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Controlled Delivery of Signaling Molecules Using Magnetic Microrobots

机译:使用电磁微型机器人控制信号分子的传递

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_Magnetically-actuated microrobots have many potential applications in biological environments. Microrobots have many uses in cellular environments since they can be remotely actuated and precisely manipulated in biochemical fluids. Most cellular phenomena depend on biochemical signals. Therefore, various techniques have been developed for encapsulation and release of drugs, nutrients or other cargo using microrobots. However, localized targeting without payload leakage during transport is challenging. In this work, we present a light-controlled delivery system integrated with magnetic microrobots which overcomes this challenge. We synthesize a photolabile linker which releases a cell-to-cell signaling molecule when exposed to light. This system is integrated with magnetic micro-robots, which can be steered to target locations in the cell culture. We demonstrate that gene expression in engineered bacterial cells is successfully activated when the signaling molecule is cleaved. This proposed method can be used for wide-ranging applications in the fields of engineering, biology, and medicine, in which the ability to target and release molecules on-demand to a particular location is important.
机译: _ 磁驱动微型机器人在生物环境中具有许多潜在的应用。微型机器人在细胞环境中有许多用途,因为它们可以在生化流体中进行远程控制和精确操纵。大多数细胞现象取决于生化信号。因此,已经开发出各种技术来使用微型机器人来封装和释放药物,营养物或其他货物。但是,在运输过程中没有有效载荷泄漏的局部瞄准具有挑战性。在这项工作中,我们提出了一种与磁性微型机器人集成的光控传送系统,它克服了这一挑战。我们合成了一个光不稳定的接头,当暴露在光线下时,该接头会释放细胞间信号分子。该系统与磁性微型机器人集成在一起,可以将其引导到细胞培养物中的目标位置。我们证明信号分子被切割时,工程细菌细胞中的基因表达被成功激活。此提议的方法可用于工程,生物学和医学领域的广泛应用,在这些领域中,按需靶向和释放分子到特定位置的能力很重要。

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