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生物医学纳米气泡与微流控技术的机遇

Biomedical nanobubbles and opportunities for microfluidics.

作者信息

Paknahad Ali A, Kerr Liam, Wong Daniel A, Kolios Michael C, Tsai Scott S H

机构信息

Department of Mechanical and Industrial Engineering, Ryerson University 350 Victoria Street Toronto Ontario M5B 2K3 Canada

Institute for Biomedical Engineering, Science and Technology (iBEST), A Partnership Between Ryerson University and St. Michael's Hospital 209 Victoria Street Toronto Ontario M5B 1T8 Canada.

出版信息

RSC Adv. 2021 Oct 5;11(52):32750-32774. doi: 10.1039/d1ra04890b. eCollection 2021 Oct 4.

Abstract

The use of bulk nanobubbles in biomedicine is increasing in recent years, which is attributable to the array of therapeutic and diagnostic tools promised by developing bulk nanobubble technologies. From cancer drug delivery and ultrasound contrast enhancement to malaria detection and the diagnosis of acute donor tissue rejection, the potential applications of bulk nanobubbles are broad and diverse. Developing these technologies to the point of clinical use may significantly impact the quality of patient care. This review compiles and summarizes a representative collection of the current applications, fabrication techniques, and characterization methods of bulk nanobubbles in biomedicine. Current state-of-the-art generation methods are not designed to create nanobubbles of high concentration and low polydispersity, both characteristics of which are important for several bulk nanobubble applications. To date, microfluidics has not been widely considered as a tool for generating nanobubbles, even though the small-scale precision and real-time control offered by microfluidics may overcome the challenges mentioned above. We suggest possible uses of microfluidics for improving the quality of bulk nanobubble populations and propose ways of leveraging existing microfluidic technologies, such as organ-on-a-chip platforms, to expand the experimental toolbox of researchers working to develop biomedical nanobubbles.

摘要

近年来,生物医学中大量纳米气泡的应用日益增多,这归因于不断发展的大量纳米气泡技术所带来的一系列治疗和诊断工具。从癌症药物递送、超声造影增强到疟疾检测以及急性供体组织排斥反应的诊断,大量纳米气泡的潜在应用广泛而多样。将这些技术发展到临床应用阶段可能会显著影响患者护理质量。本综述汇编并总结了生物医学中大量纳米气泡当前应用、制备技术和表征方法的代表性集合。当前的先进生成方法并非旨在创建高浓度和低多分散性的纳米气泡,而这两个特性对于大量纳米气泡的多种应用都很重要。迄今为止,微流控技术尚未被广泛视为一种生成纳米气泡的工具,尽管微流控技术提供的小规模精度和实时控制可能会克服上述挑战。我们提出了微流控技术在提高大量纳米气泡群体质量方面的可能用途,并提出了利用现有微流控技术(如芯片器官平台)来扩展致力于开发生物医学纳米气泡的研究人员实验工具箱的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0737/9042222/5feea9ae22be/d1ra04890b-f1.jpg

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