Liu Kan, Wang Ming-Wei, Lin Wei-Yu, Phung Duy Linh, Girgis Mark D, Wu Anna M, Tomlinson James S, Shen Clifton K-F
College of Electronics and Information Engineering, Wuhan Textile University, Wuhan, 430073, China.
Curr Org Synth. 2011 Aug 1;8(4):473-487. doi: 10.2174/157017911796117205.
In this manuscript, we review the latest advancement of microfluidics in molecular imaging probe development. Due to increasing needs for medical imaging, high demand for many types of molecular imaging probes will have to be met by exploiting novel chemistry/radiochemistry and engineering technologies to improve the production and development of suitable probes. The microfluidic-based probe synthesis is currently attracting a great deal of interest because of their potential to deliver many advantages over conventional systems. Numerous chemical reactions have been successfully performed in micro-reactors and the results convincingly demonstrate with great benefits to aid synthetic procedures, such as purer products, higher yields, shorter reaction times compared to the corresponding batch/macroscale reactions, and more benign reaction conditions. Several 'proof-of-principle' examples of molecular imaging probe syntheses using microfluidics, along with basics of device architecture and operation, and their potential limitations are discussed here.
在本手稿中,我们回顾了微流控技术在分子成像探针开发方面的最新进展。由于医学成像需求不断增加,必须通过利用新型化学/放射化学和工程技术来满足对多种类型分子成像探针的高需求,以改进合适探针的生产和开发。基于微流控的探针合成目前引起了极大的兴趣,因为它们有可能提供优于传统系统的诸多优势。许多化学反应已在微反应器中成功进行,结果令人信服地表明,与相应的间歇/宏观规模反应相比,微反应器在辅助合成过程方面具有诸多益处,例如产物更纯、产率更高、反应时间更短以及反应条件更温和。本文讨论了几个使用微流控技术合成分子成像探针的“原理验证”示例,以及设备架构和操作的基础知识及其潜在局限性。