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Cell-Based Biosensor to Report DNA Damage in Micro- and Nanosystems

机译:基于细胞的生物传感器报告微系统和纳米系统中的DNa损伤

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摘要

Understanding how newly engineered micro- and nanoscale materials and systems that interact with cells impact cell physiology is crucial for the development and ultimate adoption of such technologies. Reports regarding the genotoxic impact of forces applied to cells in such systems that can both directly or indirectly damage DNA emphasize the need for developing facile methods to assess how materials and technologies affect cell physiology. To address this need we have developed a TurboRFP-based DNA damage reporter cell line in NIH-3T3 cells that fluoresce to report genotoxic stress caused by a wide variety of agents, from chemical genotoxic agents to UV-C radiation. Our biosensor was successfully implemented in reporting the genotoxic impact of nanomaterials, demonstrating the ability to assess size dependent geno- and cyto-toxicity. The biosensor cells can be assayed in a high throughput, noninvasive manner, with no need for overly sophisticated equipment or additional reagents. We believe that this open-source biosensor is an important resource for the community of micro- and nanomaterials and systems designers and users who wish to evaluate the impact of systems and materials on cell physiology.
机译:了解与细胞相互作用的新设计的微米级和纳米级材料和系统如何影响细胞生理,对于此类技术的开发和最终采用至关重要。关于施加于这样的系统中可直接或间接破坏DNA的细胞的力的遗传毒性影响的报告强调,需要开发一种简便的方法来评估材料和技术如何影响细胞生理。为了满足这一需求,我们在NIH-3T3细胞中开发了一种基于TurboRFP的DNA损伤报告基因细胞系,该细胞产生荧光以报告由多种试剂引起的遗传毒性胁迫,从化学遗传毒性试剂到UV-C辐射。我们的生物传感器已成功用于报告纳米材料的遗传毒性影响,证明了评估尺寸依赖性基因毒性和细胞毒性的能力。可以以高通量,无创方式对生物传感器细胞进行测定,而无需过于复杂的设备或额外的试剂。我们认为,对于希望评估系统和材料对细胞生理学影响的微型和纳米材料以及系统设计人员和用户来说,这种开源生物传感器是一个重要资源。

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