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Milli-channel array for direct and quick reading of root elongation bioassays

机译:毫通道阵列可直接快速读取牙根伸长生物测定

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摘要

A novel platform to perform systematic analysis and direct reading of root elongation bioassays is presented. The device was designed to include multiplexed microenvironments for the germination and growth of individual seeds, which allows observation by the naked eye or by optical systems, notably cellphone cameras. Prototypes were fabricated by laser micromachining on a highly transparent material that is fully compatible with biological systems. The effectiveness of the milli-channel array was verified against the conventional system (Petri-dish). Lactuca sativa was chosen as a model species and glyphosate as a typical toxic agent. All tests were run according to standardized procedures and data analysis was carried out through different statistical indicators such as the root elongation and germination indexes. Results attained in the milli-channel array were identical to those in Petri dish, with the remarkable benefit that several steps required in the conventional system were avoided, which enormously decreases the operation time and the possibility of experimental errors. Further advantages of the milli-channel array are also reported, such as the capability to achieve live imaging of plant organs growth through a simple experiment. The developed device has been proven to be effective, versatile, easy-to-use, and integrable to cellphones, which naturally provide facilities for data recording, analysis, and networking. These improvements open the route to novel applications of bioassays in the wide field of ecotoxicology and environmental studies.
机译:提出了进行系统分析和直接读取根伸长生物测定法的新型平台。该设备设计为包括用于单个种子发芽和生长的多重微环境,从而可以通过肉眼或光学系统(尤其是手机摄像头)进行观察。通过在与生物系统完全兼容的高度透明的材料上进行激光微加工来制造原型。相对于常规系统(Petri-dish)验证了毫通道阵列的有效性。选择紫花苜蓿作为模型物种,选择草甘膦作为典型的有毒物质。所有测试均按照标准化程序进行,并通过不同的统计指标(例如根伸长和发芽指数)进行数据分析。在微通道阵列中获得的结果与在培养皿中的结果相同,其显着优点是避免了常规系统所需的几个步骤,从而极大地减少了操作时间并减少了实验错误的可能性。还报道了微通道阵列的其他优势,例如能够通过简单的实验对植物器官生长进行实时成像。事实证明,该开发的设备有效,通用,易于使用,并且可与手机集成,从而自然地为数据记录,分析和联网提供了便利。这些改进为生物测定在生态毒理学和环境研究领域的新应用开辟了道路。

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