Regulation of Microtubule Stability in Pulmonary Microvascular Endothelial Cells in Rats with Severe Acute Pancreatitis: Qingyi Decoction is a Potential CDK5 Inhibitor

Yinan Cao, Fan Li, Zhenxuan Sun, Jin Liu, Jie Liu, Qi Yang, Peng Ge, Yalan Luo, Hailong Chen
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Abstract

Purpose: Explore the therapeutic effects and regulatory mechanism of Qingyi Decoction (QYD) on severe acute pancreatitis (SAP) associated acute lung injury (ALI). Methods: We identified the constituents absorbed into the blood of QYD based on a network pharmacological strategy. The differentially expressed genes from the GEO database were screened to identify the critical targets of QYD treatment of SAP-ALI. The SAP-ALI rat model was constructed.Some methods were used to evaluate the efficacy and mechanism of QYD in treating SAP-ALI. LPS-stimulated pulmonary microvascular endothelial cell injury simulated the SAP-induced pulmonary endothelial injury model. We further observed the therapeutic effect of QYD and CDK5 plasmid transfection on endothelial cell injury. Results: 18 constituents were absorbed into the blood, and 764 targets were identified from QYD, 25 of which were considered core targets for treating SAP-ALI. CDK5 was identified as the most critical gene. The results of differential expression analysis showed that the mRNA expression level of CDK5 in the blood of SAP patients was significantly up-regulated compared with that of healthy people. Animal experiments have demonstrated that QYD can alleviate pancreatic and lung injury inflammatory response and reduce the upregulation of CDK5 in lung tissue. QYD or CDK5 inhibitors could decrease the expression of NFAT5 and GEF-H1, and increase the expression of ACE-tub in SAP rat lung tissue. Cell experiments proved that QYD could inhibit the expression of TNF-α and IL-6 induced by LPS. Immunofluorescence results suggested that QYD could alleviate the cytoskeleton damage of endothelial cells, and the mechanism might be related to the inhibition of CDK5-mediated activation of NFAT5, GEF-H1, and ACE-tub. Conclusion: CDK5 has been identified as a critical target for pulmonary endothelial injury of SAP-ALI. QYD may partially alleviate microtubule disassembly by targeting the CDK5/NFAT5/GEF-H1 signaling pathway, thus relieving SAP-induced pulmonary micro-vascular endothelial cell injury.
重症急性胰腺炎大鼠肺微血管内皮细胞微管稳定性的调控秦艽煎剂是一种潜在的CDK5抑制剂
目的:探讨秦艽汤(QYD)对重症急性胰腺炎(SAP)相关急性肺损伤(ALI)的治疗作用和调节机制。方法基于网络药理学策略,我们确定了吸收入血的秦艽汤成分。从 GEO 数据库中筛选差异表达基因,以确定 QYD 治疗 SAP-ALI 的关键靶点。构建了SAP-ALI大鼠模型,并采用一些方法评估了QYD治疗SAP-ALI的疗效和机制。LPS刺激的肺微血管内皮细胞损伤模拟了SAP诱导的肺内皮损伤模型。我们进一步观察了 QYD 和 CDK5 质粒转染对内皮细胞损伤的治疗效果。结果18种成分被吸收入血,从QYD中鉴定出764个靶点,其中25个被认为是治疗SAP-ALI的核心靶点。CDK5 被认为是最关键的基因。差异表达分析结果显示,与健康人相比,SAP 患者血液中 CDK5 的 mRNA 表达水平明显上调。动物实验证明,QYD 可以缓解胰腺和肺损伤的炎症反应,降低 CDK5 在肺组织中的上调。QYD 或 CDK5 抑制剂可降低 SAP 大鼠肺组织中 NFAT5 和 GEF-H1 的表达,增加 ACE-tub 的表达。细胞实验证明,QYD能抑制LPS诱导的TNF-α和IL-6的表达。免疫荧光结果表明,QYD 可减轻内皮细胞的细胞骨架损伤,其机制可能与抑制 CDK5 介导的 NFAT5、GEF-H1 和 ACE-tub 的活化有关。结论CDK5已被确定为SAP-ALI肺内皮损伤的关键靶点。QYD 可通过靶向 CDK5/NFAT5/GEF-H1 信号通路部分缓解微管解体,从而缓解 SAP 诱导的肺微血管内皮细胞损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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