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Localized microinjection of intact Drosophila melanogaster larva to investigate the effect of serotonin on heart rate

机译:完整的果蝇黑素转基物幼虫的局部显微注射,探讨血清素对心率的影响

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In this paper, we present a novel hybrid microfluidic device for localized microinjection and heart monitoring of intact Drosophila melanogaster larvae at different developmental stages. Drosophila heart at the larval stage has been used as a model for cardiac disorder studies. However, previous pharmacological and toxicological cardiac studies are limited to dissected (semi-intact) Drosophila larvae which cannot be used for post-treatment studies. Challenges associated with microinjection of intact larvae include delicate handling of individual larvae, proper orientation for microneedle penetration, localized microinjection with controlled amount of chemicals into the hemolymph and reversible immobilization for post-injection phenotypic studies, all addressed by our microfluidic device. Larva loading and orientation were achieved by glass capillaries integrated into the PDMS microfluidic device. Side suction channels were used for immobilization prior to heart activity recording. Localized microinjection was achieved with a one degree-of-freedom microneedle and a custom-made pressure driven reagent delivery system, without any adverse effect on heart rate and animal viability. Precision in localized injection into the body cavity close to the heart chamber or the fat body was demonstrated with our microfluidic device. A MATLAB-based heartbeat quantification technique was used to investigate the dose-dependent effect of serotonin (5-hydroxytryptamine), a neurotransmitter, on the heart rate of intact Drosophila larvae, for the first time. Injection of 40 nL serotonin with >= 0.01 mM concentration significantly increased the heart rate of 3(rd) instar larvae by 21 +/- 7% (SEM). Injection of 5 nL serotonin with a concentration of 0.01 mM significantly increased the heart rate of 2(nd) instar larvae by 12 +/- 3% (SEM). The proposed microfluidic injection and heartbeat monitoring technique can be used for dye angiography and hemolymph circulation studies as well as screening intravenous drugs in vivo using the whole-animal Drosophila melanogaster.
机译:在本文中,我们提出了一种新型杂交微流体装置,用于不同发育阶段的完整果蝇幼虫的局部显微注射和心脏监测。幼虫阶段的果蝇心脏已被用作心脏病研究的模型。然而,先前的药理学和毒理学心脏研究限于解剖(半完整)果蝇幼虫,其不能用于治疗后的研究。与Intact幼虫的显微注射相关的挑战包括细腻的单个幼虫处理,微针渗透的正确取向,局部显微注射,用控制量的化学物质进入血淋巴和再注射后的表型研究的可逆固定,所有这些都由我们的微流体装置解决。通过集成到PDMS微流体装置中的玻璃毛细管来实现幼虫装载和方向。在心脏活动记录之前使用侧吸引通道来固定。用一种自由度微针和定制的压力驱动试剂递送系统实现局部显微注射,而没有对心率和动物活力的任何不利影响。用我们的微流体装置对靠近心脏室的局部注射到靠近心脏室或脂肪体的精度。首次使用基于MATLAB的心跳量化技术来研究血清素(5-羟基 - 羟基胺),神经递质的剂量依赖性效果,这是第一次对完整果蝇幼虫的心率。用> = 0.01mm浓度注射40nl血清素,显着提高了3(RD)幼虫的心率21 +/- 7%(SEM)。浓度为0.01mm的浓度为5 nL血清素,显着提高了2(ND)血液幼虫的心率12 +/- 3%(SEM)。所提出的微流体注射和心跳监测技术可用于染料血小映射和血淋巴循环研究以及使用全动物果蝇黑素转渣在体内筛选静脉内药物。

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