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金鱼后肠黏膜器官培养的形态学研究。

Morphological studies of the goldfish hindgut mucosa in organ culture.

作者信息

Iida H, Yamamoto T

出版信息

Cell Tissue Res. 1984;238(3):523-8. doi: 10.1007/BF00219868.

Abstract

The morphology of the absorptive cells of the goldfish hindgut mucosa, and their capability for horseradish peroxidase (HRP) uptake, were investigated by electron microscopy after a 24-h organ culture. The columnar appearance and the fine structure of the absorptive cells were well preserved for 24 h at room temperature and 37 degrees C with 5% CO2 in air, in all the media used in this study. Mitoses were frequently observed in the epithelium at the bottom of cultured mucosal folds, and re-epitheliazation was also observed in many explants. Some structural changes were, however, noted in the cultured absorptive cells, as compared with the non-cultured absorptive cells; the deep invaginations of the surface membrane between the microvilli decreased in number; supranuclear giant vacuoles were reduced in size or almost disappeared; the distributional pattern of mitochondria in the absorptive cells was altered. The HRP uptake experiments showed that the absorptive cells cultured for 24 h could still take up HRP by endocytosis and transport it, indicating that the absorptive cells maintained their capability of macromolecule uptake and transport after 24 h of culture. In addition, HRP experiments, in which reaction product was detected within numerous cytoplasmic tubules (CT), various vacuoles and CT-vacuole complexes, suggested a close relationship between CT and vacuolar system in the apical cytoplasm during endocytotic events in the absorptive cells.

摘要

在进行24小时器官培养后,通过电子显微镜研究了金鱼后肠黏膜吸收细胞的形态及其摄取辣根过氧化物酶(HRP)的能力。在本研究使用的所有培养基中,在室温以及37℃、含5%二氧化碳的空气中,吸收细胞的柱状外观和精细结构在24小时内都得到了良好保存。在培养的黏膜皱襞底部的上皮中经常观察到有丝分裂,并且在许多外植体中也观察到了重新上皮化。然而,与未培养的吸收细胞相比,培养的吸收细胞出现了一些结构变化;微绒毛之间表面膜的深陷数量减少;核上巨泡尺寸减小或几乎消失;吸收细胞中线粒体的分布模式发生改变。HRP摄取实验表明,培养24小时的吸收细胞仍能通过内吞作用摄取HRP并进行转运,这表明吸收细胞在培养24小时后仍保持其摄取和转运大分子的能力。此外,HRP实验中在众多细胞质小管(CT)、各种液泡和CT - 液泡复合体中检测到反应产物,这表明在吸收细胞的内吞事件中,顶端细胞质中的CT与液泡系统之间存在密切关系。

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