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关于釉质成熟阶段成釉细胞交替形态变化的超微结构和细胞化学观察

Ultrastructural and cytochemical observations on the alternating morphologic changes of the ameloblasts at the stage of enamel maturation.

作者信息

Takano Y, Ozawa H

出版信息

Arch Histol Jpn. 1980 Dec;43(5):385-99. doi: 10.1679/aohc1950.43.385.

Abstract

The functional role of the alternating morphologic changes of the rat and hamster incisor ameloblasts at the stage of enamel maturation was investigated. Special attention was paid to the distribution of the intravenously injected horseradish peroxidase (HRP) throughout the ameloblastic layer. The ameloblasts at the stage of enamel maturation were divided into two groups with respect to their distal cell borders: ruffle-ended (RA) and smooth-ended ameloblasts (SA). In the ameloblastic layer, SA were distributed as several band-like structures (SA-bands) which ran transversely or obliquely along the distal surface of the ameloblastic layer. Intravenously injected HRP permeated the intercellular spaces of SA and reached the surface of the enamel, however it did not penetrate the distal junctions of RA. Five min after the injection, HRP was incorporated into the cytoplasmic vesicles of RA, while no incorporation was shown in SA. After 1 hr, however, HRP was incorporated into the incisal one-third of the ameloblasts in each SA-band. Acid phosphatase activity (p-nitrophenylphosphatase) was shown in the cytoplasmic vesicles, both in RA and SA. The most intense alkaline phosphatase activity was located on the ruffled border of RA, while no activity was detected on the unmodified apices of SA. Contact microradiography revealed a gradual increase of the radio opacity of enamel towards the incisal direction independent of the alternating changes of overlaying RA and SA. However, the fluorescence of injected tetracycline showed intense labelling at the portions of enamel which corresponded to RA. The portions of enamel being overlayed by SA were located in between such labelled areas and showed only faint fluorescence of tetracycline. These results suggest that, RA actively degrade, resorb and then digest the organic matrices of the enamel and also transport minerals into the enamel. It is also suggested that SA are formed from the RA which have become inactive metabolically and here the exhausted cytoplasmic organelles seem to be renewed and reactivated.

摘要

研究了大鼠和仓鼠切牙成釉细胞在釉质成熟阶段交替出现的形态变化的功能作用。特别关注了静脉注射辣根过氧化物酶(HRP)在整个成釉细胞层中的分布。根据成釉细胞远端细胞边界,将釉质成熟阶段的成釉细胞分为两组:皱缘成釉细胞(RA)和平滑缘成釉细胞(SA)。在成釉细胞层中,SA呈几条带状结构(SA带)分布,这些带沿成釉细胞层的远端表面横向或斜向延伸。静脉注射的HRP渗透到SA的细胞间隙并到达釉质表面,但未穿透RA的远端连接。注射后5分钟,HRP被摄入RA的细胞质小泡中,而SA中未显示摄入。然而,1小时后,HRP被摄入每个SA带中成釉细胞的切端三分之一处。在RA和SA的细胞质小泡中均显示出酸性磷酸酶活性(对硝基苯磷酸酶)。最强的碱性磷酸酶活性位于RA的皱缘,而在SA未修饰的顶端未检测到活性。接触式显微放射照相显示,釉质的射线不透性向切端方向逐渐增加,与覆盖的RA和SA的交替变化无关。然而,注射的四环素荧光显示,在与RA相对应的釉质部分有强烈标记。被SA覆盖的釉质部分位于这些标记区域之间,仅显示出微弱的四环素荧光。这些结果表明,RA积极降解、吸收并消化釉质的有机基质,还将矿物质转运到釉质中。还表明,SA由代谢变得不活跃的RA形成,此处耗尽的细胞质细胞器似乎得到更新并重新激活。

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