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仿生纤维束与 3D 球体的集成用于环境危害监测。

Integration of Bioinspired Fibrous Strands with 3D Spheroids for Environmental Hazard Monitoring.

机构信息

Environmental Safety Group, Korea Institute of Science & Technology Europe (KIST-EUROPE), 66123, Saarbrücken, Germany.

Universität des Saarlandes, 66123, Saarbrücken, Germany.

出版信息

Small. 2022 Jun;18(22):e2200757. doi: 10.1002/smll.202200757. Epub 2022 May 5.

Abstract

Numerous methods have been introduced to produce 3D cell cultures that can reduce the need for animal experimentation. This study presents a unique 3D culture platform that features bioinspired strands of electrospun nanofibers (BSeNs) and aquatic cell lines to compensate for shortcomings in the current cell spheroid generation techniques. The use of BSeNs in 3D zebrafish liver cell cultures is found to improve liver and reproductive functions through spheroid-based in vitro assays such as whole transcriptome sequencing and reproductive toxicity testing, with optimized properties exhibiting results similar to those obtained for fish embryo acute toxicity (FET, OECD TG 236) following exposure to environmental endocrine-disrupting chemicals (17β-Estradiol (E2), 4-hydroxytamoxifen (4-HT), and bisphenol compounds (bisphenol A (BPA) and 9,9-Bis(4-hydroxyphenyl)fluorene (BPFL)). These findings indicate that the beneficial effects of bioinspired materials that closely mimic ECM environments can yield efficient zebrafish cells with intrinsic functions and xenobiotic metabolism similar to those of zebrafish embryos. As a closer analog for the in vivo conditions that are associated with exposure to potentially hazardous chemicals, the straightforward culture model introduced in this study shows promise as an alternative tool that can be used to further eco-environmental assessment.

摘要

已经提出了许多方法来产生 3D 细胞培养物,这可以减少动物实验的需求。本研究提出了一种独特的 3D 培养平台,其特点是具有仿生结构的电纺纳米纤维(BSeNs)和水生细胞系,以弥补当前细胞球体生成技术的不足。在 3D 斑马鱼肝细胞培养物中使用 BSeNs 通过基于球体的体外测定法(如全转录组测序和生殖毒性测试)发现可以改善肝脏和生殖功能,优化后的特性显示出与暴露于环境内分泌干扰化学物质(17β-雌二醇(E2)、4-羟基他莫昔芬(4-HT)和双酚化合物(双酚 A(BPA)和 9,9-双(4-羟基苯基)芴(BPFL))后获得的鱼胚胎急性毒性(FET,OECD TG 236)相似的结果。这些发现表明,仿生材料的有益效果可以产生具有内在功能和外源性代谢的高效斑马鱼细胞,这些功能和代谢类似于斑马鱼胚胎。作为与潜在危险化学品暴露相关的体内条件的更接近的模拟物,本研究中引入的简单培养模型显示出作为替代工具的潜力,可用于进一步进行生态环境评估。

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