:10.1101/2024.09.19.613645
摘要

Abstract The kidney maintains homeostasis through an array of parallel nephrons, which all originate in development as isolated epithelial structures that later fuse through their distal poles to a system of collecting ducts (CD). This connection is required to generate functional nephrons by providing a pathway for excretion of metabolic waste and byproducts. Currently, methods for differentiating human pluripotent stem cells into kidney organoids generate nephrons that lack CDs and instead terminate as blind-ended tubules. Here we describe a developmentally inspired system that addresses this deficiency through assembly of induced nephrogenic mesenchyme with ureteric bud (UB) tissues, the embryonic building blocks of the kidney’s collecting system. The UB progenitors grow and develop into a network of CDs within the organoid, and importantly, they functionally integrate with the nephrons through recapitulating fusion between the distal tubule and CD to create a continuous epithelial lumen. We further showed that proximal-distal nephron specification, fusion frequency, and maturation of the CD can be augmented through temporal manipulation of developmental signaling pathways. This work provides a platform for interrogating the principles and mechanisms underlying nephron-UB fusion and a framework for engineering unobstructed nephrons with patterned collecting systems, an important step toward the de novo generation of functional kidney tissue.
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