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Biomimetic Platelet-Camouflaged Nanorobots for Binding and Isolation of Biological Threats

机译:仿生血小板伪装的纳米机器人,用于结合和分离生物威胁。

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One emerging and exciting topic in robotics research is the design of micro-anoscale robots for biomedical operations. Unlike industrial robots that are developed primarily to automate routine and dangerous tasks, biomedical nanorobots are designed for complex, physiologically relevant environments, and tasks that involve unanticipated biological events. Here, a biologically interfaced nanorobot is reported, made of magnetic helical nano-motors cloaked with the plasma membrane of human platelets. The resulting biomimetic nanorobots possess a biological membrane coating consisting of diverse functional proteins associated with human platelets. Compared to uncoated nanomotors which experience severe biofouling effects and hence hindered propulsion in whole blood, the platelet-membrane-cloaked nanomotors disguise as human platelets and display efficient propulsion in blood over long time periods. The biointerfaced nanorobots display platelet-mimicking properties, including adhesion and binding to toxins and platelet-adhering pathogens, such as Shiga toxin and Staphylococcus aureus bacteria. The locomotion capacity and platelet-mimicking biological function of the biomimetic nanomotors offer efficient binding and isolation of these biological threats. The dynamic biointerfacing platform enabled by platelet-membrane cloaked nanorobots thus holds considerable promise for diverse biomedical and biodefense applications.
机译:机器人技术研究中一个新兴且令人兴奋的主题是用于生物医学操作的微型/纳米级机器人的设计。与主要为常规任务和危险任务自动化而开发的工业机器人不同,生物医学纳米机器人是为复杂的,与生理相关的环境以及涉及意外生物事件的任务而设计的。在此,报道了一种生物界面的纳米机器人,它是由被人体血小板质膜掩盖的电磁螺旋纳米马达制成的。所得的仿生纳米机器人具有生物膜涂层,该涂层由与人类血小板相关的多种功能蛋白组成。与遭受严重生物污垢作用并因此阻碍全血推进的未涂覆纳米电动机相比,血小板膜遮盖的纳米电动机伪装成人类血小板,并在长时间内显示出对血液的有效推进。生物接口的纳米机器人表现出模仿血小板的特性,包括对毒素和血小板粘附病原体(如志贺毒素和金黄色葡萄球菌)的粘附和结合。仿生纳米马达的运动能力和模仿血小板的生物学功能提供了对这些生物学威胁的有效结合和隔离。因此,由血小板膜隐身纳米机器人实现的动态生物接口平台对各种生物医学和生物防御应用具有可观的前景。

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