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首页> 外文期刊>International Journal of Experimental Pathology >Variation in characteristics of islets of Langerhans in insulin-resistant, diabetic and non-diabetic-rat strains.
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Variation in characteristics of islets of Langerhans in insulin-resistant, diabetic and non-diabetic-rat strains.

机译:胰岛素抵抗,糖尿病和非糖尿病大鼠品系中郎格罕氏岛的特性变化。

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摘要

Assessment of the histopathological and plasma biochemical characteristics of diabetic and non-diabetic rat strains [Han and AP Wistar, lean and obese Zucker Fatty (ZF), and lean and obese Zucker Diabetic Fatty (ZDF) rats] was performed at 6 or 14 weeks of age. Wistar and lean ZF and ZDF rats showed no or minimal islet pathology or plasma biochemical alterations at both timepoints. Obese ZFs were euglycaemic at both timepoints and mildly and severely hyperinsulinaemic at 6 and 14 weeks respectively. Islet morphology was normal at 6 weeks but at 14 weeks, islet hyperplasia was present with a minority showing degenerative changes namely, beta-cell vacuolation, vascular congestion and haemorrhage with minimal mononuclear cell and T lymphocytic infiltration. Obese ZDFs were euglycaemic and moderately hyperinsulinaemic at 6 weeks and severely hyperglycaemic with minor hypoinsulinaemia at 14 weeks. Obese ZDFs at 6 weeks showed mainly normal islets with some displaying degeneration (ranging from beta-cell vacuolation alone to the features described above). At 14 weeks, islet degeneration was more severe and widespread: beta-cell death was present in numerous islets at low level. Islet beta-cell numbers were reduced or absent (with associated reduction in insulin immunostaining) within the islets that now consisted predominantly of fibroblasts, collagen and mononuclear cells. Fibroproliferation consisting of smooth muscle actin-alpha-positive tissue was associated with mononuclear cell infiltration. Some fibrous scars were visible indicative of lost islets. Islet degeneration in obese ZF and ZDF rats was not accompanied by a reduction in beta-cell proliferation or in compensatory proliferation of beta-cell neogenic clusters. In the light of recent reports of adaptive and inflammation-mediated degenerative changes in human non-insulin dependent diabetes mellitus (NIDDM) islets, the hypertrophy/hyperplasia of beta-cells and islet degeneration involving infiltration by monocyte/macrophages in obese ZF and obese ZDF rats respectively offers substantial potential for elucidation of the processes involved.
机译:在6或14周时评估了糖尿病和非糖尿病大鼠品系[Han和AP Wistar,瘦和肥胖的Zucker Fatty(ZF)以及瘦和肥胖的Zucker糖尿病脂肪(ZDF)大鼠]的组织病理学和血浆生化特征。年龄。 Wistar和lean ZF和ZDF大鼠在两个时间点均未显示或仅有极少的胰岛病理或血浆生化改变。肥胖的ZFs在两个时间点均具有正常血糖水平,分别在6周和14周时具有轻度和重度高胰岛素血症。 6周时胰岛形态正常,但14周时,胰岛增生,少数显示退行性变,即β细胞空泡化,血管充血和出血,单核细胞和T淋巴细胞浸润最少。肥胖的ZDF在第6周时为正常血糖和中度高胰岛素血症,在第14周时为严重高血糖,并伴有轻度低胰岛素血症。 6周时,肥胖的ZDF主要表现为正常的胰岛,并有一些变性(从单独的β细胞空泡到上述特征)。 14周时,胰岛变性更为严重和广泛:β细胞死亡存在于许多低水平的胰岛中。现在主要由成纤维细胞,胶原蛋白和单核细胞组成的胰岛中胰岛β细胞数量减少或不存在(伴随着胰岛素免疫染色的减少)。由平滑肌肌动蛋白-α阳性组织组成的纤维增生与单核细胞浸润有关。可见一些纤维疤痕,表明胰岛丢失。肥胖的ZF和ZDF大鼠的胰岛变性并不伴有β细胞增殖减少或β细胞新生簇的代偿性增殖减少。根据最近关于人类非胰岛素依赖型糖尿病(NIDDM)胰岛的适应性变化和炎症介导的变性变化的报道,肥胖ZF和肥胖ZDF中β细胞的肥大/增生以及胰岛变性涉及单核细胞/巨噬细胞的浸润大鼠分别为阐明所涉及的过程提供了巨大的潜力。

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