Laboratory of Integrative Systems Physiology, Institute of Bioengineering, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.
Janssen Research and Development LLC, Raritan, New Jersey, USA.
JCI Insight. 2023 Feb 8;8(3):e164626. doi: 10.1172/jci.insight.164626.
Acute kidney failure and chronic kidney disease are global health issues steadily rising in incidence and prevalence. Animal models on a single genetic background have so far failed to recapitulate the clinical presentation of human nephropathies. Here, we used a simple model of folic acid-induced kidney injury in 7 highly diverse mouse strains. We measured plasma and urine parameters, as well as renal histopathology and mRNA expression data, at 1, 2, and 6 weeks after injury, covering the early recovery and long-term remission. We observed an extensive strain-specific response ranging from complete resistance of the CAST/EiJ to high sensitivity of the C57BL/6J, DBA/2J, and PWK/PhJ strains. In susceptible strains, the severe early kidney injury was accompanied by the induction of mitochondrial stress response (MSR) genes and the attenuation of NAD+ synthesis pathways. This is associated with delayed healing and a prolonged inflammatory and adaptive immune response 6 weeks after insult, heralding a transition to chronic kidney disease. Through a thorough comparison of the transcriptomic response in mouse and human disease, we show that critical metabolic gene alterations were shared across species, and we highlight the PWK/PhJ strain as an emergent model of transition from acute kidney injury to chronic disease.
急性肾损伤和慢性肾脏病是全球范围内发病率和患病率不断上升的健康问题。迄今为止,基于单一遗传背景的动物模型未能重现人类肾脏病的临床表现。在这里,我们使用了叶酸诱导的肾脏损伤在 7 种高度多样化的小鼠品系中的简单模型。我们在损伤后 1、2 和 6 周测量了血浆和尿液参数以及肾脏组织病理学和 mRNA 表达数据,涵盖了早期恢复和长期缓解。我们观察到广泛的品系特异性反应,从 CAST/EiJ 的完全抗性到 C57BL/6J、DBA/2J 和 PWK/PhJ 品系的高敏感性。在易感品系中,严重的早期肾损伤伴随着线粒体应激反应(MSR)基因的诱导和 NAD+合成途径的减弱。这与损伤后 6 周的愈合延迟以及炎症和适应性免疫反应的持续存在有关,预示着向慢性肾脏病的转变。通过对小鼠和人类疾病的转录组反应进行彻底比较,我们表明关键的代谢基因改变在物种间是共有的,并强调 PWK/PhJ 品系是急性肾损伤向慢性疾病转变的新兴模型。