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在视网膜新生血管模型中通过沉默HIF-1α mRNA调节单核细胞功能的方法

Method to Regulate Monocyte Function by Silencing HIF-1α mRNA in a Model of Retinal Neovascularization.

作者信息

Atalor Rita E, Dieckmann Blake W, Penn John S, Uddin Md Imam

机构信息

Department of Ophthalmology and Visual Sciences, Vanderbilt University School of Medicine, Nashville, Tennessee 37232, United States.

Department of Biomedical Engineering, Vanderbilt University, Nashville, Tennessee 37232, United States.

出版信息

ACS Appl Nano Mater. 2023 Dec 6;6(24):22939-22946. doi: 10.1021/acsanm.3c04300. eCollection 2023 Dec 22.

Abstract

Circulating monocytes migrate into the retina in response to inflammation and neovascularization. Furthermore, under inflammatory conditions such as diabetes, healthy monocytes become activated in the circulation. However, the contribution of activated monocytes to neovascularization is largely unknown. HIF-1α has been shown to contribute to the pathogenesis of neovascularization. We describe here the synthesis of a hybrid nanomaterial for targeted delivery and gene silencing in activated monocytes that are associated with pathological neovascularization. To test the gene silencing ability of AS-shRNA-lipids in vitro, we used the probe to inhibit HIF-1α mRNA induced in mouse monocytes by exposing them to hypoxia. In addition, we tested AS-shRNA-lipids for inhibition of neovascularization in vivo using the mouse model of oxygen-induced retinopathy (OIR). Significant reduction of neovascularization was achieved in mouse OIR by targeting activated monocytes using intraperitoneal injections of AS-shRNA-lipids. Expression of HIF-1α and CD14 mRNA were both inhibited in circulating cells, suggesting normalization of the activated monocytes in P17 OIR animals treated with AS-shRNA-lipids. We hypothesized that inhibition of HIF-1α mRNA in activated monocytes may have a direct impact on VEGF expression in the retinal tissues in vivo. We observed that VEGF mRNA expression was inhibited in P17 retinal tissues after systemic treatment with HIF-1α-targeted AS-shRNA-lipids. These findings may provide a framework for a strategy to inhibit retinal neovascularization by targeting circulating activated monocytes.

摘要

循环单核细胞会响应炎症和新生血管形成而迁移至视网膜。此外,在糖尿病等炎症条件下,健康的单核细胞会在循环中被激活。然而,激活的单核细胞对新生血管形成的作用在很大程度上尚不清楚。已有研究表明,缺氧诱导因子-1α(HIF-1α)参与新生血管形成的发病机制。我们在此描述了一种用于在与病理性新生血管形成相关的激活单核细胞中进行靶向递送和基因沉默的混合纳米材料的合成。为了在体外测试反义短发夹RNA脂质(AS-shRNA-lipids)的基因沉默能力,我们使用该探针通过使小鼠单核细胞暴露于缺氧环境来抑制其诱导产生的HIF-1α mRNA。此外,我们使用氧诱导视网膜病变(OIR)小鼠模型在体内测试了AS-shRNA-lipids对新生血管形成的抑制作用。通过腹腔注射AS-shRNA-lipids靶向激活的单核细胞,可使小鼠OIR中的新生血管形成显著减少。循环细胞中HIF-1α和CD14 mRNA的表达均受到抑制,这表明在用AS-shRNA-lipids治疗的P17 OIR动物中,激活的单核细胞恢复了正常状态。我们推测,抑制激活单核细胞中的HIF-1α mRNA可能会对体内视网膜组织中的血管内皮生长因子(VEGF)表达产生直接影响。我们观察到,在用靶向HIF-1α的AS-shRNA-lipids进行全身治疗后,P17视网膜组织中的VEGF mRNA表达受到抑制。这些发现可能为通过靶向循环激活的单核细胞来抑制视网膜新生血管形成的策略提供一个框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f048/10749564/7d9b8a5f393d/an3c04300_0001.jpg

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