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Viability loss and ultrastructural changes on protoscolices of human hydatid cysts induced by retinoic acid

机译:维甲酸诱导人包虫囊原囊的活力丧失和超微结构变化

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Surgical removal of intact hydatid cyst is the most effective treatment for hydatid disease. Recurrence of hydatid cyst is mainly due to dissemination of protoscolices (PSCs) rich fluid during the surgical operation. Therefore, preoperative instillation of a scolicidal agent into the cyst is a common practice with adverse side effects of the used drugs. All-trans retinoic acid (atRA) is the physiological mediator of most of the functions of vitamin A, particularly as a cellular differentiation and apoptosis regulating factor. We hypothesized that instillation of atRA could provide an alternative safe scolicidal approach. We tested the scolicidal effects and ultrastructural changes imposed by atRA on human hydatid cyst PSCs in vitro. Freshly isolated hydatid cyst PSCs were subjected to atRA (at 16.7, 1.67, 0.167 μM and 16.7 nM/L). Changes in protoscolices viability (0.1% eosin exclusion) and morphology (scanning and transmission electron microscopy; SEM and TEM) were investigated. Dose-dependent PSCs death within few minutes to 7 days of exposure to atRA was observed. SEM demonstrated ultrastructural damages including rosteller disorganization, loss of hooks and distortion of hooks morphology. TEM revealed loss of the integrity of the internal tissues of PSCs, an increased vacuolization, formation of large lipid droplets in the distal cytoplasm and aberrant, rounded abnormally large sized mitochondria. atRA is a promising alternative to the available synthetic and chemical scolicidal agents. However, in vivo scolicidal activities of atRA and the possible side effects necessitate further studies.
机译:手术去除完整的包虫囊肿是治疗包虫病的最有效方法。包虫囊肿的复发主要是由于在外科手术期间散布了富含原鞘(PSC)的液体。因此,术前将杀卵剂注射到囊肿中是一种常见的做法,存在使用过的药物的不良副作用。全反式维甲酸(atRA)是维生素A大部分功能的生理介质,尤其是作为细胞分化和凋亡调节因子。我们假设滴注atRA可以提供另一种安全的杀伤方法。我们在体外测试了atRA对人包虫囊PSC的杀伤作用和超微结构变化。将新鲜分离的包虫囊状PSC进行atRA(分别为16.7、1.67、0.167μM和16.7 nM / L)。研究了原黏膜活力(0.1%曙红除外)和形态(扫描和透射电镜; SEM和TEM)的变化。在暴露于atRA的几分钟到7天内观察到了剂量依赖性PSC的死亡。扫描电镜显示了超微结构的破坏,包括罗氏体紊乱,钩子脱落和钩子形态变形。 TEM显示PSCs内部组织的完整性丧失,空泡化增加,远端细胞质中大脂质滴的形成以及异常,圆形异常大的线粒体。 atRA是现有合成和化学杀伤剂的有前途的替代品。但是,atRA的体内杀伤活性及其可能的副作用需要进一步研究。

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