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Microrobots: A new era in ocular drug delivery

机译:微型机器人:眼用药物输送的新时代

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Introduction: Ocular microrobots have the potential to change the way in which we treat a variety of diseases at the anterior and the posterior segments of the eye. Wireless manipulation and positioning of drug delivery magnetic millimeter and submillimeter platforms into the eye constitute a potential route for minimally invasive targeted therapy. However, the field is still in its infancy and faces challenges related to the fabrication, control an interaction with complex biological environments.Areas covered: This review briefly introduces the complex anatomy and physiology of the eye, which renders limitations to the current treatments of ocular diseases. The topical administration of eye drops, intravitreal injections and drug delivery implants is briefly mentioned together with their drawbacks. The authors also analyze the minimally invasive microrobotic approach as an alternative method and report the recent advancements in the fabrication, control, manipulation and drug delivery.Expert opinion: Although microrobotics is a young field, a significant amount of work has been developed to face different challenges related to the minimally invasive manipulation of microdevices in the eye. Current research is already at the state of in vivo testing for systems and their biocompatibility. It is expected that the general concepts acquired will soon be applied for specific interventions, especially for posterior eye pathologies.
机译:简介:眼动微型机器人有可能改变我们在眼的前部和后部治疗各种疾病的方式。无线操纵和将药物输送电磁毫米和亚毫米平台定位到眼睛中构成了微创靶向治疗的潜在途径。然而,该领域仍处于起步阶段,面临与制造有关的挑战,控制与复杂生物环境的相互作用。涵盖的领域:本文简要介绍了眼睛的复杂解剖结构和生理,这限制了当前眼科治疗的局限性疾病。简要提及了滴眼液,玻璃体内注射和药物递送植入物的局部给药及其缺点。作者还分析了微创微机器人技术作为一种替代方法,并报告了制备,控制,操纵和药物输送方面的最新进展。与眼内微设备的微创操作有关的挑战。当前的研究已经处于对系统及其生物相容性进行体内测试的状态。可以预期,所获得的一般概念将很快应用于特定的干预措施,尤其是后眼病变。

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