首页> 美国卫生研究院文献>Journal of the Royal Society Interface >Bio-electrospraying and aerodynamically assisted bio-jetting the model eukaryotic Dictyostelium discoideum: assessing stress and developmental competency post treatment
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Bio-electrospraying and aerodynamically assisted bio-jetting the model eukaryotic Dictyostelium discoideum: assessing stress and developmental competency post treatment

机译:生物电喷雾和气动辅助生物喷射模型真核双歧盘基网柄菌:评估后处理的压力和发育能力

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摘要

Bio-electrospraying (BES) and aerodynamically assisted bio-jetting (AABJ) have recently been established as important novel biospray technologies for directly manipulating living cells. To elucidate their potential in medical and clinical sciences, these bio-aerosol techniques have been subjected to increasingly rigorous investigations. In parallel to these studies, we wish to introduce these unique biotechnologies for use in the basic biological sciences, for handling a wide range of cell types and systems, thus increasing the range and the scope of these techniques for modern research. Here, the authors present the analysis of the new use of these biospray techniques for the direct handling of the simple eukaryotic biomedical model organism Dictyostelium discoideum. These cells are widely used as a model for immune cell chemotaxis and as a simple model for development. We demonstrate that AABJ of these cells did not cause cell stress, as defined by the stress-gene induction, nor affect cell development. Furthermore, although BES induced the increased expression of one stress-related gene (gapA), this was not a generalized stress response nor did it affect cell development. These data suggest that these biospray techniques can be used to directly manipulate single cells of this biomedical model without inducing a generalized stress response or perturbing later development.
机译:生物电喷雾(BES)和空气动力学辅助生物喷射(AABJ)最近已被确立为直接操作活细胞的重要新型生物喷雾技术。为了阐明其在医学和临床科学中的潜力,这些生物气雾剂技术已受到越来越严格的研究。在进行这些研究的同时,我们希望介绍这些独特的生物技术以用于基础生物学,以处理各种各样的细胞类型和系统,从而扩大这些技术在现代研究中的范围和范围。在这里,作者介绍了这些生物喷雾技术在直接处理简单真核生物医学模型生物盘基网柄菌中的新用途的分析。这些细胞被广泛用作免疫细胞趋化性的模型和简单的发育模型。我们证明,这些细胞的AABJ不会引起细胞应激(如应激基因诱导所定义),也不会影响细胞发育。此外,尽管BES诱导了一种应激相关基因(gapA)的表达增加,但这不是普遍的应激反应,也不影响细胞发育。这些数据表明,这些生物喷雾技术可用于直接操纵该生物医学模型的单个细胞,而不会引起普遍的应激反应或干扰以后的发育。

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