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Enzymatically active biomimetic micropropellers for the penetration of mucin gels

机译:具有酶活性的仿生微型推进器可渗透粘蛋白凝胶

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摘要

In the body, mucus provides an important defense mechanism by limiting the penetration of pathogens. It is therefore also a major obstacle for the efficient delivery of particle-based drug carriers. The acidic stomach lining in particular is difficult to overcome because mucin glycoproteins form viscoelastic gels under acidic conditions. The bacterium Helicobacter pylori has developed a strategy to overcome the mucus barrier by producing the enzyme urease, which locally raises the pH and consequently liquefies the mucus. This allows the bacteria to swim through mucus and to reach the epithelial surface. We present an artificial system of reactive magnetic micropropellers that mimic this strategy to move through gastric mucin gels by making use of surface-immobilized urease. The results demonstrate the validity of this biomimetic approach to penetrate biological gels, and show that externally propelled microstructures can actively and reversibly manipulate the physical state of their surroundings, suggesting that such particles could potentially penetrate native mucus.
机译:在体内,粘液通过限制病原体的渗透而提供了重要的防御机制。因此,这也是有效递送基于颗粒的药物载体的主要障碍。特别是酸性胃衬很难克服,因为粘蛋白糖蛋白在酸性条件下形成粘弹性凝胶。幽门螺杆菌已开发出一种策略,通过产生尿素酶来克服粘液屏障,该酶局部升高pH值,从而液化粘液。这使细菌游过粘液并到达上皮表面。我们提出了一个反应性磁性微型螺旋桨的人工系统,该系统模仿了利用表面固定的脲酶通过胃粘蛋白凝胶移动的这一策略。结果证明了这种仿生方法穿透生物凝胶的有效性,并表明外部推进的微结构可以主动和可逆地控制周围环境的物理状态,表明此类颗粒可能潜在地穿透天然粘液。

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