Joint Laboratory of Advanced Biomedical Technology (NFU-UGent), College of Chemical Engineering, Nanjing Forestry University (NFU), Nanjing, 210037, P. R. China.
Division of Engineering in Medicine, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Cambridge, MA, 02139, USA.
Small. 2020 Jun;16(24):e1907586. doi: 10.1002/smll.201907586. Epub 2020 May 10.
Barcodes have attracted widespread attention, especially for the multiplexed bioassays and anti-counterfeiting used toward medical and biomedical applications. An enabling gas-shearing approach is presented for generating 10-faced microspherical barcodes with precise control over the properties of each compartment. As such, the color of each compartment could be programmatically adjusted in the 10-faced memomicrospheres by using pregel solutions containing different combinations of fluorescent nanoparticles. During the process, three primary colors (red, green, and blue) are adopted to obtain up to seven merged fluorescent colors for constituting a large amount of coding as well as a magnetic compartment, capable of effective and robust high-throughput information-storage. More importantly, by using the biocompatible sodium alginate to construct the multicolor microspherical barcodes, the proposed technology is likely to advance the fields of food and pharmaceutics anti-counterfeiting. These remarkable properties point to the potential value of gas-shearing in engineering microspherical barcodes for biomedical applications in the future.
条形码受到了广泛关注,特别是在医学和生物医学应用中的多路复用生物测定和防伪方面。本研究提出了一种可行的气体剪切方法,用于生成具有精确控制每个隔室特性的 10 面微球条形码。通过使用含有不同荧光纳米粒子组合的预凝胶溶液,可以在 10 面记忆微球中对每个隔室的颜色进行编程式调整。在此过程中,采用三种基色(红、绿、蓝)来获得七种合并荧光颜色,以构成大量编码和一个磁性隔室,从而实现有效的和强大的高通量信息存储。更重要的是,通过使用生物相容性的海藻酸钠来构建多色微球条形码,所提出的技术可能会推动食品和药品防伪领域的发展。这些显著的特性表明,气体剪切在未来的生物医学应用工程微球条形码方面具有潜在的价值。