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胎儿脑损伤在绵羊弓形虫早期流产中的特征。

Characterization of Fetal Brain Damage in Early Abortions of Ovine Toxoplasmosis.

机构信息

Universidad de León, Campus de Vegazana, León, Spain.

Instituto de Ganadería de Montaña (CSIC-Universidad de León), Grulleros, León, Spain.

出版信息

Vet Pathol. 2020 Jul;57(4):535-544. doi: 10.1177/0300985820921539. Epub 2020 May 14.

Abstract

There is an unacknowledged clinical presentation of ovine toxoplasmosis characterized by early abortions and lesions of fetal leukoencephalomalacia. To investigate the pathogenesis of this condition, the extent and distribution of leukomalacia and the variations in the cell populations associated with it were characterized in 32 fetal brains from 2 previously published experimental studies of infection in pregnant sheep. Immunohistochemical labeling of βAPP allowed for the detection of leukomalacia in 100/110 (91%) studied samples. There was no clear influence of the challenge dose or the area of the brain (frontal lobe, corpus callosum, midbrain, and cerebellum). In tissues with leukomalacia, there was loss of oligodendrocytes and increased number of astrocytes and microglia both in the areas of necrosis but also in the surrounding area. These findings were similar to those described in ovine experimental models (inflammation syndrome and hypoxic models) of periventricular leukomalacia in humans. Thus, a fetal inflammatory syndrome may be involved in the pathogenesis of early abortion in ovine toxoplasmosis. However, further studies are needed to determine the pathogenesis of this clinical presentation because placental thrombosis and resulting hypoxia could also be responsible for the leukomalacia.

摘要

有一种未被认识到的绵羊弓形虫病的临床特征,表现为早期流产和胎儿脑白质软化病变。为了研究这种情况的发病机制,我们对来自 2 个先前发表的感染怀孕绵羊的实验研究中的 32 个胎儿脑进行了研究,分析了脑白质软化的程度和分布以及与之相关的细胞群体的变化。βAPP 的免疫组化标记可检测到 110 个研究样本中的 100 个(91%)存在脑白质软化。挑战剂量或脑的区域(额叶、胼胝体、中脑和小脑)似乎没有明显的影响。在有脑白质软化的组织中,无论是在坏死区域还是在周围区域,少突胶质细胞丢失,星形胶质细胞和小胶质细胞数量增加。这些发现与人类脑室周围白质软化的绵羊实验模型(炎症综合征和缺氧模型)中描述的情况相似。因此,胎儿炎症综合征可能参与了绵羊弓形虫病早期流产的发病机制。然而,需要进一步的研究来确定这种临床表现的发病机制,因为胎盘血栓形成和由此导致的缺氧也可能是脑白质软化的原因。

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