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晶状体囊(假性)剥脱的超微结构观察:对晶状体上皮受累情况的重新审视

Ultrastructural observations on (pseudo-) exfoliation of the lens capsule: a re-examination of the involvement of the lens epithelium.

作者信息

Bergmanson J P, Jones W L, Chu L W

出版信息

Br J Ophthalmol. 1984 Feb;68(2):118-23. doi: 10.1136/bjo.68.2.118.

Abstract

One lens each from 2 separate patients suffering from pseudoexfoliation and one lens from a normal eye were examined ultrastructurally. The normal lens capsule was internally lamellar in places and externally of a somewhat reduced electron density but otherwise of a homogeneous appearance and free of inclusions. Observations on the abnormal lenses revealed an electron dense and mainly granular but sometimes fibrillar material along the surface of the peripheral one-third of the capsule. Material of similar ultrastructural appearance was also found deeper in the capsule and in the immediately underlying epithelium. Since the capsule close to the pole of the lens was completely free of these abnormal inclusions and the underlying epithelium also lacked this material, it is concluded that the lens epithelium is a source of the surface debris in pseudoexfoliation. These findings therefore support previous authors who proposed a lenticular involvement in this disease. The present study does, however, not rule out the possibility of a uveal contribution of abnormal material but disputes its exclusive involvement in this disease, as has previously been postulated. Build-up of exfoliated material close to the capsular surface caused an apparent peeling of the lens capsule. It is therefore concluded that the anomalous lenses suffered from a true exfoliative process that may be more correctly termed 'exfoliation of the lens capsule.'

摘要

对2例假性剥脱患者的各1枚晶状体以及1枚正常眼的晶状体进行了超微结构检查。正常晶状体囊膜在某些部位内部呈板层状,外部电子密度有所降低,但外观均匀,无内含物。对异常晶状体的观察发现,在囊膜周边三分之一表面有电子致密、主要为颗粒状但有时为纤维状的物质。在囊膜更深层以及紧邻其下的上皮细胞中也发现了超微结构外观相似的物质。由于靠近晶状体极部的囊膜完全没有这些异常内含物,其下的上皮细胞也没有这种物质,因此得出结论,晶状体上皮细胞是假性剥脱中表面碎屑的来源。这些发现因此支持了先前提出晶状体参与该病的作者们的观点。然而,本研究并不排除葡萄膜产生异常物质的可能性,但对先前假设的葡萄膜在该病中的唯一作用提出了质疑。靠近囊膜表面的剥脱物质堆积导致晶状体囊膜明显剥离。因此得出结论,这些异常晶状体经历了一个真正的剥脱过程,或许更准确地称为“晶状体囊膜剥脱”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52bd/1040268/38012cb76e6d/brjopthal00146-0078-a.jpg

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