Mechanistic Investigations of Test Article–Induced Pancreatic Toxicity at the Endocrine–Exocrine Interface in the Rat

毒性 病理 病变 细胞毒性 内皮 体内 纤维化 发病机制 医学 内皮干细胞 内分泌系统 胰腺 生物 小岛 化学 胰腺癌 肠内分泌细胞 溶酶体 细胞损伤 纤维蛋白 血管 内科学 胰腺疾病 微循环
作者
Karrie A. Brenneman,Shashi K. Ramaiah,Cynthia M. Rohde,Dean Messing,Shawn P. O’Neil,Lauren M. Gauthier,Zachary S. Stewart,Srinivasa R. Mantena,Kimberly M. Shevlin,Christopher G. Leonard,Sharon Sokolowski,Hung‐Yun Lin,Deborah C. Carraher,Michael I. Jesson,Lindsay Tomlinson,Yutian Zhan,Walter F. Bobrowski,Steven A. Bailey,W Vogel,Dale L. Morris
出处
期刊:Toxicologic Pathology [SAGE Publishing]
卷期号:42 (1): 229-242 被引量:24
标识
DOI:10.1177/0192623313508851
摘要

Pancreatic toxicity commonly affects the endocrine or exocrine pancreas. However, it can also occur at the endocrine–exocrine interface (EEI), where the capillary network of the islet merges with the capillaries of the surrounding acinar tissue, that is, the insulo-acinar portal system. The goal of this article is to describe a novel, test article–induced pancreatic toxicity that originated at the EEI and to summarize investigations into the mechanistic basis of the injury. This injury was initially characterized by light microscopy in 7/14 day-toxicity studies in Sprague-Dawley (Crl: CD®[SD]) rats with undisclosed test articles. Microvascular injury at the interface resulted in peri-islet serum exudation, fibrin deposition, hemorrhage, inflammation, and secondary degeneration/necrosis of surrounding exocrine tissue. More chronic injury presented as islet fibrosis and lobular atrophy. Direct cytotoxicity affecting the capillary endothelium at the EEI was confirmed ultrastructurally on day 4. Endothelial microparticle and blood flow studies further confirmed endothelial involvement. Similar lesions occurred less frequently in 2 other rat strains and not in the mouse, dog, or cynomolgus macaque. In summary, in vivo and investigative study data confirmed primary endothelial cytotoxicity in the pathogenesis of this lesion and suggested that the lesion may be rat/rat strain–specific and of uncertain relevance for human safety risk assessment.
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