首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Gravitational field enhances permeability of biological membranes to sucrose: an experimental refutation of sucrose-space hypothesis.
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Gravitational field enhances permeability of biological membranes to sucrose: an experimental refutation of sucrose-space hypothesis.

机译:引力场增强了生物膜对蔗糖的渗透性:对蔗糖空间假说的实验性驳斥。

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摘要

Isotonic conditions for the integrity of subcellular organelles are shown to be remarkably influenced by the concentration of sucrose present during their isolation by centrifugation. Using the technique of enzyme osmometry, we show that the content of sucrose in synaptosomes reflects nearly total equilibration across the membrane during centrifugation, due to altered permeability of membranes. Presence of sucrose in the matrix space of mitochondria, as demonstrated by enzyme osmometry of matrix enzymes, indicates that the sucrose-space hypothesis is invalid.
机译:已证明亚细胞细胞器完整性的等渗条件受离心分离过程中存在的蔗糖浓度的显着影响。使用酶渗透压技术,我们显示,由于膜的通透性改变,突触体中蔗糖的含量几乎反映了整个离心过程中整个膜的平衡。线粒体基质空间中的蔗糖存在,正如基质酶的酶渗透压法所证实的那样,表明蔗糖空间假说是无效的。

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