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淡水蜗牛椎实螺(Lymnaea stagnalis (L.))中神经分泌深绿色细胞活性控制的形态计量学体外分析

Morphometric in vitro analysis of the control of the activity of the neurosecretory dark green cells in the freshwater snail Lymnaea stagnalis (L.).

作者信息

Roubos E W, Moorer-Van Delft C M

出版信息

Cell Tissue Res. 1976 Oct 29;174(2):221-31. doi: 10.1007/BF00222160.

Abstract

The neurosecretory Dark Green Cells (DGC) in the pleural and parietal ganglia of the freshwater snail Lymnaea stagnalis seem to be involved in osmoregulation. Previous experiments have indicated that changes of the osmolality of the environment induce activity changes of the DGC. Furthermore, it was shown that information on environmental osmolality reaches the DGC via the blood. In the present study right pleural and parietal ganglion complexes were cultured for 3 days in vitro under different osmotic conditions. Quantitative electron microscopy revealed that, compared with the control osmolality (130mOsm/kg H2O), osmolalities of 160 and 190 mOsm/kg H2O caused a reduced synthesis and an increased storage of neurohormone in the DGC. Apparently, the activity of the DGC depended on the osmotic pressure of the medium. It is proposed that in vivo the osmotic pressure of the blood (which is related to the osmolality of the environment) regulates DGC activity.

摘要

淡水螺椎实螺胸膜和壁神经节中的神经分泌深绿细胞(DGC)似乎参与了渗透压调节。先前的实验表明,环境渗透压的变化会引起DGC的活性变化。此外,研究表明环境渗透压的信息通过血液传递到DGC。在本研究中,右胸膜和壁神经节复合体在不同渗透条件下体外培养3天。定量电子显微镜显示,与对照渗透压(130mOsm/kg H2O)相比,160和190 mOsm/kg H2O的渗透压导致DGC中神经激素的合成减少和储存增加。显然,DGC的活性取决于培养基的渗透压。有人提出,在体内血液的渗透压(与环境渗透压相关)调节DGC的活性。

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