Suppr超能文献

一次感染肝片吸虫后幼龄牛肝脏和血清中小胆管的细胞增殖及γ-谷氨酰转肽酶情况

Cellular proliferation of bile ductules and gamma-glutamyl transpeptidase in livers and sera of young cattle following a single infection with Fasciola hepatica.

作者信息

Wensvoort P, Over H J

出版信息

Vet Q. 1982 Oct;4(4):161-72. doi: 10.1080/01652176.1982.9693858.

Abstract

During the course of experimental single infection with Fasciola hepatica in calves, the origin of the increased concentration of gamma-glutamyl transpeptidase (gamma-GT) found to be present in the serum during the biliary stage of the disease, was studied. The enzyme originates from the liver after flukes have caused intermittent and selective cholestasis in the bile-duct system. The enzyme which normally is present in the bile ducts can under these circumstances enter the surrounding interstitial tissues through broken-up junctions of the bile drainage system or be added to these from proliferating bile-ductule epithelium. The multiplication of bile-ductule cells can be looked upon as a neogenesis of cholangioles, which becomes essential when newly formed perilobular connective tissues prevent restoration of the anatomical connections of the bile capillaries with the biliary tree. The connective tissue growth is induced by bile fluid. An initially regional perilobular fibrosis is eventually distributed diffusely through the liver by migration of flukes. The continued and extending fibrosis is due to the constant recurrence of intermittent and selective cholestasis. The transient occlusions of branches of the bile ducts are very likely to be attributable to persistent cholangitis. The growth of connective tissues has a considerable effect on the gain in weight of the liver.

摘要

在对小牛进行肝片吸虫单重感染的实验过程中,研究了在疾病的胆管阶段血清中γ-谷氨酰转肽酶(γ-GT)浓度升高的来源。该酶源于吸虫在胆管系统中引起间歇性和选择性胆汁淤积后,肝脏所产生。在这种情况下,通常存在于胆管中的酶可通过胆汁引流系统破裂的连接进入周围间质组织,或由增生的胆小管上皮添加到这些组织中。胆小管细胞的增殖可视为胆小管的新生,当新形成的小叶周围结缔组织阻止胆小管与胆管树的解剖连接恢复时,这一过程变得至关重要。结缔组织生长由胆汁诱导。最初的局部小叶周围纤维化最终通过吸虫迁移在肝脏中弥漫分布。持续且扩展的纤维化是由于间歇性和选择性胆汁淤积的不断复发。胆管分支的短暂阻塞很可能归因于持续性胆管炎。结缔组织的生长对肝脏重量增加有相当大的影响。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验