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电子显微镜下显示的博来霉素对人舌癌细胞的作用。

Effects of bleomycin on human tongue carcinoma cells as revealed by electron microscopy.

作者信息

Yasuzumi G, Hyo Y, Hoshiya T, Yasuzumi F

出版信息

Cancer Res. 1976 Oct;36(10):3574-83.

PMID:60170
Abstract

Five patients with tongue carcinoma were treated for 20 days with bleomycin, 15 mg/day, given by one-shot infusion through the superficial temporal artery. Specimens were taken 7, 14, and 20 days after the initial administration for light and electron microscope observations. The first alterations observed were the decrease of electron-dense chromatin clumps in nuclei and, simultaneously, the segregation of nucleolar components, i.e., amorphous protein component segregated from fibrillar and granular components. Subsequently, numerous nuclear bodies appeared in the nucleoplasm, which were observed for the first time in human tongue carcinoma cell nuclei in cases of bleomycin treatment. On the other hand, the cytoplasmic alterations were recognized by the decrease in number of mitochondria and by the appearance of numerous free ribosomes followed by the formation of tonofilaments. The cells enlarged because tonofilaments flocked together to make cancer cell nests, which were gradually together to make cancer cell nests, which were gradually transformed into a keratinic structure showing the so-called cancer pearl pattern. Finally, cancer cells were degenerated nearly to necrosis; there was no evidence of recurrence of cancer. Although the precise mechanism of the effect of bleomycin on nuclear activities of human tongue cancer cells remains unsettled because of the lack of cytochemical analysis, it is believed that bleomycin inhibits DNA synthesis and might also activate ribosomal RNA synthesis.

摘要

5例舌癌患者接受博来霉素治疗,剂量为15毫克/天,通过颞浅动脉一次性输注,持续20天。在初次给药后7天、14天和20天采集标本,进行光镜和电镜观察。观察到的最初变化是细胞核中电子致密染色质团块减少,同时核仁成分分离,即无定形蛋白质成分与纤维状和颗粒状成分分离。随后,核质中出现大量核体,这是博来霉素治疗的人类舌癌细胞核中首次观察到的。另一方面,细胞质的变化表现为线粒体数量减少,出现大量游离核糖体,随后形成张力丝。细胞因张力丝聚集形成癌细胞巢而增大,癌细胞巢逐渐转化为显示所谓癌珠模式的角质结构。最后,癌细胞几乎退化至坏死;没有癌症复发的迹象。尽管由于缺乏细胞化学分析,博来霉素对人类舌癌细胞核活性的作用的确切机制尚不清楚,但据信博来霉素可抑制DNA合成,也可能激活核糖体RNA合成。

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