基因诱导的内皮龛使人类肾脏器官组织血管化,并使肾素表达细胞多线成熟和出现。

IF 14.8 1区 医学 Q1 UROLOGY & NEPHROLOGY Kidney international Pub Date : 2024-06-18 DOI:10.1016/j.kint.2024.05.026
Joseph C Maggiore, Ryan LeGraw, Aneta Przepiorski, Jeremy Velazquez, Christopher Chaney, Thitinee Vanichapol, Evan Streeter, Zainab Almuallim, Akira Oda, Takuto Chiba, Anne Silva-Barbosa, Jonathan Franks, Joshua Hislop, Alex Hill, Haojia Wu, Katherine Pfister, Sara E Howden, Simon C Watkins, Melissa H Little, Benjamin D Humphreys, Samira Kiani, Alan Watson, Donna B Stolz, Alan J Davidson, Tom Carroll, Ondine Cleaver, Sunder Sims-Lucas, Mo R Ebrahimkhani, Neil A Hukriede
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引用次数: 0

摘要

血管化在器官成熟和细胞类型发育中起着至关重要的作用。药物发现、器官模拟以及最终的移植都取决于体外工程器官能否实现强大的血管化。在这里,我们以人类肾脏类器官为重点,通过将含有诱导性 ETS 易位变体 2(ETV2)(一种在内皮细胞发育中发挥作用的转录因子)的人类诱导多能干细胞(iPSC)系与悬浮类器官培养中的非转基因 iPSC 系相结合,克服了这一障碍。由此产生的人类肾脏器官组织显示出广泛的内皮化,其细胞特征与人类肾脏内皮最为接近。内皮化的肾脏器官组织还显示出肾小球结构的成熟度增加、肾小球和静脉亚型重新形成的相关栅栏状内皮以及药物反应性肾素表达细胞的出现。工程血管龛的创建能够改善肾脏类器官的成熟度和细胞类型的复杂性,这是向临床转化迈出的重要一步。因此,在以前发表的肾脏类器官方案中加入工程化内皮龛,可以实现内皮细胞和实质细胞类型的正交分化,这证明了它在其他基础和转化类器官研究中的潜在适用性。
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A genetically inducible endothelial niche enables vascularization of human kidney organoids with multilineage maturation and emergence of renin expressing cells.

Vascularization plays a critical role in organ maturation and cell-type development. Drug discovery, organ mimicry, and ultimately transplantation hinge on achieving robust vascularization of in vitro engineered organs. Here, focusing on human kidney organoids, we overcame this hurdle by combining a human induced pluripotent stem cell (iPSC) line containing an inducible ETS translocation variant 2 (ETV2) (a transcription factor playing a role in endothelial cell development) that directs endothelial differentiation in vitro, with a non-transgenic iPSC line in suspension organoid culture. The resulting human kidney organoids show extensive endothelialization with a cellular identity most closely related to human kidney endothelia. Endothelialized kidney organoids also show increased maturation of nephron structures, an associated fenestrated endothelium with de novo formation of glomerular and venous subtypes, and the emergence of drug-responsive renin expressing cells. The creation of an engineered vascular niche capable of improving kidney organoid maturation and cell type complexity is a significant step forward in the path to clinical translation. Thus, incorporation of an engineered endothelial niche into a previously published kidney organoid protocol allowed the orthogonal differentiation of endothelial and parenchymal cell types, demonstrating the potential for applicability to other basic and translational organoid studies.

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来源期刊
Kidney international
Kidney international 医学-泌尿学与肾脏学
CiteScore
23.30
自引率
3.10%
发文量
490
审稿时长
3-6 weeks
期刊介绍: Kidney International (KI), the official journal of the International Society of Nephrology, is led by Dr. Pierre Ronco (Paris, France) and stands as one of nephrology's most cited and esteemed publications worldwide. KI provides exceptional benefits for both readers and authors, featuring highly cited original articles, focused reviews, cutting-edge imaging techniques, and lively discussions on controversial topics. The journal is dedicated to kidney research, serving researchers, clinical investigators, and practicing nephrologists.
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