首页> 外文会议>ASME Bioengineering Conference >PROBING MULTICELLULAR DYNAMICS IN XENOPUS LAEVIS EMBRYONIC DEVELOPMENT USING A MECHANICAL ENGINEERING BASED MICROFLUIDIC FEEDBACK APPROACH
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PROBING MULTICELLULAR DYNAMICS IN XENOPUS LAEVIS EMBRYONIC DEVELOPMENT USING A MECHANICAL ENGINEERING BASED MICROFLUIDIC FEEDBACK APPROACH

机译:基于机械工程的微流体反馈方法探测Xenopus Laevis胚胎发育的多细胞动态

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Spatial and temporal regulation of chemical environments in and around cells or tissues for long time periods is important to understand multicellular signaling since the responses to chemical factors control the resulting coordinated events in development. Although progress has been made in command of single cell environments, both long-term and high-speed control of multicellular chemical environments in development is still challenging. We have developed a mechanical engineering based microfluidic feedback approach that allows long-term and high-speed manipulation of a laminar flow interface in a microfluidic channel. This approach enabled long-term spatiotemporal control of chemical conditions over Animal Cap (AC) explants during the gastrulation stage in Xenopus laevis embryonic development. We present the responses of the explants to periodic stimulation of steroid hormone dexamethasone (DEX) by tracking a hormone-activated nuclear-localizing green fluorescent protein tagged glucocorticoid receptor (nuc-GR-GFP). We believe that our approach will be useful in diverse areas including dynamic system and control in microfluidics, embryonic development, and spatiotemporally integrated biological responses.
机译:由于对化学因素的反应控制产生的开发中产生的协调事件,因此长时间内和周围的细胞或组织中的化学环境的空间和时间调节是很重要的,这是重要的。虽然在单细胞环境中取得了进展,但在发展中的多细胞化学环境的长期和高速控制仍然具有挑战性。我们开发了一种基于机械工程的微流体反馈方法,其允许在微流体通道中的层流界面的长期和高速操纵。这种方法使在胃癌肝术期间的动物帽(AC)外植体的化学条件的长期时尚控制能够在Xenopus Laevis胚胎发育。我们通过跟踪激活激活的核定位绿色荧光蛋白标记的糖皮质激素受体(NUC-GR-GFP)来介绍外植体的答疑植体以定期刺激类固醇激素地塞米松(DEX)。我们认为,我们的方法在不同地区有用,包括动态系统和微流体,胚胎发育和时尚综合的生物反应中的动态系统和控制。

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