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白杨素通过抑制髓样分化因子 2 来防治急性肺损伤。

Inhibition of myeloid differentiation factor 2 by baicalein protects against acute lung injury.

机构信息

Chemical Biology Research Center, School of Pharmaceutical Sciences, Wenzhou Medical University, Wenzhou, Zhejiang, 325035, China; Affiliated Cangnan Hospital, Wenzhou Medical University, Wenzhou, Zhejiang, 325800, China.

Chemical Biology Research Center, School of Pharmaceutical Sciences, Wenzhou Medical University, Wenzhou, Zhejiang, 325035, China; Affiliated Yueqing Hospital, Wenzhou Medical University, Wenzhou, Zhejiang, 325600, China.

出版信息

Phytomedicine. 2019 Oct;63:152997. doi: 10.1016/j.phymed.2019.152997. Epub 2019 Jun 20.

Abstract

BACKGROUND

ALI/ARDS is characterized by severe hypoxemic respiratory failure attributed to inflammatory tissue injury. There are no treatment modalities able to prevent/reverse the dire pathological sequelae in these patients. Evidence links the inflammatory lung injury to uncontrolled activation of the immune signaling complex, TLR4-MD2 (Toll-like receptor-myeloid differentiation factor 2). Baicalein, a natural flavonoid, is reported to have robust anti-inflammatory properties, but its inhibition mechanism remains unclear.

HYPOTHESIS/PURPOSE: This study investigated the protective mechanisms of baicalein on ALI/ARDS.

METHODS

We used two experimental mouse models of LPS-induced ALI, pulmonary infection model (intratracheal LPS), and systemic infection model (intravenous LPS). Blood, BALF, lung and liver tissues were analyzed using routine methods. In vitro studies using peritoneal mouse macrophages or recombinant proteins were designed to elucidate inhibition mechanisms of baicalein.

RESULTS

Our critical new findings revealed that Baicalein was an MD2 inhibitor, directly bound to MD2, effectively suppressing TLR4-MD2 activation and the subsequent MAPK and NF-κB signaling. The inhibited MD2 prevented development of inflammatory tissue injury and improved survival. The importance of MD2 in the inflammatory injury in ALI was corroborated by data obtained from MD2 mice, which did not develop the characteristic LPS-induced lung tissue damage. Thus, the findings indicated that MD2 was critical for development of ALI, functioning as an early upstream signal driving the progression of inflammatory injury.

CONCLUSION

Baicalein, as a direct and selective MD2 inhibitor, inhibited the early upstream TLR4-MD2 signaling and is a promising therapeutic agent for the treatment of ALI/ARDS.

摘要

背景

ALI/ARDS 的特征是严重的低氧性呼吸衰竭,归因于炎症性组织损伤。目前尚无治疗方法能够预防/逆转这些患者的严重病理后果。有证据表明,炎症性肺损伤与免疫信号复合物 TLR4-MD2(Toll 样受体-髓样分化因子 2)的失控激活有关。黄芩素是一种天然黄酮类化合物,据报道具有强大的抗炎特性,但抑制机制尚不清楚。

假设/目的:本研究旨在探讨黄芩素对 ALI/ARDS 的保护机制。

方法

我们使用了两种 LPS 诱导的 ALI 实验小鼠模型,即肺感染模型(气管内 LPS)和全身感染模型(静脉内 LPS)。使用常规方法分析血液、BALF、肺和肝组织。设计了腹膜鼠巨噬细胞或重组蛋白的体外研究,以阐明黄芩素的抑制机制。

结果

我们的重要新发现表明,黄芩素是 MD2 抑制剂,直接与 MD2 结合,有效抑制 TLR4-MD2 激活及其随后的 MAPK 和 NF-κB 信号转导。抑制的 MD2 可防止炎症性组织损伤的发展并提高存活率。在 ALI 中,MD2 在炎症损伤中的重要性得到了来自 MD2 小鼠的数据的证实,这些小鼠没有发展出典型的 LPS 诱导的肺组织损伤。因此,这些发现表明 MD2 是 ALI 发展的关键,作为驱动炎症损伤进展的早期上游信号。

结论

黄芩素作为一种直接且选择性的 MD2 抑制剂,抑制了早期上游 TLR4-MD2 信号转导,是治疗 ALI/ARDS 的有前途的治疗药物。

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