Jansen W F, van Loveren H, Woutersen R A, de Weger R A
Histochemistry. 1976 Sep 13;48(4):293-306. doi: 10.1007/BF00499246.
In the saccus dorsalis of the rainbow trout, Salmo gairdneri Richardson, the activity of various enzymes (transferase, lyases, oxidoreductases, hydrolases) have been studied in detail. The results of this enzyme-cytochemical study firmly demonstrate that the organ is metabolically highly active. The epithelial cells have a strong energy metabolism. Energy production can take place under aerobic as well as under anaerobic conditions. Evidence is presented that glucose from blood is directly utilized for energy demands. The epithelial cells show also high synthetic activities. The moderate amino acid metabolism may participate in the synthesis of an acid mucopolysaccharide-protein complex, especially in the so-called dark cells. Lipid metabolism appears to be restricted to the mitochondria, indicating a high turnover of lipid moieties in the membranes. In contrast to the normal looking mitochondria, the macromitochondria--besides shape and localization--have an extremely high lipid and monoamine metabolism, which may point to a special function in the cellular economy. The high activity of enzymes involved in the degradation of monoamines and in the hydration of CO2 is of particular physiological interest. The significance of the observations is discussed in relation to formerly obtained indications on the involvement of the saccus dorsalis in fluid secretion, extrusion of organic substances of low molecular weight into the ventricular system and uptake of organic substances from the cerebrospinal fluid. The hypothesis of the saccus dorsalis being an analogue of the choroid plexus is supported by several relevant data.
在虹鳟鱼(Salmo gairdneri Richardson)的背囊中,对各种酶(转移酶、裂合酶、氧化还原酶、水解酶)的活性进行了详细研究。这项酶细胞化学研究的结果有力地证明,该器官在代谢方面高度活跃。上皮细胞具有很强的能量代谢。能量产生可在有氧和无氧条件下进行。有证据表明,血液中的葡萄糖直接用于满足能量需求。上皮细胞还表现出高合成活性。适度的氨基酸代谢可能参与酸性粘多糖 - 蛋白质复合物的合成,特别是在所谓的暗细胞中。脂质代谢似乎局限于线粒体,这表明膜中脂质部分的周转率很高。与外观正常的线粒体相比,巨型线粒体——除了形状和定位外——具有极高的脂质和单胺代谢,这可能表明其在细胞代谢中具有特殊功能。参与单胺降解和二氧化碳水合作用的酶的高活性具有特殊的生理意义。结合先前关于背囊参与液体分泌、将低分子量有机物质排入脑室系统以及从脑脊液中摄取有机物质的迹象,对这些观察结果的意义进行了讨论。背囊是脉络丛类似物的假设得到了一些相关数据的支持。