分子诊断:应用泛在转录因子和MAPK恢复甲亢和心脏甲状腺细胞

A. Junejo, Nauman Ullah Gilal, Xiang Li
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摘要

本研究旨在通过研究NF - κB和MAPK在甲亢中的调控作用,探讨其对心血管疾病(CVD)的分子诊断(MD)机制和治疗靶点。研究人员提出了一种新的医学模型来解决这个问题,它将纳米粒子-医学(NPs-M)与合成生物学工具结合起来,提供重新设计的生物计算设备。将重组tshra亚基腺病毒注入BALB/C小鼠胫骨前肌建立模型。这些小鼠的甲状腺功能亢进是为了确保一个原代细胞。免疫组织化学、技术、分组和给药血清组被确定为甲状腺细胞,就甲状腺激素过量影响CVD而言。这些触发通路诱导甲亢ICAM-1、细胞因子IL-6和CXCL10的含量和表达。与模型组比较,给药血清组有显著的回调作用,且给药血清对IL-6水平有显著的回调作用。这些结果表明,MAPK、NF - κB和其他细胞触发通路在CVD和graves病(GD)甲状腺功能亢进中具有调节作用。我们推测它可能通过抑制MAPK和NF - κB细胞通路的激活以及下游细胞因子的表达,调控疾病治疗作用靶点的发生和发展。进一步探讨MAPK和NF - NF - B通路在比目鱼心力衰竭大鼠中的可能方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular Diagnosis: And using Ubiquitous Transcription Factor and MAPK to Recover Thyroid Cells of Hyperthyroidism and Heart
This study sought to explore the Molecular Diagnosis (MD) mechanism and Targets of the Treatment effects on cardiovascular disease (CVD) by studying the regulatory effects of NF – κB and MAPK triggered in hyperthyroidism. Researchers have proposed a new MD paradigm to resolve this problem, which combines Nanoparticles-Medicine (NPs-M) with synthetic biology tools to provide biocomputing equipment redesign. The recombinant adenovirus of the TSHR-A subunit was injected into the anterior tibial muscle of BALB/C mice to create a model. The hyperthyroidism of those mice was taken to ensure a primary cell. Immunohistochemistry, techniques, and divisions into the groups and the medicated serum group were identified as thyroid cells, in terms of excess thyroid hormone affects CVD. These triggered pathways induce the content and expression of hyperthyroidism ICAM-1, cytokines IL-6, and CXCL10. In comparison with the model group, the medicated serum group had a significant callback effect, and the medicated serum had a significant callback effect on IL-6 levels. These results demonstrated that the regulatory effect on MAPK, NF – κB, and other cell triggered pathways in CVD and graves’ disease (GD) hyperthyroidism. We speculate that it can regulate the occurrence and development of targets of the treatment effects on Disease by inhibiting the activation of MAPK and NF – κB cell pathways and the expression of downstream cytokines. Furthermore, the possible direction of the MAPK and NF – NF – B pathway in soleus heart failure rats.
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