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首页> 外文期刊>Journal of biomolecular screening: The official journal of the Society for Biomolecular Screening >Development of high-content assays for kidney progenitor cell expansion in transgenic zebrafish
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Development of high-content assays for kidney progenitor cell expansion in transgenic zebrafish

机译:转基因斑马鱼肾脏祖细胞扩增高含量检测方法的开发

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摘要

Reactivation of genes normally expressed during organogenesis is a characteristic of kidney regeneration. Enhancing this reactivation could potentially be a therapeutic target to augment kidney regeneration. The inductive events that drive kidney organogenesis in zebrafish are similar to the initial steps in mammalian kidney organogenesis. Therefore, quantifying embryonic signals that drive zebrafish kidney development is an attractive strategy for the discovery of potential novel therapeutic modalities that accelerate kidney regeneration. The Lim1 homeobox protein, Lhx1, is a marker of kidney development that is also expressed in the regenerating kidneys after injury. Using a fluorescent Lhx1a-EGFP transgene whose phenotype faithfully recapitulates that of the endogenous protein, we developed a high-content assay for Lhx1a-EGFP expression in transgenic zebrafish embryos employing an artificial intelligence-based image analysis method termed cognition network technology (CNT). Implementation of the CNT assay on high-content readers enabled automated real-time in vivo time-course, dose-response, and variability studies in the developing embryo. The Lhx1a assay was complemented with a kidney-specific secondary CNT assay that enables direct measurements of the embryonic renal tubule cell population. The integration of fluorescent transgenic zebrafish embryos with automated imaging and artificial intelligence-based image analysis provides an in vivo analysis system for structure-activity relationship studies and de novo discovery of novel agents that augment innate regenerative processes.
机译:器官发生过程中正常表达的基因的重新激活是肾脏再生的特征。增强这种再激活可能是增加肾脏再生的治疗目标。在斑马鱼中驱动肾脏器官发生的诱导事件与哺乳动物肾脏器官发生的初始步骤相似。因此,量化驱动斑马鱼肾脏发育的胚胎信号是发现可能促进肾脏再生的新型治疗方式的一种有吸引力的策略。 Lim1同源盒蛋白Lhx1是肾脏发育的标志物,在受伤后的再生肾脏中也有表达。使用荧光Lhx1a-EGFP转基因的表型忠实地概括了内源蛋白的表型,我们采用了基于人工智能的图像分析方法(称为认知网络技术(CNT)),为转基因斑马鱼胚胎中的Lhx1a-EGFP表达开发了高含量检测方法。在高含量阅读器上实施CNT分析可在发育中的胚胎中进行自动化的实时体内时程,剂量反应和变异性研究。 Lhx1a检测补充有肾脏特异性次级CNT检测,可直接测量胚胎肾小管细胞群。荧光转基因斑马鱼胚胎与自动成像和基于人工智能的图像分析的集成为结构-活性关系研究和从头开始发现增强先天再生过程的新型药物提供了体内分析系统。

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