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Sperm Micromotors for Cargo Delivery through Flowing Blood

机译:通过流动血液的货物交付的精子微电偶

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摘要

Micromotors are recognized as promising candidates for untethered micromanipulation and targeted cargo delivery in complex biological environments. However, their feasibility in the circulatory system has been limited due to the low thrust force exhibited by many of the reported synthetic micromotors, which is not sufficient to overcome the high flow and complex composition of blood. Here we present a hybrid sperm micromotor that can actively swim against flowing blood (continuous and pulsatile) and perform the function of heparin cargo delivery. In this biohybrid system, the sperm flagellum provides a high propulsion force while the synthetic microstructure serves for magnetic guidance and cargo transport. Moreover, single sperm micromotors can assemble into a train-like carrier after magnetization, allowing the transport of multiple sperm or medical cargoes to the area of interest, serving as potential anticoagulant agents to treat blood clots or other diseases in the circulatory system.
机译:Microomotors被认可为未受容性的微操纵和有针对性的货物交付的承诺候选人。然而,由于许多报告的合成微多仪表现出的低推力力,它们在循环系统中的可行性受到限制,这是克服高流量和复杂的血液组合物的低推力力。在这里,我们提出了一种混合精子微量运动,可以积极地防止流动的血液(连续和脉动)并进行肝素货物递送的功能。在这种生物中的系统中,精子鞭毛提供高推进力,而合成微结构用于磁引导和货物运输。此外,单个精子微量运动器可以在磁化后组装到火车状载体中,允许将多个精子或医疗货物运送到感兴趣的区域,用作潜在的抗凝血剂,以治疗循环系统中的血液凝块或其他疾病。

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