Extracellular Matrix Profiling and Disease Modelling in Engineered Vascular Smooth Muscle Cell Tissues

Q1 Medicine Matrix Biology Plus Pub Date : 2022-12-01 DOI:10.1016/j.mbplus.2022.100122
Ella Reed , Adam Fellows , Ruifang Lu , Marieke Rienks , Lukas Schmidt , Xiaoke Yin , Elisa Duregotti , Mona Brandt , Susanne Krasemann , Kristin Hartmann , Javier Barallobre-Barreiro , Owen Addison , Friederike Cuello , Arne Hansen , Manuel Mayr
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引用次数: 3

Abstract

Aortic smooth muscle cells (SMCs) have an intrinsic role in regulating vessel homeostasis and pathological remodelling. In two-dimensional (2D) cell culture formats, however, SMCs are not embedded in their physiological extracellular matrix (ECM) environment. To overcome the limitations of conventional 2D SMC cultures, we established a 3D in vitro model of engineered vascular smooth muscle cell tissues (EVTs). EVTs were casted from primary murine aortic SMCs by suspending a SMC-fibrin master mix between two flexible silicon-posts at day 0 before prolonged culture up to 14 days. Immunohistochemical analysis of EVT longitudinal sections demonstrated that SMCs were aligned, viable and secretory. Mass spectrometry-based proteomics analysis of murine EVT lysates was performed and identified 135 matrisome proteins. Proteoglycans, including the large aggregating proteoglycan versican, accumulated within EVTs by day 7 of culture. This was followed by the deposition of collagens, elastin-binding proteins and matrix regulators up to day 14 of culture. In contrast to 2D SMC controls, accumulation of versican occurred in parallel to an increase in versikine, a cleavage product mediated by proteases of the A Disintegrin and Metalloproteinase with Thrombospondin motifs (ADAMTS) family. Next, we tested the response of EVTs to stimulation with transforming growth factor beta-1 (TGFβ-1). EVTs contracted in response to TGFβ-1 stimulation with altered ECM composition. In contrast, treatment with the pharmacological activin-like kinase inhibitor (ALKi) SB 431542 suppressed ECM secretion. As a disease stimulus, we performed calcification assays. The ECM acts as a nidus for calcium phosphate deposition in the arterial wall. We compared the onset and extent of calcification in EVTs and 2D SMCs cultured under high calcium and phosphate conditions for 7 days. Calcified EVTs displayed increased tissue stiffness by up to 30 % compared to non-calcified controls. Unlike the rapid calcification of SMCs in 2D cultures, EVTs sustained expression of the calcification inhibitor matrix Gla protein and allowed for better discrimination of the calcification propensity between independent biological replicates. In summary, EVTs are an intuitive and versatile model to investigate ECM synthesis and turnover by SMCs in a 3D environment. Unlike conventional 2D cultures, EVTs provide a more relevant pathophysiological model for retention of the nascent ECM produced by SMCs.

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工程血管平滑肌细胞组织的细胞外基质分析和疾病建模
主动脉平滑肌细胞(SMCs)在调节血管稳态和病理重构中具有内在的作用。然而,在二维(2D)细胞培养格式中,SMCs不嵌入其生理细胞外基质(ECM)环境中。为了克服传统二维SMC培养的局限性,我们建立了工程血管平滑肌细胞组织(EVTs)的三维体外模型。在延长培养至14天之前,在第0天将smc -纤维蛋白主混合物悬浮在两个柔性硅桩之间,从原代小鼠主动脉SMCs中铸造evt。EVT纵向切片的免疫组织化学分析显示,SMCs排列整齐,具有活力和分泌能力。对小鼠EVT裂解物进行了基于质谱的蛋白质组学分析,鉴定出135个基质体蛋白。在培养的第7天,蛋白聚糖,包括大的聚集型蛋白聚糖,在evt内积累。随后是胶原、弹性蛋白结合蛋白和基质调节因子的沉积,直至培养第14天。与2D SMC对照相比,version version的积累与version version的增加同时发生,version version是一种由a崩解素和金属蛋白酶(ADAMTS)家族蛋白酶介导的裂解产物。接下来,我们测试了evt对转化生长因子β-1 (tgf - β-1)刺激的反应。内皮细胞在tgf - β-1刺激下收缩,同时改变ECM成分。相比之下,药理激活素样激酶抑制剂(ALKi) SB 431542可抑制ECM分泌。作为疾病刺激,我们进行了钙化试验。ECM是动脉壁中磷酸钙沉积的病灶。我们比较了在高钙和高磷酸盐条件下培养7天的evt和2D SMCs的钙化发生和程度。钙化的evt与未钙化的对照组相比,组织硬度增加了30%。与2D培养中SMCs的快速钙化不同,evt持续表达钙化抑制剂基质Gla蛋白,并允许在独立的生物重复之间更好地区分钙化倾向。总之,evt是一种直观和通用的模型,用于研究三维环境中SMCs的ECM合成和转换。与传统的二维培养不同,evt为SMCs产生的新生ECM的保留提供了更相关的病理生理模型。
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来源期刊
Matrix Biology Plus
Matrix Biology Plus Medicine-Histology
CiteScore
9.00
自引率
0.00%
发文量
25
审稿时长
105 days
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