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肾类器官小管的功能成熟:PIEZO1 介导的 Ca 信号转导。

Functional maturation of kidney organoid tubules: PIEZO1-mediated Ca signaling.

机构信息

Department of Pediatrics, Icahn School of Medicine at Mount Sinai, New York, New York, United States.

Paulson School of Engineering and Applied Sciences, Wyss Institute for Biologically Inspired Engineering, Harvard University, Cambridge, Massachusetts, United States.

出版信息

Am J Physiol Cell Physiol. 2023 Mar 1;324(3):C757-C768. doi: 10.1152/ajpcell.00288.2022. Epub 2023 Feb 6.

Abstract

Kidney organoids cultured on adherent matrices in the presence of superfusate flow generate vascular networks and exhibit more mature podocyte and tubular compartments compared with static controls (Homan KA, Gupta N, Kroll KT, Kolesky DB, Skylar-Scott M, Miyoshi T, Mau D, Valerius MT, Ferrante T, Bonventre JV, Lewis JA, Morizane R. 16: 255-262, 2019; Takasato M, Er PX, Chiu HS, Maier B, Baillie GJ, Ferguson C, Parton RG, Wolvetang EJ, Roost MS, Chuva de Sousa Lopes SM, Little MH. 526: 564-568, 2015.). However, their physiological function has yet to be systematically investigated. Here, we measured mechano-induced changes in intracellular Ca concentration ([Ca]) in tubules isolated from organoids cultured for 21-64 days, microperfused in vitro or affixed to the base of a specimen chamber, and loaded with fura-2 to measure [Ca]. A rapid >2.5-fold increase in [Ca] from a baseline of 195.0 ± 22.1 nM ( = 9; ≤ 0.001) was observed when microperfused tubules from organoids >40 days in culture were subjected to luminal flow. In contrast, no response was detected in tubules isolated from organoids <30 days in culture. Nonperfused tubules (41 days) subjected to a 10-fold increase in bath flow rate also exhibited a threefold increase in [Ca] from baseline ( < 0.001). Mechanosensitive PIEZO1 channels contribute to the flow-induced [Ca] response in mouse distal tubule (Carrisoza-Gaytan R, Dalghi MG, Apodaca GL, Kleyman TR, Satlin LM. 33: 824.25, 2019.). Immunodetectable apical and basolateral PIEZO1 was identified in tubular structures by 21 days in culture. Basolateral PIEZO1 appeared to be functional as basolateral exposure of nonperfused tubules to the PIEZO1 activator Yoda 1 increased [Ca] ( ≤ 0.001) in segments from organoids cultured for >30 days, with peak [Ca] increasing with advancing days in culture. These results are consistent with a maturational increase in number and/or activity of flow/stretch-sensitive Ca channels, including PIEZO1, in tubules of static organoids in culture.

摘要

在贴壁基质上培养的肾类器官在超滤液流动存在的情况下产生血管网络,并表现出更成熟的足细胞和管状隔室,与静态对照相比(Homan KA,Gupta N,Kroll KT,Kolesky DB,Skylar-Scott M,Miyoshi T,Mau D,Valerius MT,Ferrante T,Bonventre JV,Lewis JA,Morizane R. 16: 255-262, 2019;Takasato M,Er PX,Chiu HS,Maier B,Baillie GJ,Ferguson C,Parton RG,Wolvetang EJ,Roost MS,Chuva de Sousa Lopes SM,Little MH. 526: 564-568, 2015)。然而,它们的生理功能尚未得到系统研究。在这里,我们测量了培养 21-64 天的类器官分离的小管在微灌流或固定在标本室底部时机械诱导的细胞内 Ca 浓度([Ca])变化,并加载 fura-2 来测量[Ca]。当培养超过 40 天的类器官的腔管受到管腔流动时,观察到[Ca]从基线快速增加>2.5 倍,从 195.0±22.1 nM(=9;≤0.001)增加。相比之下,在培养<30 天的类器官分离的小管中未检测到反应。非灌流的(41 天)小管在浴流率增加 10 倍时也表现出基线[Ca]的三倍增加(≤0.001)。机械敏感的 PIEZO1 通道有助于在小鼠远曲小管中引起的[Ca]反应(Carrisoza-Gaytan R,Dalghi MG,Apodaca GL,Kleyman TR,Satlin LM. 33: 824.25, 2019)。在培养 21 天时,通过免疫检测在管状结构中鉴定出顶端和基底外侧 PIEZO1。基底外侧 PIEZO1 似乎是功能性的,因为非灌流的小管的基底外侧暴露于 PIEZO1 激活剂 Yoda 1 增加了来自培养超过 30 天的类器官的小管的[Ca](≤0.001),随着培养天数的增加,峰值[Ca]增加。这些结果与在培养的静态类器官中,包括 PIEZO1 的数量和/或活性增加的机械敏感性 Ca 通道一致。

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