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首页> 外文期刊>American Journal of Physiology >Mechanical strain and TLR4 synergistically induce cell-specific inflammatory gene expression in intestinal smooth muscle cells and peritoneal macrophages.
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Mechanical strain and TLR4 synergistically induce cell-specific inflammatory gene expression in intestinal smooth muscle cells and peritoneal macrophages.

机译:机械菌株和TLR4在肠道平滑肌细胞和腹膜巨噬细胞中协同诱导细胞特异性炎症基因表达。

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摘要

Mechanical trauma of the gut is an unavoidable event in abdominal surgery. Former studies demonstrated that intestinal manipulation induces a strong inflammation within the tunica muscularis. We hypothesized that mechanical strain initiates or aggravates proinflammatory responses in intestinal smooth muscle cells (iSMC) or macrophages. First, an appropriate isolation and culture method for neonatal rat iSMC was established. Purified iSMC and primary peritoneal macrophages (pMacs) were subjected to static or cyclic strain, and gene expression of inducible nitric oxide synthase (iNOS), cyclooxygenase-2 (COX-2), IL-6, and IL-1beta was analyzed by quantitative PCR. Supernatants from stretched iSMC were transferred to untreated pMacs or contrariwise, and medium transfer-triggered inflammatory gene expression was measured in unstretched cells. Finally, we investigated the synergistic effect of static strain on LPS-induced proinflammatory gene expression. Although cyclic strain failed, static strain significantly induced iNOS, COX-2, and IL-1beta mRNA in iSMC. pMacs showed an increase in all inflammatory genes investigated as well as macrophage inflammatory protein (MIP)-1alpha and MIP-2 mRNA after static strain. Both cell entities liberated unknown mediators in response to stretch that mutually stimulated iNOS gene expression. Finally, mechanostimulation amplified LPS-induced iNOS and IL-1beta gene expression in iSMC as well as COX-2 and IL-6 mRNA in pMacs. In conclusion, static strain initiates proinflammatory gene expression in iSMC and pMacs and triggers a bidirectional paracrine communication between both cultured cell entities via the liberation of unknown mediators. Furthermore, static strain synergistically operates with Toll-like receptor 4 ligation in a cell-specific manner. Hence, this study demonstrates that mechanical strain functions as an immunomodulatory stimulus in abdominal cells.
机译:肠道的机械创伤是腹部手术中不可避免的事件。以前的研究表明,肠道操纵会在苔藓内诱导强烈的炎症。我们假设机械菌株在肠道平滑肌细胞(ISMC)或巨噬细胞中引发或加重促炎反应。首先,建立了新生大鼠ISMC的适当分离和培养方法。纯化的ISMC和初级腹膜巨噬细胞(PMACs)经受静态或循环菌株,并通过定量分析诱导型一氧化氮合酶(InOS),环氧氢酶-2(COX-2),IL-6和IL-1Beta的基因表达PCR。从拉伸的ISMC的上清液被转移到未处理的PMAC或逆向,并且在未拉伸的细胞中测量培养基转移触发的炎症基因表达。最后,我们研究了静态应变对LPS诱导的促炎基因表达的协同作用。虽然循环菌株失效,静态应变显着诱导ISMC中的INOS,COX-2和IL-1Beta mRNA。 PMACs显示出在静应后所研究的所有炎症基因以及巨噬细胞炎症蛋白(MIP)-1Alpha和MIP-2 mRNA的增加。两种细胞实体响应于相互刺激的InOS基因表达的延伸而释放了未知的介质。最后,核磁刺激在ismc中扩增的LPS诱导的ISOS和IL-1BETA基因表达以及在PMAC中的COX-2和IL-6 mRNA中。总之,静态菌株在ismc和pmacs中引发促炎基因表达,并通过解放未知介质的解放来触发两种培养的细胞实体之间的双向旁静脉通信。此外,静态应变在细胞特异性方式中,用Toll样受体4连接进行协同操作。因此,本研究表明,机械应变用作腹部细胞中的免疫调节刺激。

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