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Heminephrectomy Causes the Progression of Glomerulosclerosis and Apoptosis in High IgA Strain ddY Mice.

机译:肾切除术导致高IgA菌株ddY小鼠肾小球硬化和细胞凋亡的进展。

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Background: The reduction in nephrons in IgA nephropathy is critical to the prognosis of this disease. However, the immunopathological mechanism of the modifications seen in glomerular lesions is not clear. We thus investigated the influence of nephron reduction by heminephrectomy on renal lesions in a high immunoglobulin A inbred strain of ddY mouse (HIGA mouse), which shows progressive mesangial sclerosis with elevated renal expression of transforming growth factor (TGF)-beta. Methods: Five-week-old HIGA mice were heminephrectomized (Nx), and were evaluated in comparison with a sham-operated group (S) at 40 weeks old. Histological findings, immunoglobulin depositions (IgG, IgA, and IgM), and expressions of cytokine and extracellular matrix proteins (TGF-beta, fibronectin, collagen type I and IV) were analysed. PCNA and TUNEL stainings were performed with electron microscopic detection of apoptosis. Tissue renin-angiotensin systems (RAS) were also investigated by real-time quantitative RT-PCR. Results: In the Nx group, the glomerular tuft area and ratio of mesangial matrix area per tuft were significantly increased, and the glomerular cell count per tuft area was significantly decreased. Glomerular immunoglobulin deposits of IgG, IgA, and IgM in Nx were all significantly expanded in the paramesangium. The glomerular expressions of TGF-beta and the extracellular matrix proteins were significantly increased in Nx mice. In contrast to the significant decrease of PCNA-positive cells, TUNEL-positive cells were significantly increased in Nx. Angiotensin-converting enzyme (ACE) was significantly increased in the renal cortex of Nx. Conclusion: Simple heminephrectomy, other than 5/6 renal ablation, of HIGA mice may be a potential model for research into the progressive glomerulosclerosis of human IgA nephropathy. The pathological role of apoptosis is apparently involved in these disease processes, possibly through upregulated RAS.
机译:背景:IgA肾病中肾单位的减少对这种疾病的预后至关重要。然而,在肾小球病变中发现的修饰的免疫病理机制尚不清楚。因此,我们研究了通过肾切除术减少肾单位对ddY小鼠(HIGA小鼠)高免疫球蛋白A自交系的肾脏病变的影响,该品系表现为进行性肾小球膜硬化症,且肾脏具有转化生长因子(TGF)-β的肾表达升高。方法:对五周龄的HIGA小鼠进行半直肠切除术(Nx),并与40周龄的假手术组(S)进行比较。分析组织学发现,免疫球蛋白沉积(IgG,IgA和IgM)以及细胞因子和细胞外基质蛋白(TGF-β,纤连蛋白,I型和IV型胶原)的表达。用电子显微镜检测细胞凋亡进行PCNA和TUNEL染色。还通过实时定量RT-PCR研究了组织肾素-血管紧张素系统(RAS)。结果:在Nx组中,肾小球的毛簇面积和每根肾小球系膜基质面积的比例显着增加,而每簇的肾小球细胞数显着减少。 IgG,IgA和IgM在Nx中的肾小球免疫球蛋白沉积物均在旁系膜中显着扩展。 Nx小鼠中TGF-β和细胞外基质蛋白的肾小球表达显着增加。与PCNA阳性细胞的显着减少相反,TUNEL阳性细胞的Nx显着增加。 Nx肾皮质的血管紧张素转换酶(ACE)显着增加。结论:除5/6肾消融外,HIGA小鼠的简单肾切除术可能是研究人类IgA肾病进行性肾小球硬化的潜在模型。细胞凋亡的病理作用显然与这些疾病过程有关,可能是通过上调RAS引起的。

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