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Biomimetic Presentation of Cryptic Ligands via Single-Chain Nanogels for Synergistic Regulation of Stem Cells

机译:通过单链纳米凝胶进行隐秘配体的仿生介质呈现干细胞协同调控

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摘要

Dynamic controlling the nanoscale presentation of synergistic ligands to stem cells by biomiinetic single-chain materials can provide critical insights to understand the molecular crosstalk underlying cells and their extracellular matrix. Here, a stimuli-responsive single-chain macromolecular nanoregulator with conformational dynamics is fabricated based on an advanced scale-up single polymeric chain nanogel (SCNG). Such a carefully designed SCNG is capable of mediating a triggered copresentation of the master and cryptic ligands in a single molecule to elicit the synergistic crosstalk between different intracellular signaling pathways, thereby considerably boosting the bioactivity of the presented ligands. This controllable nanoswitching-on of cell-adhesive ligands' presentation allows the regulation of cell adhesion and fate from molecular scale. The modular nature of this synthetic macromolecular nanoregulator makes it a versatile nanomaterial platform to assist basic and fundamental studies in a wide array of research topics.
机译:动态控制通过生物素单链材料对干细胞进行协同配体的纳米级呈递可以提供致力于理解分子串扰细胞及其细胞外基质的关键见解。这里,基于先进的扩展单聚合物链纳米凝胶(SCNG)制造具有构象动态的刺激响应式单链大分子纳米调纳晶管。这种精心设计的SCNG能够在单个分子中介导主和隐蔽配体的触发串联,以引发不同细胞内信号传导途径之间的协同串扰,从而大大提高了所提出的配体的生物活性。该可控纳米型纳米开关的细胞粘性配体呈现允许调节细胞粘附和来自分子尺度的命运。该合成大分子纳米载体的模块化性质使其成为一种多功能的纳米材料平台,以帮助在广泛的研究主题中进行基础和基础研究。

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