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受折纸启发的生物医学应用方法。

Origami-Inspired Approaches for Biomedical Applications.

作者信息

Ahmed Abdor Rahman, Gauntlett Olivia C, Camci-Unal Gulden

机构信息

Honors College, School of Environmental and Biological Sciences, Rutgers University, New Brunswick, New Jersey 08901, United States.

Department of Chemical Engineering, University of Massachusetts Lowell, Lowell, Massachusetts 01854, United States.

出版信息

ACS Omega. 2020 Dec 27;6(1):46-54. doi: 10.1021/acsomega.0c05275. eCollection 2021 Jan 12.

Abstract

Modern day biomedical applications require progressions that combine advanced technology with the conformability of naturally occurring, complex biosystems. These advancements yield conformational interactions between the biomedical devices and the biological organisms' structures. Biomedical applications that adapt origami-inspired approaches have accrued aspired advances. Along with application-specific advantages, the most pertinent advances provided by origami-inspired strategies include voluminous structures with the ability to conform to biosystems, shape-shifting from two-dimensional (2D) to three-dimensional (3D) structures, and biocompatibility. Throughout this paper, the exploration of new studies, primarily within the past decade, with origami-based applications of biomedical devices, including their theories, experimental results, and plans for future testing are reviewed. This mini-review contains examples that aid the advancement of biomedical applications and hold promising future discoveries. The origami-inspired applications discussed within this paper are tissue scaffolds, drug delivery approaches, stents and catheters, implants, microfluidic devices, biosensors, and origami usage in surgery.

摘要

现代生物医学应用需要将先进技术与天然存在的复杂生物系统的适应性相结合的进展。这些进展产生了生物医学设备与生物有机体结构之间的构象相互作用。采用受折纸启发方法的生物医学应用已经取得了理想的进展。除了特定应用的优势外,受折纸启发的策略提供的最相关进展包括能够适应生物系统的庞大结构、从二维(2D)到三维(3D)结构的形状转变以及生物相容性。在本文中,主要回顾了过去十年内关于基于折纸的生物医学设备应用的新研究,包括其理论、实验结果以及未来测试计划。这篇小型综述包含有助于生物医学应用发展并拥有未来有前景发现的实例。本文讨论的受折纸启发的应用包括组织支架、药物递送方法、支架和导管、植入物、微流控设备、生物传感器以及折纸在手术中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f00b/7807481/1d074f0b2dde/ao0c05275_0004.jpg

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