Voisin Viginie, Declèves Anne-Emilie, Hubert Virginie, Colombaro Vanessa, Giordano Laetitia, Habsch Isabelle, Bouby Nadine, Nonclercq Denis, Caron Nathalie
Molecular Physiology Research Unit-Namur Research Institute for Life Sciences, Univerity of Namur, Namur, Belgium.
Clin Exp Pharmacol Physiol. 2014 Nov;41(11):911-20. doi: 10.1111/1440-1681.12298.
The Wistar-Furth (WF) rat strain is usually used in models of full major histocompatibility complex-mismatched kidney transplantation. Because these rats have been demonstrated to be resistant to several models of chronic kidney disease, the aim of the present study was to investigate their potential resistance to renal ischaemia-reperfusion (I/R) injury compared with another strain, namely Wistar-Hanover (WH) rats. Anaesthetized male WH and WF rats were submitted to I/R by occlusion of the left renal artery and contralateral nephrectomy. Urine, blood and tissue samples were collected at different time points after I/R to evaluate renal function, inflammation and tubular injury, along with determination of nitric oxide synthase (NOS) expression and thromboxane A2 (TxA2 ) production. Post-ischaemic renal function was better preserved in WF than WH rats, as evidenced by reduced levels of creatininaemia, urinary neutrophil gelatinase-associated lipocalin excretion and proteinuria. In addition, WF rats had less intrarenal inflammation than WH rats after I/R injury. These observations were associated with maintenance of neuronal NOS expression, along with lower induction of inducible NOS expression in WF versus WH rats. Moreover, WF rats excreted a significantly lower amount of TxB2 . The results indicate that WF rats are more resistant to an I/R injury than WH rats in terms of renal function and inflammation. These observations are associated with differential regulation of intrarenal NOS expression, as well as a reduction in thromboxane production, which could contribute to a better outcome for the postischaemic kidney in WF rats.
Wistar-Furth(WF)大鼠品系通常用于完全主要组织相容性复合体不匹配的肾移植模型。由于已证明这些大鼠对几种慢性肾病模型具有抗性,本研究的目的是调查与另一种品系即Wistar-Hanover(WH)大鼠相比,它们对肾缺血-再灌注(I/R)损伤的潜在抗性。对麻醉的雄性WH和WF大鼠进行左肾动脉闭塞和对侧肾切除术以造成I/R损伤。在I/R损伤后的不同时间点收集尿液、血液和组织样本,以评估肾功能、炎症和肾小管损伤,同时测定一氧化氮合酶(NOS)表达和血栓素A2(TxA2)生成。缺血后肾功能在WF大鼠中比WH大鼠保存得更好,这通过肌酐血症水平降低、尿中性粒细胞明胶酶相关脂质运载蛋白排泄减少和蛋白尿得以证明。此外,I/R损伤后WF大鼠的肾内炎症比WH大鼠少。这些观察结果与神经元NOS表达的维持有关,同时与WH大鼠相比,WF大鼠中诱导型NOS表达的诱导较低。此外,WF大鼠排泄的TxB2量显著更低。结果表明,在肾功能和炎症方面,WF大鼠比WH大鼠对I/R损伤更具抗性。这些观察结果与肾内NOS表达的差异调节以及血栓素生成的减少有关,这可能有助于WF大鼠缺血后肾脏获得更好的结果。