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基于阻抗的实时药物诱导血管渗漏筛选检测法

A real-time impedance-based screening assay for drug-induced vascular leakage.

机构信息

F. Hoffmann-La Roche Ltd, 4070 Basel, Switzerland.

出版信息

Toxicol Sci. 2014 Apr;138(2):333-43. doi: 10.1093/toxsci/kft336. Epub 2014 Jan 2.

Abstract

Vascular leakage is a serious side effect of therapies based on monoclonal antibodies or cytokines which may lead to life-threatening situations. With the steady increase of new drug development programs for large molecules, there is an urgent need for reliable tools to assess this potential liability of new medicines in a rapid and cost-effective manner. Using human umbilical vein endothelial cells (HUVECs) as a model for endothelium, we established an impedance-based assay measuring the integrity of the endothelial cell monolayer in real time. We could demonstrate that the HUVEC monolayer in our system was a relevant model as cells expressed major junctional proteins known to be responsible for maintaining tightness as well as receptors targeted by molecules known to induce vascular leakage in vivo. We assessed the time-dependent loss of barrier function using impedance and confirmed that signals obtained corresponded well to those from standard transwell assays. We assayed a series of reference molecules which led to the expected change of barrier integrity. A nonspecific cytotoxic effect could be excluded by using human fibroblasts as a nonresponder cell line. Finally, we could show reversibility of vascular permeability induced by histamine, IL-1β, or TNF-α by coincubation with established antagonists, further demonstrating relevance of this new model. Taken together, our results suggest that impedance in combination with HUVECs as a specific model can be applied to assess clinically relevant vascular leakage on an in vitro level.

摘要

血管渗漏是基于单克隆抗体或细胞因子的治疗的严重副作用,可能导致危及生命的情况。随着大分子新药开发项目的稳步增加,迫切需要可靠的工具来快速、经济有效地评估新药的这种潜在风险。我们用人脐静脉内皮细胞(HUVEC)作为内皮细胞模型,建立了一种基于阻抗的检测方法,实时测量内皮细胞单层的完整性。我们证明,我们系统中的 HUVEC 单层是一个相关的模型,因为细胞表达了已知负责维持紧密性的主要连接蛋白,以及体内已知诱导血管渗漏的分子的靶受体。我们使用阻抗评估了屏障功能的时变丧失,并证实获得的信号与标准 Transwell 测定法的信号非常吻合。我们检测了一系列参考分子,这些分子导致了预期的屏障完整性变化。通过使用人成纤维细胞作为非反应细胞系,可以排除非特异性细胞毒性作用。最后,我们可以通过与已建立的拮抗剂共孵育来显示组胺、IL-1β 或 TNF-α 诱导的血管通透性的可逆性,进一步证明了这种新模型的相关性。总之,我们的结果表明,阻抗结合作为特定模型的 HUVEC 可用于在体外水平评估临床相关的血管渗漏。

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