首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Finite element modelling and design of a concentration gradient generating bioreactor: application to biological pattern formation and toxicology.
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Finite element modelling and design of a concentration gradient generating bioreactor: application to biological pattern formation and toxicology.

机译:浓度梯度生成生物反应器的有限元建模和设计:在生物模式形成和毒理学中的应用。

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摘要

This paper describes the use of a microfluidic gradient maker for the toxicological analysis of some conventional biomolecules such as hydrogen peroxide and a local anaesthetic, lidocaine on different cell cultures, human endothelial cells and myoblasts, respectively. The microfluidic device was designed and simulated using COMSOL Multiphysics and the concentration gradient in the microfluidic network was analysed through a fluid-dynamic and mass-transport study. Subsequently the device was fabricated with soft lithography, casting PDMS in a master to obtain channels about 250 microm deep. Hydrogen peroxide was tested on human endothelial cells, while lidocaine was tested on C2C12 myoblasts and an analysis was performed using propidium iodide staining followed by an imaging processing routine to obtain quantitative dose-response profiles in the gradient maker. The results show that the Gradient Maker (GM) bioreactor is a more sensitive method for detection of cell toxicity, and compared with testing of drug toxicity using microwells with individual cell cultures, allows one shot testing with a single cell culture exposed to a large number of concentrations. Moreover, the Gradient Maker was also modelled in order to realise biological pattern formation using two morphogenes acting as activator and inhibitor with varying diffusion rates.
机译:本文介绍了使用微流控梯度仪对某些常规生物分子(例如过氧化氢和局部麻醉药,利多卡因)分别在不同的细胞培养物,人内皮细胞和成肌细胞上进行毒理学分析。使用COMSOL Multiphysics设计和仿真微流控设备,并通过流体动力学和传质研究分析了微流控网络中的浓度梯度。随后,使用软光刻技术制造该器件,将PDMS浇铸在母版中以获得约250微米深的通道。过氧化氢在人内皮细胞上进行了测试,而利多卡因在C2C12成肌细胞上进行了测试,并使用碘化丙啶染色进行了分析,然后进行了成像处理程序以在梯度仪中获得定量的剂量反应曲线。结果表明,Gradient Maker(GM)生物反应器是检测细胞毒性的更灵敏方法,与使用单个细胞培养物的微孔进行药物毒性测试相比,可以对暴露于大量细胞中的单个细胞培养物进行一次性测试浓度。此外,还对Gradient Maker进行了建模,以使用两种形态发生剂作为激活剂和抑制剂,并以不同的扩散速率实现生物学模式的形成。

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