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迈向用于特定部位药物递送的软机器人设备。

Towards soft robotic devices for site-specific drug delivery.

作者信息

Alici Gursel

机构信息

a 1 School of Mechanical, Materials and Mechatronic Engineering, University of Wollongong , 2522 NSW, Australia.

b 2 ARC Center of Excellence for Electromaterials Science, University of Wollongong , 2522 NSW, Australia.

出版信息

Expert Rev Med Devices. 2015;12(6):703-15. doi: 10.1586/17434440.2015.1091722. Epub 2015 Sep 28.

Abstract

Considerable research efforts have recently been dedicated to the establishment of various drug delivery systems (DDS) that are mechanical/physical, chemical and biological/molecular DDS. In this paper, we report on the recent advances in site-specific drug delivery (site-specific, controlled, targeted or smart drug delivery are terms used interchangeably in the literature, to mean to transport a drug or a therapeutic agent to a desired location within the body and release it as desired with negligibly small toxicity and side effect compared to classical drug administration means such as peroral, parenteral, transmucosal, topical and inhalation) based on mechanical/physical systems consisting of implantable and robotic drug delivery systems. While we specifically focus on the robotic or autonomous DDS, which can be reprogrammable and provide multiple doses of a drug at a required time and rate, we briefly cover the implanted DDS, which are well-developed relative to the robotic DDS, to highlight the design and performance requirements, and investigate issues associated with the robotic DDS. Critical research issues associated with both DDSs are presented to describe the research challenges ahead of us in order to establish soft robotic devices for clinical and biomedical applications.

摘要

最近,大量研究工作致力于建立各种药物递送系统(DDS),包括机械/物理、化学以及生物/分子药物递送系统。在本文中,我们报告了基于由可植入和机器人药物递送系统组成的机械/物理系统的位点特异性药物递送(位点特异性、可控、靶向或智能药物递送在文献中可互换使用,是指将药物或治疗剂输送到体内所需位置,并以与口服、肠胃外、透粘膜、局部和吸入等传统给药方式相比毒性和副作用可忽略不计的方式按需释放)的最新进展。虽然我们特别关注可重新编程并能在所需时间和速率提供多剂量药物的机器人或自主药物递送系统,但我们也简要介绍了相对于机器人药物递送系统已得到充分发展的植入式药物递送系统,以突出设计和性能要求,并研究与机器人药物递送系统相关的问题。本文还提出了与这两种药物递送系统相关的关键研究问题,以描述我们在建立用于临床和生物医学应用的软机器人设备方面面临的研究挑战。

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