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首页> 外文期刊>Open Journal of Biophysics >Aging Leads to Over-Expression of Na&sup&+&/sup&/K&sup&+&/sup& Pump Units in Liver and Na&sup&+&/sup&/Ca&sup&2+&/sup& Exchangers in Brain Cortex
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Aging Leads to Over-Expression of Na&sup&+&/sup&/K&sup&+&/sup& Pump Units in Liver and Na&sup&+&/sup&/Ca&sup&2+&/sup& Exchangers in Brain Cortex

机译:老化导致Na sup + / sup / K sup + sup的过表达。肝中的泵单位和Na + sup / sup / Ca sup 2+ sup。大脑皮层中的交换者

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摘要

The metabolic controlling of tissue hydration is the fundamental parameter determining cell functional activity and its dysfunction is the common consequence of any cell pathology, including aging. The aim of the present study is to reveal the differences of age-dependent metabolic controlling of cell hydration of excitable tissue such as brain cortex and non-excitable tissues such as liver and spleen. For this purpose, the age-dependent sensitivity of cell hydration in excitable and non-excitablet issues is studied through depressing metabolic activity by cooling and its activation by supplying animals with distilled water, by inactivation of Na~(+)/K~(+) pump and activation of Na~(+)/Ca~(2+) exchange in the reverse mode. The obtained data bring us to the conclusion that the metabolic regulation of cell hydration in excitable tissue is realized by the activation of electrogenic Na~(+)/K~(+) pump and Na~(+)/Ca~(2+) exchange in the cell membrane and the formation of endogen water by mitochondrial activity, while the regulation of cell hydration in non-excitable tissue is carried out only by the activity of mitochondrial function. Aging leads to an over-expression of Na~(+)/K~(+) pump units in liver and Na~(+)/Ca~(2+) exchanger in brain cortex of rats.
机译:组织水合的代谢控制是决定细胞功能活动的基本参数,其功能障碍是任何细胞病理学(包括衰老)的普遍后果。本研究的目的是揭示年龄依赖性代谢控制可兴奋组织(如大脑皮层)和非兴奋性组织(如肝和脾)的细胞水化的差异。为此,通过冷却降低代谢活性并通过向动物提供蒸馏水,通过使Na〜(+)/ K〜(+)失活来激活代谢活动来研究在兴奋性和非兴奋性问题中细胞水合作用的年龄依赖性敏感性。 )泵并以反向模式激活Na〜(+)/ Ca〜(2+)交换。获得的数据使我们得出结论,可激活组织中细胞水合的代谢调节是通过激活电Na〜(+)/ K〜(+)泵和Na〜(+)/ Ca〜(2+)来实现的线粒体活性在细胞膜中进行交换和形成内源水,而非兴奋性组织中细胞水合的调节仅通过线粒体功能的活性来进行。衰老导致大鼠肝中Na〜(+)/ K〜(+)泵单元过表达,大鼠大脑皮质中Na〜(+)/ Ca〜(2+)交换子过度表达。

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