A high content, phenotypic 'scar-in-a-jar' assay for rapid quantification of collagen fibrillogenesis using disease-derived pulmonary fibroblasts.

BMC biomedical engineering Pub Date : 2019-06-28 eCollection Date: 2019-01-01 DOI:10.1186/s42490-019-0014-z
Robert B Good, Jessica D Eley, Elaine Gower, Genevieve Butt, Andrew D Blanchard, Andrew J Fisher, Carmel B Nanthakumar
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Abstract

Background: Excessive extracellular matrix (ECM) deposition is a hallmark feature in fibrosis and tissue remodelling diseases. Typically, mesenchymal cells will produce collagens under standard 2D cell culture conditions, however these do not assemble into fibrils. Existing assays for measuring ECM production are often low throughput and not disease relevant. Here we describe a robust, high content, pseudo-3D phenotypic assay to quantify mature fibrillar collagen deposition which is both physiologically relevant and amenable to high throughput compound screening. Using pulmonary fibroblasts derived from patients with idiopathic pulmonary fibrosis (IPF), we developed the 'scar-in-a-jar' assay into a medium-throughput phenotypic assay to robustly quantify collagen type I deposition and other extracellular matrix (ECM) proteins over 72 h.

Results: This assay utilises macromolecular crowding to induce an excluded volume effect and enhance enzyme activity, which in combination with TGF-β1 stimulation significantly accelerates ECM production. Collagen type I is upregulated approximately 5-fold with a negligible effect on cell number. We demonstrate the robustness of the assay achieving a Z prime of approximately 0.5, and % coefficient of variance (CV) of < 5 for the assay controls SB-525334 (ALK5 inhibitor) and CZ415 (mTOR inhibitor). This assay has been used to confirm the potency of a number of potential anti-fibrotic agents. Active compounds from the 'scar-in-a-jar' assay can be further validated for other markers of ECM deposition and fibroblast activation such as collagen type IV and α-smooth muscle actin exhibiting a 4-fold and 3-fold assay window respectively.

Conclusion: In conclusion, we have developed 'scar -in-a-jar is' into a robust disease-relevant medium-throughput in vitro assay to accurately quantify ECM deposition. This assay may enable iterative compound profiling for IPF and other fibroproliferative and tissue remodelling diseases.

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高含量、表型 "瓶中疤痕 "检测法,利用疾病衍生肺成纤维细胞快速量化胶原纤维生成。
背景:过多的细胞外基质(ECM)沉积是纤维化和组织重塑疾病的标志性特征。通常情况下,间充质细胞会在标准二维细胞培养条件下产生胶原蛋白,但这些胶原蛋白不会组装成纤维。现有的测量 ECM 产量的检测方法通常通量较低,且与疾病无关。在这里,我们描述了一种稳健、高含量、伪三维表型检测方法,用于量化成熟纤维状胶原沉积,这种方法既与生理相关,又适合高通量化合物筛选。利用特发性肺纤维化(IPF)患者的肺成纤维细胞,我们将 "罐中疤痕 "试验发展成了一种中等通量表型试验,可在 72 小时内对 I 型胶原沉积和其他细胞外基质(ECM)蛋白进行稳健的定量分析:结果:该检测方法利用大分子拥挤诱导排斥体积效应并增强酶活性,结合 TGF-β1 刺激,显著加快了 ECM 的生成。I 型胶原上调约 5 倍,对细胞数量的影响微乎其微。我们证明了该检测方法的稳健性,其 Z 值约为 0.5,方差系数 (CV) 为 Conclusion:总之,我们将 "罐中疤痕 "开发成了一种稳健的疾病相关介质通量体外检测方法,可准确量化 ECM 沉积。这种检测方法可用于 IPF 及其他纤维增生性疾病和组织重塑疾病的迭代化合物分析。
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