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High-Content Assay Multiplexing for Vascular Toxicity Screening in Induced Pluripotent Stem Cell-Derived Endothelial Cells and Human Umbilical Vein Endothelial Cells

机译:诱导多能干细胞源性内皮细胞和人脐静脉内皮细胞血管毒性筛选的高含量测定复用

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Endothelial cells (ECs) play a major role in blood vessel formation and function. While there is longstanding evidence for the potential of chemical exposures to adversely affect EC function and vascular development, the hazard potential of chemicals with respect to vascular effects is not routinely evaluated in safety assessments. Induced pluripotent stem cell (iPSC)-derived ECs promise to provide a physiologically relevant, organotypic culture model that is amenable for high-throughput (HT) EC toxicant screening and may represent a viable alternative to traditional in vitro models, including human umbilical vein endothelial cells (HUVECs). To evaluate the utility of iPSC-ECs for multidimensional HT toxicity profiling of chemicals, both iPSC-ECs and HUVECs were exposed to selected positive (angiogenesis inhibitors, cytotoxic agents) and negative compounds in concentration response for either 16 or 24?h in a 384-well plate format. Furthermore, chemical effects on vascularization were quantified using EC angiogenesis on biological (Geltrex?) and synthetic (SP-105 angiogenesis hydrogel) extracellular matrices. Cellular toxicity was assessed using high-content live cell imaging and the CellTiter-Glo ? assay. Assay performance indicated good to excellent assay sensitivity and reproducibility for both cell types investigated. Both iPSC-derived ECs and HUVECs formed tube-like structures on Geltrex? and hydrogel, an effect that was inhibited by angiogenesis inhibitors and cytotoxic agents in a concentration-dependent manner. The quality of HT assays in HUVECs was generally higher than that in iPSC-ECs. Altogether, this study demonstrates the capability of ECs for comprehensive assessment of the biological effects of chemicals on vasculature in a HT compatible format .]]>
机译:内皮细胞(ECS)在血管形成和功能中起主要作用。虽然有长期证据潜在的化学曝光可能对EC功能和血管开发产生不利影响,但在安全评估中没有常规地评估化学品对血管作用的危害潜力。诱导多能干细胞(IPSC)的ECS允许提供一种生理学相关的有机型培养模型,可用于高通量(HT)EC毒物筛选,并且可以代表传统体外模型的可行替代品,包括人脐静脉内皮细胞(Huvecs)。为了评估IPSC-EC的实用性,用于化学品的多维HT毒性分析,IPSC-EC和HUVEC在384中为16或24μm的浓度反应中的选择阳性(血管生成抑制剂,细胞毒性)和负化合物。 - 平板格式。此外,使用EC血管生成对生物(Geltrexα)和合成(SP-105血管生成水凝胶)细胞外基质量化对血管化的化学效果。使用高含量的活细胞成像和Celltiter-Glo评估细胞毒性吗?测定。测定性能表明,对调查的各种细胞类型的优异测定敏感性和再现性表示良好。 IPSC衍生的EC和HUVECS在Geltrex上形成了管状结构吗?和水凝胶,血管生成抑制剂和细胞毒剂以浓度依赖性方式抑制的效果。 HUVECS中HT测定的质量通常高于IPSC-ECS中的质量。完全,本研究表明了ECS以HT兼容格式综合评估化学品对脉管系统的生物学效应的能力。]]>

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