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首页> 外文期刊>Biomedical Research >Heterogeneity of histopathologic features in the congenitally carnitine-deficient juvenile visceral steatosis (JVS) mouse
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Heterogeneity of histopathologic features in the congenitally carnitine-deficient juvenile visceral steatosis (JVS) mouse

机译:先天性肉毒碱缺乏的青少年内脏脂肪变性(JVS)小鼠组织病理学特征的异质性

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摘要

Carnitine is an essential cofactor for the oxidation of long-chain fatty acids. The morphological features of carnitine deficiency were studied in juvenile visceral steatosis (JVS) mice with congenital carnitine deficiency. Untreated young mice showed marked hepatomegaly associated with fatty liver. In contrast, cardiac hypertrophy and systemic circulatory impairment were the main findings in adult and aged mice with carnitine treatment. The principal lesions common to homozygous mutant mice consisted of the following: 1) accumulation of fat droplets in various kinds of cells (hepatocytes, renal tubular epithelial cells, salivary gland ductal cells, Brunner's gland epithelial cells, brown fat cells, cardiac muscle fibers and striated muscle fibers in the thigh muscles, diaphragm and extrinsic muscle), 2) enlargement of hepatocytes with infrequent hyaline globules in untreated young mice, 3) fine cytoplasmic granules and hypertrophy of cardiac muscle fibers with bizarre nuclei, 4) atrophy of adrenocortical cells, 5) necrosis of lymphocytes in the thymic cortex and spleen, and 6) erosion or ulceration of the gastric mucosa. A wide variety of abnormalities in JVS mice, as reported in humans with carnitine deficiency, strongly suggest the variable and complicated physiological role of carnitine in individual cells or even in the same type of cell at different ages.
机译:肉碱是长链脂肪酸氧化的重要辅助因子。研究了患有先天性肉碱缺乏症的内脏脂肪变性(JVS)小鼠的肉碱缺乏症的形态特征。未经治疗的幼鼠显示出明显的肝肿大与脂肪肝有关。相反,心脏肥大和全身循环障碍是使用肉碱治疗的成年和成年小鼠的主要发现。纯合突变小鼠常见的主要病变包括以下内容:1)脂肪滴在各种细胞(肝细胞,肾小管上皮细胞,唾液腺导管细胞,布鲁纳氏腺上皮细胞,棕色脂肪细胞,心肌纤维和大腿肌肉,横and膜和外在肌中的横纹肌纤维),2)在未经治疗的年轻小鼠中肝细胞增大,带有不透明的透明小球,3)细细胞质颗粒和心肌纤维异常肥大,奇异核,4)肾上腺皮质细胞萎缩, 5)胸腺皮质和脾脏中的淋巴细胞坏死,以及6)胃粘膜糜烂或溃疡。正如肉碱缺乏的人类所报道的那样,JVS小鼠中的各种异常现象强烈暗示了肉碱在单个细胞甚至在不同年龄的同一类型细胞中的可变而复杂的生理作用。

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