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迪斯帕内变形虫导致的阿米巴肝脓肿。

Amoebic liver abscess production by Entamoeba dispar.

机构信息

Department of Morphology, Laboratory of Parasitology, Federal University of Sergipe, Aracaju, Sergipe, Brazil.

出版信息

Ann Hepatol. 2012 Jan-Feb;11(1):107-17.

Abstract

Although Entamoeba dispar displays a similar morphology to Entamoeba histolytica, cellular and molecular studies have revealed significant differences between these two amoebae, including the former being characterized as non-pathogenic and the later as pathogenic. However, recent in vivo and in vitro experiments have shown that E. dispar strains of different origin are capable of causing liver damage and destroying cell culture lines in the presence of common intestinal bacteria. These results suggested that E. dispar may present pathogenic behavior according to the specific E. dispar strain, culture and environmental conditions. To investigate this possibility, we carried out in vivo and in vitro studies using a xenic strain E. dispar (ICB-ADO) isolated from a symptomatic non-dysenteric Brazilian patient. This strain was able to induce liver necrosis in a hamster model that was more severe than that produced by E. histolytica. The ICB-ADO isolate also caused significantly more destruction of cultured MDCK cells and increased loss of transepithelial resistance than did the E. histolytica. Xenic E. dispar exhibited high proteolytic activity, which was partially inhibited by the addition of cysteine-protease inhibitors. Based on our biochemical and molecular characterization of E. dispar (ICB-ADO) xenic culture and its ability to produce liver abscesses, we conclude that this specific strain can indeed produce tissue damage, distinct from the frequently used non- pathogenic E. dispar SAW 760 strain.

摘要

虽然迪斯帕阿米巴与溶组织内阿米巴具有相似的形态,但细胞和分子研究揭示了这两种阿米巴之间存在显著差异,包括前者为非致病性,后者为致病性。然而,最近的体内和体外实验表明,不同来源的迪斯帕阿米巴菌株在存在常见肠道细菌的情况下能够导致肝损伤并破坏细胞培养系。这些结果表明,迪斯帕阿米巴可能根据特定的迪斯帕阿米巴菌株、培养和环境条件表现出致病性行为。为了研究这种可能性,我们使用从巴西一位有症状但非痢疾患者中分离出的异种株迪斯帕阿米巴(ICB-ADO)进行了体内和体外研究。该菌株能够在仓鼠模型中诱导比溶组织内阿米巴更严重的肝坏死。与溶组织内阿米巴相比,ICB-ADO 分离株还导致培养的 MDCK 细胞的破坏显著增加,并且跨上皮电阻的损失增加。异种迪斯帕阿米巴表现出高蛋白酶活性,该活性可部分被半胱氨酸蛋白酶抑制剂抑制。基于我们对异种培养的迪斯帕阿米巴(ICB-ADO)的生化和分子特征及其产生肝脓肿的能力的研究,我们得出结论,该特定菌株确实能够产生组织损伤,与常用的非致病性迪斯帕阿米巴 SAW 760 菌株不同。

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