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Evaluation of profibrotic gene transcription in renal tissues from cats with naturally occurring chronic kidney disease

机译:自然发生的慢性肾疾病患者肾组织中肾脏组织中肾脏组织的评价

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Background Increased gene transcription of hypoxia‐induced mediators of fibrosis in renal tissue has been identified in experimentally induced, ischemic chronic kidney disease (CKD). Objective To characterize hypoxia‐induced profibrotic pathways in naturally occurring CKD in cats. Animals Twelve client‐owned cats with CKD and 8 healthy control cats. Methods In this prospective, cross‐sectional study, bilateral renal tissue samples were assessed histologically for inflammation, tubular atrophy, and fibrosis, and by reverse transcription‐quantitative PCR for characterization of transcript levels of hypoxia‐inducible factor‐1α ( HIF1A ), matrix metalloproteinases‐2 ( MMP2 ), ‐7 ( MMP7 ), and ‐9 ( MMP9 ), tissue inhibitor of metalloproteinase‐1 (TIMP1), transforming growth factor‐β1 ( TGFB1 ), and vascular endothelial growth factor‐A ( VEGFA ). Linear mixed models were used to compare gene transcription between diseased and healthy kidneys, and to examine the association between transcript levels and serum creatinine concentration for all cats, and between transcript levels and histologic scores of diseased kidneys. Results Kidneys from cats with CKD had significantly higher transcript levels of HIF1A , MMP2 , MMP7 , MMP9 , TIMP1 , and TGFB1 (all P .001), and lower levels of VEGFA ( P = .006) than those from control cats. Transcript levels of MMP7 ( P = .05) and TIMP1 ( P = .005) were positively associated with serum creatinine in cats with CKD, but not in control cats. In diseased kidneys, transcript levels of MMP2 ( P = .002), MMP7 ( P = .02), and TIMP1 ( P = .02) were positively, whereas those of VEGFA ( P = .003) were negatively, associated with histologic score severity. Conclusion and Clinical Significance Evaluation of the expression of the corresponding proteins in larger populations could identify therapeutic targets and/or biomarkers of tubulointerstitial fibrosis in cats.
机译:背景技术已经在实验诱导的缺血性慢性肾病(CKD)中鉴定了肾组织纤维化纤维化纤维化介质的增加的基因转录。目的在于在猫天然存在的CKD中表征缺氧诱导的血压途径。动物十二个客户拥有的猫,CKD和8只健康对照猫。在这种前瞻性,横截面研究中,双侧肾组织样品在组织学上进行炎症,管状萎缩和纤维化,以及通过逆转录定量PCR进行组织学,用于表征缺氧诱导因子-1α(HIF1A),基质的转录水平金属蛋白酶-2(MMP2),-7(MMP7)和-9(MMP9),金属蛋白酶-1(TIMP1)的组织抑制剂,转化生长因子-β1(TGFB1)和血管内皮生长因子-A(VEGFA)。线性混合模型用于比较患病和健康肾的基因转录,并​​检查所有猫的转录水平与血清​​肌酐浓度之间的关联,并在病症水平与病理学分数与患病肾脏之间。结果来自CKD的猫的肾脏的肾脏具有显着高的成绩水平,HIF1A,MMP2,MMP7,MMP9,TIMP1和TGFB1(全部P <.001),VEGFA(P = .006)的较低水平而不是来自对照猫的患者。 MMP7(p = .05)和TIMP1(p = .005)的转录水平与CKD的猫中的血清肌酐呈正相关,但不能控制猫。在患病的肾脏中,MMP2(p = 0.002),MMP7(P = .02)和TIMP1(p = .02)的转录水平呈正呈阳性,而VEGFA(P = .003)的结果是负面的,与组织学相关得分严重程度。结论及较大种群相应蛋白表达表达的临床意义评价可以鉴定猫中细胞间纤维化纤维化的治疗靶标和/或生物标志物。

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