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Displacement and hybridization reactions in aptamer-functionalized hydrogels for biomimetic protein release and signal transduction

机译:用于仿生蛋白释放和信号转导的适体官能化水凝胶中的位移和杂交反应

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A variety of hydrogels have been synthesized for controlling the release of signaling molecules in applications such as drug delivery and regenerative medicine. However, it remains challenging to synthesize hydrogels with the ability to control the release of signaling molecules sequentially or periodically under physiological conditions as living cells do in response to the variation of metabolism. The purpose of this work was to study a novel biomimetic hydrogel system with the ability of recapitulating the procedure of cellular signal transduction and controlling the sequential release of signaling molecules under physiological conditions. In the presence of a small chemical, the signaling molecule is regulated to change from a DNA-bound state to a free state and the freed signaling molecule is able to regulate intracellular signal transduction and cell migration. Moreover, periodic exposure of the hydrogel system to the small chemical leads to sequential protein release. Since signaling molecules are important for every activity of the cell, this hydrogel system holds potential as a metabolism-responsive platform for controlled release of signaling molecules and cell regulation in various applications.
机译:已经合成了各种水凝胶,用于控制药物输送和再生医学等应用中的信号分子释放。然而,通过在生理条件下,在生理条件下依然控制信号传导分子释放的能力,它仍然具有挑战性,以反应代谢的变异。这项工作的目的是研究一种新型生物仿生水凝胶系统,具有重新携带细胞信号转导的程序和控制生理条件下信号分子的顺序释放的能力。在小化学品存在下,调节信号分子以从DNA结合状态变为自由状态,并且释放的信号分子能够调节细胞内信号转导和细胞迁移。此外,水凝胶系统对小化学品的周期性暴露导致顺序蛋白质释放。由于信号分子对于电池的每种活性很重要,因此该水凝胶系统具有作为代谢响应平台的潜力,用于控制各种应用中的信号分子和细胞调节的控制释放。

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