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首页> 外文期刊>Biological Trace Element Research >Metal tissue kinetics in regenerating liver, thymus, spleen, and submandibular gland after partial hepatectomy in mice
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Metal tissue kinetics in regenerating liver, thymus, spleen, and submandibular gland after partial hepatectomy in mice

机译:小鼠部分肝切除后再生肝,胸腺,脾和下颌下腺的金属组织动力学

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摘要

Liver regeneration after partial hepatectomy (pHx) is a well-defined process, which involves the concerted action of extra- and intracellular factors resulting in induction of cell replication and its inhibition at the time when the entire liver mass is restored. Concomitantly, the breakdown of previously maintained tolerance and the exposure of self-antigens lead to the activation of preimmune and immune repertoires, which participate in surveillance against aberrant cells and the re-establishment of previous morphostasis. Because, in these events, important biological function might have tissue minerals that are affecting the structural integrity and enzyme activities, transduction signals, transcription and replication factors during cell proliferation and apoptosis, as well as the development and maintenance of immune functions and cytokine production, in this study we analyzed tissue dynamics of zinc, ioron magnesium, and calcium in the liver, thymus, spleen, and submandibular gland in intact and pHx mice on the 1st, 2nd, 7th, and 15th d after one-third pHx, using microwave digestion and inductivity coupled plasma spectrometry. The data showed that pHx induces significant and interconnected changes in all of the estimated metals not only in the regenerating liver but also in the lymphatic tissues and submandibular gland, indicating their importance for the control of growth processes.
机译:部分肝切除术(pHx)后的肝再生是一个明确的过程,涉及细胞外和细胞内因子的协同作用,导致诱导细胞复制及其在整个肝脏肿块恢复时的抑制作用。随之而来的是,先前维持的耐受性的破坏和自身抗原的暴露导致了免疫前和免疫库的激活,从而参与了对异常细胞的监视和先前的形态稳定的重建。因为在这些事件中,重要的生物学功能可能具有组织矿物质,这些矿物质会影响细胞增殖和凋亡过程中的结构完整性和酶活性,转导信号,转录和复制因子,以及免疫功能和细胞因子产生和维持,在这项研究中,我们使用微波分析了在第三个,第三个pHx后第1、2、7和15天,完整小鼠和pHx小鼠的肝脏,胸腺,脾脏和下颌下腺中锌,碘铁镁和钙的组织动力学消解和电感耦合等离子体光谱法。数据表明,pHx不仅会在再生肝脏中而且还会在淋巴组织和下颌下腺中引起所有估计的金属的显着且相互关联的变化,表明它们对于控制生长过程非常重要。

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