C5a/C5aR通过促进中性粒细胞活化增加PAD4表达,调节败血症相关肺损伤中Th1/Th2失衡。

IF 4.3
Annals of medicine Pub Date : 2025-12-01 Epub Date: 2025-01-20 DOI:10.1080/07853890.2024.2447406
Zhenbing Lu, Ling Zhu, Changlin Yi, Bi Su, Renying Wang
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引用次数: 0

摘要

目的:多器官功能衰竭常并发脓毒症,肺是主要目标。辅助性T细胞(Th)的活化及其表型失衡是脓毒症相关肺损伤的重要原因。此外,补体系统还能调节T淋巴细胞的极化表型。因此,本研究探讨C5a/C5a受体(C5aR)/肽精氨酸脱亚胺酶4 (PAD4)对脓毒症肺损伤中Th1/Th2比值的影响。方法:采用ELISA法检测PAD4、HBP、MPO、IL-1β、IL-10、IL-6、IL-4、syndecan-1、endocan、H3Cit的表达。建立lps诱导的脓毒性肺损伤小鼠模型,用HE和PAS染色评价肺损伤。BCA试剂盒定量BALF总蛋白,Western blot检测C5aR、syndecan-1、endocan、PAD4水平,TUNEL和流式细胞术检测组织细胞凋亡。流式细胞术检测外周血+Th1和Th2细胞比例,CCK-8检测BEAS-2B活性。结果:与对照组相比,病变样品中PAD4和炎症因子升高。在脓毒症诱导的肺损伤小鼠中,添加PAD4抑制剂GSK484可有效减轻脓毒症诱导的肺水肿和炎症反应。GSK484抑制C5a/C5aR表达,抑制细胞凋亡和肺损伤。此外,GSK484在体外显著抑制Th1细胞表型。此外,GSK484干预Th1细胞表型进一步影响肺上皮细胞损伤。结论:综上所述,我们揭示了C5a/ c5ar在脓毒症相关肺损伤中通过嗜中性粒细胞激活诱导PAD4上调,导致Th1/Th2失衡和肺损伤的机制,为脓毒症相关肺损伤的治疗提供了新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
C5a/C5aR regulates Th1/Th2 imbalance in sepsis-associated lung injury by promoting neutrophil activation to increase PAD4 expression.

Objective: Multi-organ failure frequently complicates sepsis, with lungs being the primary target. T helper (Th) cell activation and phenotypic imbalance among them contribute significantly to sepsis-associated lung injury. Additionally, the complement system could regulate the polarized phenotype of T lymphocytes. Therefore, this study investigated the effect of C5a/C5a receptor (C5aR)/Peptidylarginine deiminase 4 (PAD4) on the Th1/Th2 ratio in sepsis-induced lung injury.

Methods: ELISA was used to detect the expression of PAD4, HBP, MPO, IL-1β, IL-10, IL-6, IL-4, syndecan-1, endocan and H3Cit. An LPS-induced septic lung injury mouse model was constructed, with HE and PAS stains evaluating lung damage. BCA kit quantified BALF total protein, Western blot examined C5aR, syndecan-1, endocan, PAD4 levels, while TUNEL and flow cytometry assessed tissue cellular apoptosis. Furthermore, flow cytometry was used to detect the +Th1 and Th2 cells proportion in peripheral blood, and CCK-8 was used to detect BEAS-2B activity.

Results: The results indicated that PAD4 and inflammatory factors were increased in lesion samples compared with controls. In sepsis-induced lung injury mice, addition of GSK484, a PAD4 inhibitor, effectively alleviated sepsis-induced lung edema and inflammatory responses. GSK484 was found to inhibit C5a/C5aR expression and suppress apoptosis and lung injury. Furthermore, GSK484 markedly inhibited Th1 cell phenotypes in vitro. Additionally, GSK484 intervention on Th1 cell phenotype further affected lung epithelial cell injury.

Conclusion: In summary, we revealed the mechanism of C5a/C5aR-induced PAD4 upregulation via neutrophil activation in sepsis-associated lung injury, causing a Th1/Th2 imbalance and lung injury, providing a novel approach for sepsis-associated lung injuries treatment.

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