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培养中表皮细胞的细胞间接触及分化的钙调节。一项超微结构研究。

Calcium regulation of cell-cell contact and differentiation of epidermal cells in culture. An ultrastructural study.

作者信息

Hennings H, Holbrook K A

出版信息

Exp Cell Res. 1983 Jan;143(1):127-42. doi: 10.1016/0014-4827(83)90115-5.

Abstract

Calcium modulation of keratinocyte growth in culture was studied by both transmission (TEM) and scanning electron microscopy (SEM). Under standard culture conditions (1.2-1.8 mM calcium), cells were connected by desmosomes and stratified to 4-6 cell layers. Many aspects of in vitro epidermal maturation were analogous to the in vivo process, with formation of keratohyalin granules, loss of nuclei, formation of cornified envelopes and shedding of cornified cells containing keratin filaments. When the medium calcium concentration was lowered to 0.02-0.1 mM, the pattern of keratinocyte growth was strikingly changed. Cells grew as a monolayer with no desmosomal connections and proliferated rapidly, shedding largely non-cornified cells into the medium. Large bundles of keratin filaments were concentrated in the perinuclear cytoplasm. The elevation of extracellular calcium to 1.2 mM induced low calcium keratinocytes to stratify, keratinize and cornify in a manner analogous to that seen when plated in standard calcium medium. The earliest calcium-induced ultrastructural change was the asymmetric formation of desmosomes between adjacent cells. Desmosomal plaques with associated tonofilaments were observed 5 min after calcium addition; symmetric desmosomes were formed within 1-2 h. This system is presented as a useful model for the study of the regulation of desmosome assembly and disassembly.

摘要

通过透射电子显微镜(TEM)和扫描电子显微镜(SEM)研究了培养的角质形成细胞生长的钙调节。在标准培养条件(1.2 - 1.8 mM钙)下,细胞通过桥粒连接并分层至4 - 6个细胞层。体外表皮成熟的许多方面与体内过程相似,有透明角质颗粒的形成、细胞核的丢失、角质化包膜的形成以及含有角蛋白丝的角质化细胞的脱落。当培养基钙浓度降至0.02 - 0.1 mM时,角质形成细胞的生长模式发生显著变化。细胞以单层生长,无桥粒连接,迅速增殖,大量向培养基中释放未角质化细胞。大束角蛋白丝集中在核周细胞质中。将细胞外钙浓度提高到1.2 mM会诱导低钙角质形成细胞分层、角质化和角化,其方式类似于接种在标准钙培养基中的情况。最早的钙诱导超微结构变化是相邻细胞之间不对称地形成桥粒。添加钙后5分钟观察到带有相关张力丝的桥粒斑;1 - 2小时内形成对称桥粒。该系统被视为研究桥粒组装和解聚调节的有用模型。

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