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Detection of amastigotes and histopathological alterations in the thymus of Leishmania infantum‐infected dogs

机译:利什曼尼亚幼稚病感染犬胸腺胸腺和组织病理学改变的检测

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Introduction In canine visceral leishmaniasis (CVL), lymphopenia, and the disorganization of lymphoid organs such as spleen and lymph nodes have been demonstrated. However, the involvement of thymus in CVL has not been evaluated so far. Herein, we investigated whether the thymus can be colonized by Leishmania infantum in naturally infected dogs. Methods Thymus were obtained from 16 of 58 dogs and samples of this organ were submitted to immunohistochemistry for laminin and fibronectin detection, histopathology, in situ hybridization and polymerase chain reaction (PCR) targeting the gene ITS‐1 for Leishmania and sequenced. Samples of spleen, skin and popliteal lymph nodes were collected and submitted to immunohistochemistry and parasitological culture followed by multilocus enzyme electrophoresis. Results L. infantum was identified in all dogs. DNA and amastigote forms of Leishmania were detected in the thymus from 16 dogs by PCR and in eight by immunohistochemistry. Besides thymus, parasites were detected in spleen, lymph nodes, and skin. A granulomatous or pyogranulomatous thymitis was observed in eight dogs associated to intact amastigotes forms of this parasite. Fibronectin deposition in thymus was higher in dogs with more clinical signs. Conclusions These results demonstrate that the thymus of dogs can be parasitized by L. infantum, which may generate inflammatory reactions leading to alterations in thymic microarchitecture.
机译:鉴于犬内脏LeishManiais(CVL),淋巴细胞和淋巴结如脾脏和淋巴结等淋巴结的混乱的引言。然而,到目前为止,胸腺量在CVL中的参与尚未评估。在此,我们研究了胸腺是否可以通过Leishmania Infantum在天然感染的狗中殖民。方法从58只狗的16个中获得胸腺,将该器官的样品提交给Laminin和纤连蛋白检测,组织病理学,原位杂交和聚合酶链反应(PCR)的免疫组化,靶向Leishmania和测序。收集脾脏,皮肤和饲养淋巴结淋巴结的样品,并提交给免疫组织化学和寄生学培养,然后进行多层酶电泳。结果L. Infantum在所有狗中都已发现。通过PCR的16只狗在胸腺中检测到Leishmania的DNA和Amastigote形式,并通过免疫组化八。除了胸腺外,在脾脏,淋巴结和皮肤中检测到寄生虫。在八只狗中观察到肉芽肿或肥嘎族尿素胸腺炎,其与这种寄生虫的完整的Amastigotes形式相关联。胸腺中的纤维凝集素沉积在狗中较高,患有更多的临床症状。结论这些结果表明,狗的胸腺可以通过L. Infantum寄生,这可能产生炎症反应,导致胸腺微体系结构的变化。

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