人先天性脑积水、Arnold-Chiari畸形和脑膜炎后脑积水的线粒体形态病理改变。电子显微镜研究

Orl, O. Castejón
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引用次数: 0

摘要

Vuia1报道了两个双胞胎兄弟被诊断为先天性脑海绵状变性,其特征是线粒体内片状小体的积聚,细胞质中游离,倾向于形成多片状或指纹型包涵体。Watanabe2描述了一例51岁/2的先天性肌病男孩,伴有沟通性脑积水,肌原纤维紊乱和z带流,线粒体减少或缺失。这些作者认为,共同的发病机制可能涉及肌病和脑积水的发展。Kaur和Ling3发现,蓖麻毒素诱发的产后脑积水大鼠线粒体肿胀和解体。Madhavi和Jacob4对脑积水豚鼠脉络膜室管膜中的线粒体进行了形态学研究,观察到脑积水动物包括嵴在内的线粒体内膜明显减少。根据这些作者的说法,这种表面积的减少可能归因于梗阻性脑积水中脉络膜室管膜细胞活性的降低。Castejón5区分人脑积水大脑皮层不同程度的线粒体肿胀。Boillat等人6描述了遗传性脑积水的幼龄大鼠的深部皮质锥体细胞中线粒体畸变。Castejón等人7详细研究了与严重和复杂的脑外伤、肿瘤和人类脑积水相关的人类大脑皮质水肿线粒体的病理变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mitochondria morphopathological changes in human congenital hydrocephalus, Arnold-Chiari malformation and postmeningitis hydrocephalus. An electron microscopic study
Vuia1 reported two twin brothers diagnosed with congenital spongy degeneration of the brain featured by accumulation of lamellar bodies within the mitochondria, and free in the cellular cytoplasm with tendency to form inclusions of the multilamellar or finger-print type. Watanabe2 described in a 51/2-year-old boy with congenital myopathy associated with communicating hydrocephalus myofibrillar disorganization and Z-band streaming with decrease or absence of mitochondria. These Authors considered that common pathogenetic mechanism may have been involved in the development of both the myopathy and the hydrocephalus. Kaur and Ling3 found swelling and disintegration of mitochondria in ricin-induced hydrocephalus in postnatal rats. Madhavi and Jacob4 carried out a morphometry study of mitochondria in the choroidal ependyma of hydrocephalic guinea pigs, and observed that the inner membrane of the mitochondria including cristae exhibited a significant decrease in the hydrocephalic animals. According to these Authors, this reduction in the surface area could probably be attributed to the reduced activity of choroid ependymal cells in obstructive hydrocephalus. Castejón5 distinguished variable degrees of mitochondrial swelling in human hydrocephalic cerebral cortex. Boillat et al.6 described distorted mitocondria in the deep cortical pyramidal cells of infant rats with inherited hydrocephalus. Castejón et al.7 examined in details the pathological changes of mitochondria in the edematous human cerebral cortex associated to severe and complicated brain trauma, tumors, and in a preliminary way the human hydrocephalus.
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