首页> 美国卫生研究院文献>Molecules >MASM a Matrine Derivative Offers Radioprotection by Modulating Lethal Total-Body Irradiation-Induced Multiple Signaling Pathways in Wistar Rats
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MASM a Matrine Derivative Offers Radioprotection by Modulating Lethal Total-Body Irradiation-Induced Multiple Signaling Pathways in Wistar Rats

机译:MASM一种苦参碱衍生物通过调节致死性全体辐射诱导的Wistar大鼠的多种信号通路提供辐射防护。

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摘要

Matrine is an alkaloid extracted from Sophora flavescens Ait and has many biological activities, such as anti-inflammatory, antitumor, anti-fibrosis, and immunosuppressive properties. In our previous studies, the matrine derivative MASM was synthesized and exhibited potent inhibitory activity against liver fibrosis. In this study, we mainly investigated its protection against lethal total-body irradiation (TBI) in rats. Administration of MASM reduced the radiation sickness characteristics and increased the 30-day survival of rats before or after lethal TBI. Ultrastructural observation illustrated that pretreatment of rats with MASM significantly attenuated the TBI-induced morphological changes in the different organs of irradiated rats. Gene expression profiles revealed that pretreatment with MASM had a dramatic effect on gene expression changes caused by TBI. Pretreatment with MASM prevented differential expression of 53% (765 genes) of 1445 differentially expressed genes induced by TBI. Pathway enrichment analysis indicated that these genes were mainly involved in a total of 21 pathways, such as metabolic pathways, pathways in cancer, and mitogen-activated protein kinase (MAPK) pathways. Our data indicated that pretreatment of rats with MASM modulated these pathways induced by TBI, suggesting that the pretreatment with MASM might provide the protective effects on lethal TBI mainly or partially through the modulation of these pathways, such as multiple MAPK pathways. Therefore, MASM has the potential to be used as an effective therapeutic or radioprotective agent to minimize irradiation damages and in combination with radiotherapy to improve the efficacy of cancer therapy.
机译:苦参碱是从苦参中提取的生物碱,具有许多生物活性,例如抗炎,抗肿瘤,抗纤维化和免疫抑制特性。在我们以前的研究中,苦参碱衍生物MASM合成并显示出对肝纤维化的有效抑制活性。在这项研究中,我们主要研究了其对大鼠致命性全身辐射(TBI)的保护作用。致死性TBI之前或之后,MASM的使用降低了放射病的特征并增加了30天的存活率。超微结构观察表明,用MASM预处理大鼠可显着减弱TBI诱导的辐照大鼠不同器官中的形态变化。基因表达谱显示,MASM预处理对TBI引起的基因表达变化有显着影响。 MASM预处理可防止TBI诱导的1445个差异表达基因中53%(765个基因)的差异表达。途径富集分析表明,这些基因主要参与总共21条途径,例如代谢途径,癌症途径和促分裂原活化蛋白激酶(MAPK)途径。我们的数据表明,用MASM预处理的大鼠调节了TBI诱导的这些途径,这表明用MASM预处理可能主要或部分地通过调节这些途径(例如多个MAPK途径)来提供对致死性TBI的保护作用。因此,MASM有可能被用作有效的治疗剂或放射防护剂以使辐射损伤最小化,并与放射疗法组合以改善癌症治疗的功效。

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