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大鼠感染性肛瘘新型实验模型的建立

Establishment of a novel experimental model of infected anal fistula in rat.

作者信息

Zhao Meng, Wang Aitong, Zhang Leisheng, Yu Hao

机构信息

National Engineering Research Center of Cell Products, AmCellGene Engineering Co., Ltd, Tianjin, 300457, China.

Tianjin Key Laboratory of Engineering Technologies for Cell Pharmaceutical, Tianjin, 300457, China.

出版信息

Lab Anim Res. 2022 Jun 13;38(1):15. doi: 10.1186/s42826-022-00125-4.

Abstract

Refractory Crohn's-like enterocutaneous fistula indicates the aggressive manifestation and lead to poor prognosis of patients. The development of multidisciplinary strategies for fistula administration largely subjects to the deficiency of animal model for disease remodeling and the underlying pathogenic mechanism. For the purpose, infected anal fistula model was conducted by BLV single-core electrolytic aluminum combined with dextran sodium sulfate. Notably, the inflammatory granulation tissue and inflammatory cell infiltration in the perianal tissue were arised on day 7 of the model by utilizing the Hematoxylin-eosin staining. With the aid of magnetic resonance imaging and signals of high-brightness. We intuitively observed the thickening and edema appeared in the fistula wall, which collectively suggested the formation of a fistula in the perianal area of the rat. Distinguish from the current models of anal fistula modeling including the body surface of fistula, backside of fistula and drainage wire of fistula, our model revealed multifaceted advantages such as quicker generation, higher modeling rate, preferable stability, better consistency, cost-effective, and in particular, more convenient to mimic clinical manifestations of anal fistula.

摘要

难治性克罗恩病样肠皮肤瘘提示患者病情表现侵袭性且预后不良。瘘管管理多学科策略的发展很大程度上受制于疾病重塑动物模型及潜在致病机制的缺乏。为此,采用牛白血病病毒单核电解铝联合葡聚糖硫酸钠建立感染性肛瘘模型。值得注意的是,利用苏木精-伊红染色在模型第7天观察到肛周组织出现炎性肉芽组织和炎性细胞浸润。借助磁共振成像及高亮度信号,直观观察到瘘管壁增厚及水肿,共同提示大鼠肛周区域形成了瘘管。与目前包括瘘管体表、瘘管后侧及瘘管引流线等肛瘘建模模型不同,我们的模型显示出多方面优势,如生成更快、建模率更高、稳定性更好、一致性更佳、成本效益高,尤其是更便于模拟肛瘘的临床表现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4936/9190157/d69bba7acadb/42826_2022_125_Fig1_HTML.jpg

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