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Optimization of Non-Thermal Plasma Treatment in an In Vivo Model Organism

机译:体内模型生物非热等离子体治疗的优化

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摘要

Non-thermal plasma is increasingly being recognized for a wide range of medical and biological applications. However, the effect of non-thermal plasma on physiological functions is not well characterized in in vivo model systems. Here we use a genetically amenable, widely used model system, Drosophila melanogaster, to develop an in vivo system, and investigate the role of non-thermal plasma in blood cell differentiation. Although the blood system in Drosophila is primitive, it is an efficient system with three types of hemocytes, functioning during different developmental stages and environmental stimuli. Blood cell differentiation in Drosophila plays an essential role in tissue modeling during embryogenesis, morphogenesis and also in innate immunity. In this study, we optimized distance and frequency for a direct non-thermal plasma application, and standardized doses to treat larvae and adult flies so that there is no effect on the viability, fertility or locomotion of the organism. We discovered that at optimal distance, time and frequency, application of plasma induced blood cell differentiation in the Drosophila larval lymph gland. We articulate that the augmented differentiation could be due to an increase in the levels of reactive oxygen species (ROS) upon non-thermal plasma application. Our studies open avenues to use Drosophila as a model system in plasma medicine to study various genetic disorders and biological processes where non-thermal plasma has a possible therapeutic application.
机译:非热等离子体越来越广泛地被广泛应用于医学和生物领域。但是,在体内模型系统中,非热等离子体对生理功能的影响尚未得到很好的表征。在这里,我们使用遗传适应性强,广泛使用的模型系统果蝇(Drosophila melanogaster)开发体内系统,并研究非热血浆在血细胞分化中的作用。尽管果蝇的血液系统是原始的,但它是具有三种类型的血细胞的有效系统,它们在不同的发育阶段和环境刺激下起作用。果蝇中的血细胞分化在胚胎发生,形态发生以及先天免疫过程中的组织建模中起着至关重要的作用。在这项研究中,我们优化了直接非热等离子体应用的距离和频率,并标准化了剂量来治疗幼虫和成年果蝇,因此对生物的生存力,繁殖力或运动没有影响。我们发现,在最佳距离,时间和频率下,果蝇幼虫淋巴腺中血浆的应用可诱导血细胞分化。我们明确指出,分化的增加可能是由于非热等离子体施加后活性氧(ROS)含量的增加。我们的研究为在果蝇医学中使用果蝇作为模型系统研究非热血浆可能具有治疗应用的各种遗传疾病和生物学过程开辟了道路。

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