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腺相关病毒介导的 AP-1 寡核苷酸表达抑制马凡综合征小鼠模型中的主动脉弹性溶解。

AAV-mediated AP-1 decoy oligonucleotide expression inhibits aortic elastolysis in a mouse model of Marfan syndrome.

机构信息

Department of Internal Medicine III, University of Kiel, University Hospital Schleswig-Holstein, Kiel, Germany.

German Centre for Cardiovascular Research, Partner Site Hamburg/Kiel/Lübeck, Kiel, Germany.

出版信息

Cardiovasc Res. 2021 Nov 1;117(12):2459-2473. doi: 10.1093/cvr/cvab012.

Abstract

AIMS

Marfan syndrome is one of the most common inherited disorders of connective tissue caused by fibrillin-1 mutations, characterized by enhanced transcription factor AP-1 DNA binding activity and subsequently abnormally increased expression and activity of matrix-metalloproteinases (MMPs). We aimed to establish a novel adeno-associated virus (AAV)-based strategy for long-term expression of an AP-1 neutralizing RNA hairpin (hp) decoy oligonucleotide (dON) in the aorta to prevent aortic elastolysis in a murine model of Marfan syndrome.

METHODS AND RESULTS

Using fibrillin-1 hypomorphic mice (mgR/mgR), aortic grafts from young (9 weeks old) donor mgR/mgR mice were transduced ex vivo with AAV vectors and implanted as infrarenal aortic interposition grafts in mgR/mgR mice. Grafts were explanted after 30 days. For in vitro studies, isolated primary aortic smooth muscle cells (SMCs) from mgR/mgR mice were used. Elastica-van-Giesson staining visualized elastolysis, reactive oxygen species (ROS) production was assessed using dihydroethidine staining. RNA F.I.S.H. verified AP-1 hp dON generation in the ex vivo transduced aortic tissue. MMP expression and activity were assessed by western blotting and immunoprecipitation combined with zymography.Transduction resulted in stable therapeutic dON expression in endothelial and SMCs. MMP expression and activity, ROS formation as well as expression of monocyte chemoattractant protein-1 were significantly reduced. Monocyte graft infiltration declined and the integrity of the elastin architecture was maintained. RNAseq analysis confirmed the beneficial effect of AP-1 neutralization on the pro-inflammatory environment in SMCs.

CONCLUSION

This novel approach protects from deterioration of aortic stability by sustained delivery of nucleic acids-based therapeutics and further elucidated how to interfere with the mechanism of elastolysis.

摘要

目的

马凡综合征是一种最常见的结缔组织遗传性疾病,由原纤维蛋白-1 突变引起,其特征是转录因子 AP-1 的 DNA 结合活性增强,随后基质金属蛋白酶(MMPs)的表达和活性异常增加。我们旨在建立一种新的基于腺相关病毒(AAV)的策略,用于在马凡综合征的小鼠模型中主动脉中长期表达 AP-1 中和 RNA 发夹(hp)诱饵寡核苷酸(dON),以防止主动脉弹性溶解。

方法和结果

使用原纤维蛋白-1 低功能(mgR/mgR)小鼠,从小鼠(9 周龄)供体 mgR/mgR 的主动脉移植物中体外转导 AAV 载体,并将其作为肾下主动脉间置移植物植入 mgR/mgR 小鼠中。移植 30 天后取出移植物。对于体外研究,使用来自 mgR/mgR 小鼠的分离的原代主动脉平滑肌细胞(SMCs)。弹性纤维-van-Giesson 染色可视化弹性溶解,使用二氢乙锭染色评估活性氧(ROS)的产生。RNA F.I.S.H. 验证了体外转导的主动脉组织中 AP-1 hp dON 的产生。通过 Western blot 和免疫沉淀结合酶谱法评估 MMP 的表达和活性。转导导致内皮细胞和 SMCs 中稳定的治疗性 dON 表达。MMP 的表达和活性、ROS 的形成以及单核细胞趋化蛋白-1 的表达均显著降低。单核细胞移植物浸润减少,弹性蛋白结构的完整性得以维持。RNAseq 分析证实了 AP-1 中和对 SMCs 中促炎环境的有益影响。

结论

这种新方法通过持续递送核酸治疗剂来保护主动脉稳定性免受恶化,并进一步阐明了如何干扰弹性溶解的机制。

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