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一种用于正常和炎症状态下小鼠十二指肠的组织形态计量学分类系统——定性-定量方法。

A histomorphometric classification system for normal and inflamed mouse duodenum-Quali-quantitative approach.

机构信息

Gastrointestinal Immunology Group, Department of Immunobiology, Institute of Biology, Federal Fluminense University, Niterói, Rio de Janeiro, Brazil.

Graduate Program in Pathology, Medicine School, Antônio Pedro Hospital, Federal Fluminense University, Niterói, Rio de Janeiro, Brazil.

出版信息

Int J Exp Pathol. 2018 Aug;99(4):189-198. doi: 10.1111/iep.12286. Epub 2018 Sep 2.

Abstract

Gut-associated intestinal lymphoid tissue, the largest secondary lymphoid organ in the human body, constantly samples antigens from the gut lumen, presenting as a default response the activation of TCD4 FOXP3 regulatory T cells that secrete a profile of anti-inflammatory cytokines maintaining gut homeostasis denominated from an immunological perspective as mucosal tolerance. However, when antigens are sampled in an inflammatory setting, the immune response may either be protective, in the case of harmful pathogens, or cause further inflammatory reactions as in food allergy, inflammatory bowel diseases, coeliac disease or food protein-induced enterocolitis syndrome. Therefore, there is a need for accurate and consistent experimental models. However, a drawback in comparing these models is the lack of a classification system similar to that which is already used for humans. Thus, the aim of this work was to propose a classification system of the small intestinal histomorphology in experimental mice. To do this we used a mouse antigen-specific gut inflammation model developed by our research group. Duodenum sections stained with haematoxylin-eosin and Alcian blue were scanned using the APERIO scanning system and analysed with the ImageScope software. The evaluated parameters were villus area, villus height and width, enterocyte count, mononuclear intra-epithelial leucocyte and goblet cell counts, and architectural and cellular ratios. Food-sensitized animals challenged with a diet containing the corresponding food allergen presented, as for humans, time-dependent shortened and widened villi accompanied by leucocyte infiltrate and loss of goblet cells. With these data, we were able to establish a classification system for experimental intestinal inflammation in mice thus permitting better comparisons among and between experiments than has been possible previously.

摘要

肠相关肠内淋巴组织是人体最大的次级淋巴器官,它不断从肠腔中采样抗原,作为一种默认反应,激活 TCD4 FOXP3 调节性 T 细胞,这些细胞分泌一组抗炎细胞因子,从免疫学角度维持肠道内稳态,被称为黏膜耐受性。然而,当抗原在炎症环境中被采样时,免疫反应可能是保护性的,如在有害病原体的情况下,也可能如食物过敏、炎症性肠病、乳糜泻或食物蛋白诱导的结肠炎综合征那样引起进一步的炎症反应。因此,需要准确和一致的实验模型。然而,比较这些模型的一个缺点是缺乏类似于已经用于人类的分类系统。因此,本工作的目的是提出一种实验小鼠小肠组织形态学的分类系统。为此,我们使用了我们研究小组开发的一种针对小鼠抗原特异性肠道炎症的模型。用苏木精-伊红和阿尔辛蓝染色的十二指肠切片用 APERIO 扫描系统扫描,并使用 ImageScope 软件进行分析。评估的参数包括绒毛面积、绒毛高度和宽度、肠细胞计数、单核上皮内白细胞和杯状细胞计数以及结构和细胞比值。用含有相应食物过敏原的饮食对食物致敏的动物进行挑战时,与人类一样,出现了绒毛时间依赖性缩短和变宽,伴有白细胞浸润和杯状细胞丢失。有了这些数据,我们能够为实验性肠道炎症建立一个分类系统,从而能够更好地在实验之间和实验内部进行比较。

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