Department of Biomedical Engineering, Graduate School of Engineering, Okayama University of Science, 1-1, Okayama 700-0005, Japan.
Eur Biophys J. 2012 Jun;41(6):571-8. doi: 10.1007/s00249-012-0811-y. Epub 2012 Apr 3.
Microbubbles have been used in a variety of fields and have unique properties, for example shrinking collapse, long lifetime, efficient gas solubility, a negatively charged surface, and the ability to produce free radicals. In medicine, microbubbles have been used mainly as diagnostic aids to scan various organs of the body, and they have recently been investigated for use in drug and gene delivery. However, there have been no reports of blood oxygenation by use of oxygen microbubble fluids without shell reagents. In this study, we demonstrated that nano or microbubbles can achieve oxygen supersaturation of fluids, and may be sufficiently small and safe for infusion into blood vessels. Although Po(2) increases in fluids resulting from use of microbubbles were inhibited by polar solvents, normal saline solution (NSS) was little affected. Thus, NSS is suitable for production of oxygen-rich fluid. In addition, oxygen microbubble NSS effectively improved hypoxic conditions in blood. Thus, use of oxygen microbubble (nanobubble) fluids is a potentially effective novel method for oxygenation of hypoxic tissues, for infection control, and for anticancer treatment.
微泡在多种领域都有应用,具有独特的性质,如收缩塌陷、长寿命、高效气体溶解度、带负电荷的表面和产生自由基的能力。在医学领域,微泡主要用作诊断辅助手段,扫描身体的各种器官,最近还研究了它们在药物和基因传递方面的应用。然而,还没有关于使用无壳试剂的氧微泡液进行血液氧合的报道。在这项研究中,我们证明了纳米或微米气泡可以实现流体的氧气过饱和,并且可能足够小且安全,可以注入血管。尽管使用微泡导致的流体中 Po2 的增加被极性溶剂抑制,但生理盐水 (NSS) 的影响很小。因此,NSS 适合生产富氧流体。此外,氧微泡 NSS 有效地改善了血液中的缺氧情况。因此,使用氧微泡(纳米气泡)液是一种有潜力的有效治疗缺氧组织、控制感染和抗癌的新型氧合方法。