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Microfluidic EmbryoSort Technology - Towards in flow analysis, sorting and dispensing of individual vertebrate embryos

机译:微流体EmbryoSort技术-致力于对单个脊椎动物胚胎进行流量分析,分选和分配

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The demand to reduce the numbers of laboratory animals has facilitated the emergence of surrogate models such as tests performed on zebrafish (Danio rerio) or African clawed frog's (Xenopus levis) eggs, embryos and larvae. Those two model organisms are becoming increasingly popular replacements to current adult animal testing in toxicology, ecotoxicology and also in drug discovery. Zebrafish eggs and embryos are particularly attractive for toxicological analysis due their size (diameter 1.6 mm), optical transparency, large numbers generated per fish and very straightforward husbandry. The current bottleneck in using zebrafish embryos for screening purposes is, however, a tedious manual evaluation to confirm the fertilization status and subsequent dispensing of single developing embryos to multitier plates to perform toxicity analysis. Manual procedures associated with sorting hundreds of embryos are very monotonous and as such prone to significant analytical errors due to operator's fatigue. In this work, we present a proof-of-concept design of a continuous flow embryo sorter capable of analyzing, sorting and dispensing objects ranging in size from 1.5 - 2.5 mm. The prototypes were fabricated in polymethyl methacrylate (PMMA) transparent thermoplastic using infrared laser micromachining. The application of additive manufacturing processes to prototype Lab-on-a-Chip sorters using both fused deposition manufacturing (FDM) and stereolithography (SLA) were also explored. The operation of the device was based on a revolving receptacle capable of receiving, holding and positioning single fish embryos for both interrogation and subsequent sorting. The actuation of the revolving receptacle was performed using a DC motor and/or microservo motor. The system was designed to separate between fertilized (LIVE) and non-fertilized (DEAD) eggs, based on optical transparency using infrared (IR) emitters and receivers.
机译:减少实验动物数量的需求促进了替代模型的出现,例如在斑马鱼(Danio rerio)或非洲爪蛙(Xenopus levis)卵,胚胎和幼虫上进行的测试。在毒理学,生态毒理学以及药物发现方面,这两种模式生物正日益成为当前成年动物测试的替代品。斑马鱼的卵和胚胎的大小(直径1.6毫米),光学透明性,每条鱼产生大量的卵和非常简单的饲养方法,对于毒理学分析尤其有吸引力。但是,使用斑马鱼胚胎进行筛选的当前瓶颈是繁琐的人工评估,以确认受精状态以及随后将单个发育中的胚胎分配到多层平板上进行毒性分析。与分拣数百个胚胎相关的手动操作非常单调,因此由于操作员的疲劳而容易产生重大的分析错误。在这项工作中,我们提出了一种连续流胚胎分选机的概念验证设计,该分选机能够分析,分选和分配大小范围为1.5-2.5 mm的物体。原型是使用红外激光微加工在聚甲基丙烯酸甲酯(PMMA)透明热塑性塑料中制成的。还探讨了增材制造工艺在同时使用熔融沉积制造(FDM)和立体光刻(SLA)的芯片实验室分选机原型中的应用。该设备的操作基于旋转接收器,该接收器能够接收,保持和定位单个鱼胚,以进行讯问和随后的分类。旋转容器的致动是使用直流电动机和/或微型伺服电动机进行的。该系统设计为基于使用红外(IR)发射器和接收器的光学透明性,将受精(LIVE)和未受精(DEAD)的卵分开。

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