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时空转录组分析揭示了顺铂治疗后不同的肾毒性、DNA损伤和再生反应。

Spatio-temporal transcriptomic analysis reveals distinct nephrotoxicity, DNA damage, and regeneration response after cisplatin.

作者信息

Wijaya Lukas S, Kunnen Steven J, Trairatphisan Panuwat, Fisher Ciarán P, Crosby Meredith E, Schaefer Kai, Bodié Karen, Vaughan Erin E, Breidenbach Laura, Reich Thomas, Clausznitzer Diana, Bonnet Sylvestre, Zheng Sipeng, Pont Chantal, Stevens James L, Le Dévédec Sylvia E, van de Water Bob

机构信息

Division of Drug Discovery and Safety, Leiden Academic Centre for Drug Research, Leiden University, Einsteinweg 55, 2333 CC, Leiden, The Netherlands.

Abbvie Deutschland, GmbH & Co KG, Ludwigshafen, Germany.

出版信息

Cell Biol Toxicol. 2025 Feb 21;41(1):49. doi: 10.1007/s10565-025-10003-z.

Abstract

Nephrotoxicity caused by drug or chemical exposure involves complex mechanisms as well as a temporal integration of injury and repair responses in different nephron segments. Distinct cellular transcriptional programs regulate the time-dependent tissue injury and regeneration responses. Whole kidney transcriptome analysis cannot dissect the complex spatio-temporal injury and regeneration responses in the different nephron segments. Here, we used laser capture microdissection of formalin-fixed paraffin embedded sections followed by whole genome targeted RNA-sequencing-TempO-Seq and co-expression gene-network (module) analysis to determine the spatial-temporal responses in rat kidney glomeruli (GM), cortical proximal tubules (CPT) and outer-medulla proximal tubules (OMPT) comparison with whole kidney, after a single dose of the nephrotoxicant cisplatin. We demonstrate that cisplatin induced early onset of DNA damage in both CPT and OMPT, but not GM. Sustained DNA damage response was strongest in OMPT coinciding with OMPT specific inflammatory signaling, actin cytoskeletal remodeling and increased glycolytic metabolism with suppression of mitochondrial activity. Later responses reflected regeneration-related cell cycle pathway activation and ribosomal biogenesis in the injured OMPT regions. Activation of modules containing kidney injury biomarkers was strongest in OMPT, with OMPT Clu expression highly correlating with urinary clusterin biomarker measurements compared the correlation of Kim1. Our findings also showed that whole kidney responses were less sensitive than OMPT. In conclusion, our LCM-TempO-Seq method reveals a detailed spatial mechanistic understanding of renal injury/regeneration after nephrotoxicant exposure and identifies the most representative mechanism-based nephron segment specific renal injury biomarkers.

摘要

药物或化学物质暴露引起的肾毒性涉及复杂的机制,以及不同肾单位节段损伤和修复反应的时间整合。不同的细胞转录程序调节时间依赖性的组织损伤和再生反应。全肾转录组分析无法剖析不同肾单位节段中复杂的时空损伤和再生反应。在此,我们使用对福尔马林固定石蜡包埋切片进行激光捕获显微切割,随后进行全基因组靶向RNA测序-TempO-Seq和共表达基因网络(模块)分析,以确定单剂量肾毒性药物顺铂给药后,大鼠肾小球(GM)、皮质近端小管(CPT)和外髓质近端小管(OMPT)与全肾相比的时空反应。我们证明,顺铂在CPT和OMPT中均诱导DNA损伤的早期发生,但在GM中未诱导。持续的DNA损伤反应在OMPT中最强,与OMPT特异性炎症信号传导、肌动蛋白细胞骨架重塑以及糖酵解代谢增加和线粒体活性抑制相一致。后期反应反映了损伤的OMPT区域中与再生相关的细胞周期途径激活和核糖体生物发生。包含肾损伤生物标志物的模块的激活在OMPT中最强,与Kim1的相关性相比,OMPT中Clu的表达与尿簇蛋白生物标志物测量高度相关。我们的研究结果还表明,全肾反应不如OMPT敏感。总之,我们的LCM-TempO-Seq方法揭示了对肾毒性物质暴露后肾损伤/再生的详细空间机制理解,并确定了最具代表性的基于机制的肾单位节段特异性肾损伤生物标志物。

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