Adult renal tubular organoids can be produced from different human individuals in a completely same protocol

M. Mori, Y. Mori, Nakao Yuki, Shintaro Mandai, T. Fujiki, Hiroaki Kikuchi, Fumiaki Ando, K. Susa, Takayasu Mori, Y. Waseda, S. Yoshida, Y. Fujii, E. Sohara, Shinichi Uchida
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Abstract

Introduction: Organoids are miniature organs produced by newly emerging technologies. Kidney organoids originated from human inducible pluripotent stem cells (iPSCs) were developed to recapitulate renal diseases. However, producing iPSC kidney organoids from multiple individuals at the same time and in a uniform condition is still impossible. Here, we report adult renal tubular organoids, "tubuloids", established from primary renal epithelial cells from multiple human individuals in a uniform manner. Methods: Kidneys obtained from patients due to the surgery for malignancy were minced into small pieces, and primary renal epithelial tubule cells are cultured. 4 patients had normal kidney function and 4 had mild chronic kidney disease (CKD). Growth factors were added to the primary cultured cells at the same time and Matrigel was added to these 8 lines. Results: Primary cultured renal epithelial cells from normal kidneys showed a large number of fine, swollen epithelial appearance. On the other hand, primary cultured kidney epithelial cells from mild CKD kidneys were smaller and slightly elongated than those of normal kidneys. The growth speed was faster in normal kidney cells than in mild CKD cells. At the beginning of the three-dimensionalization (day 0), normal renal tubuloids grew faster than mild CKD tubuloids. The difference in size between normal tubuloids and mild CKD ones became less noticeable on day 5. Both types of tubuloids reached almost same size on day 10. All 8 strains are of different human origin, and uniform tubuloids could be produced at the same time and in a uniform protocol. Conclusion: In terms of pathological models, the differences between mouse models and humans cannot be ignored, and there is a great need for a more human-like model of human pathology from both medical and research perspectives. Our renal tubular organoids can be produced in a uniform manner at the same time. It is expected to be used as a new type of convenient human pathological model.
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可以用完全相同的方案从不同的人类个体中培育出成人肾小管器官组织
简介器官组织是利用新兴技术制造的微型器官。由人类诱导性多能干细胞(iPSCs)培育出的肾脏器官组织可用于再现肾脏疾病。然而,在统一条件下同时从多个个体制备 iPSC 肾脏器官组织仍是不可能的。在此,我们报告了从多个人类个体的原代肾上皮细胞以统一的方式建立的成人肾小管器官组织("tubuloids")。方法将恶性肿瘤手术患者的肾脏切成小块,培养原代肾小管上皮细胞。4名患者肾功能正常,4名患者患有轻度慢性肾病(CKD)。在原代培养细胞中同时加入生长因子,并在这 8 个系中加入 Matrigel。结果来自正常肾脏的原代培养肾上皮细胞显示出大量细小、肿胀的上皮外观。另一方面,轻度 CKD 肾脏原代培养的肾上皮细胞比正常肾脏的肾上皮细胞更小,略有伸长。正常肾细胞的生长速度比轻度 CKD 细胞快。在三维化开始时(第 0 天),正常肾小管的生长速度快于轻度 CKD 肾小管。正常肾小管和轻度 CKD 肾小管的大小差异在第 5 天变得不那么明显。两种类型的肾小管在第 10 天达到几乎相同的大小。所有 8 个菌株都来自不同的人源,可以在同一时间以统一的方案生产出一致的小管。结论在病理模型方面,小鼠模型与人类的差异不容忽视,无论从医学还是研究角度来看,都亟需一种更接近人类的病理模型。我们的肾小管器官组织可同时以统一的方式生产。它有望被用作一种新型便捷的人类病理模型。
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