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Ultrastructural Analysis of the Human Lens Fiber Cell Remodeling Zone and the Initiation of Cellular Compaction

机译:人晶状体纤维细胞重塑区的超微结构分析和细胞压实的启动

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摘要

The purpose is to determine the nature of the cellular rearrangements occurring through the remodeling zone (RZ) in human donor lenses, identified previously by confocal microscopy to be about 100 µm from the capsule. Human donor lenses were fixed with 10% formalin followed by 4% paraformaldehyde prior to processing for transmission electron microscopy. Of 27 fixed lenses, ages 22, 55 and 92 years were examined in detail. Overview electron micrographs confirmed the loss of cellular organization present in the outer cortex (80 µm thick) as the cells transitioned into the RZ. The transition occurred within a few cell layers and fiber cells in the RZ completely lost their classical hexagonal cross-sectional appearance. Cell interfaces became unusually interdigitated and irregular even though the radial cell columns were retained. Gap junctions appeared to be unaffected. After the RZ (40 µm thick), the cells were still irregular but more recognizable as fiber cells with typical interdigitations and the appearance of undulating membranes. Cell thickness was irregular after the RZ with some cells compacted, while others were not, up to the zone of full compaction in the adult nucleus. Similar dramatic cellular changes were observed within the RZ for each lens regardless of age. Because the cytoskeleton controls cell shape, dramatic cellular rearrangements that occur in the RZ most likely are due to alterations in the associations of crystallins to the lens-specific cytoskeletal beaded intermediate filaments. It is also likely that cytoskeletal attachments to membranes are altered to allow undulating membranes to develop.
机译:目的是确定在人类供体晶状体中通过重塑区(RZ)发生的细胞重排的性质,先前通过共聚焦显微镜鉴定为距胶囊约100μm。将人供体晶状体先用10%福尔马林固定,再用4%多聚甲醛固定,然后再进行透射电子显微镜处理。在27个固定镜头中,详细检查了22、55和92岁的年龄。概览电子显微照片证实,当细胞转变为RZ时,外皮层(80 µm厚)中存在的细胞组织消失。过渡发生在几个细胞层内,RZ中的纤维细胞完全失去了其经典的六边形横截面外观。即使保留了放射状细胞柱,细胞界面也变得异常指状和不规则。间隙连接似乎不受影响。在RZ(40 µm厚)之后,细胞仍然是不规则的,但更易于识别为具有典型叉指和起伏膜外观的纤维细胞。 RZ后的细胞厚度是不规则的,其中一些细胞被压实,而另一些则没有,直至成年核中的完全压实区域。不论年龄大小,每个镜片在RZ内均观察到类似的剧烈细胞变化。因为细胞骨架控制细胞形状,所以在RZ中发生的剧烈细胞重排很可能是由于晶状蛋白与晶状体特异性细胞骨架珠状中间丝的结合改变。膜上的细胞骨架附着也可能发生改变,从而使起伏的膜形成。

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