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光秋水仙碱、秋水仙碱和长春花碱对鱼类色素细胞中色素迁移的影响。

The effects of lumicolchicine, colchicine and vinblastine on pigment migration in fish chromatophores.

作者信息

Obika M, Turner W A, Negishi S, Menter D G, Tchen T T, Taylor J D

出版信息

J Exp Zool. 1978 Jul;205(1):95-110. doi: 10.1002/jez.1402050112.

Abstract

The effects of lumicolchicine, colchicine, vinblastine and cold temperature on the pigment migration in melanophores and xanthophores of Fundulus heteroclitus and Oryzias latipes were examined by light and electron microscopy. Xanthophores of both species which contain numerous microfilaments and a poorly developed microtubule system were extremely sensitive to the alkaloids. Lumicolchicine and colchicine induced irreversible dispersion while vinblastine caused permanent aggregation of the pigments. Treatment in lumicolchicine or colchicine at 5 mM for 60 minutes did not disrupt microtubules of melanophores to an appreciable degree, however, melanosome aggregation was partially inhibited by these drug in Oryzias. When melanophores were kept in the cold in the presence of colchicine at 1 mM, almost all microtubules were disrupted and their repolymerization at room temperature was nearly completely inhibited by colchicine. These melanophores lacking in microtubules responded to epinephrine with slow aggregation. Vinblastine at 0.1 mM induced partial aggregation of melanosomes and disruption of microtubules but most melanophores were still able to respond with pigment migration. Vinblastine at 1 mM made all melanophores punctate and immobile. Large vinblastine-induced crystals were frequently seen in the dendritic processes. The results of the present investigation suggest that cytoplasmic microtubules in fish melanophores facilitate melanosome migration only in directional orientation and appear not be responsible for the motive force.

摘要

通过光学显微镜和电子显微镜检查了光秋水仙碱、秋水仙碱、长春花碱和低温对异育银鲫和青鳉黑素细胞和黄色素细胞中色素迁移的影响。两种鱼的黄色素细胞含有大量微丝且微管系统发育不良,对生物碱极为敏感。光秋水仙碱和秋水仙碱诱导不可逆的色素分散,而长春花碱导致色素永久聚集。在5 mM的光秋水仙碱或秋水仙碱中处理60分钟,并未使黑素细胞的微管受到明显破坏,然而,在青鳉中这些药物部分抑制了黑素体聚集。当黑素细胞在1 mM秋水仙碱存在下置于低温环境时,几乎所有微管都被破坏,并且在室温下它们的重新聚合几乎完全被秋水仙碱抑制。这些缺乏微管的黑素细胞对肾上腺素的反应是缓慢聚集。0.1 mM的长春花碱诱导黑素体部分聚集并破坏微管,但大多数黑素细胞仍能对色素迁移做出反应。1 mM的长春花碱使所有黑素细胞呈点状且静止不动。在树突状突起中经常可见大量长春花碱诱导的晶体。本研究结果表明,鱼类黑素细胞中的细胞质微管仅在定向迁移中促进黑素体迁移,似乎并不负责提供动力。

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