Vijayakumar Pavithra, Macdonald Joanne
Division of Experimental Therapeutics, Department of Medicine, Columbia University, 630 W 168thSt, New York, NY, 10032, USA.
Genecology Research Centre; Inflammation and Healing Research Cluster, School of Science and Engineering, University of the Sunshine Coast, Queensland, Australia.
Chemphyschem. 2017 Jul 5;18(13):1735-1741. doi: 10.1002/cphc.201700072. Epub 2017 May 3.
Immediate activation of biosensors is not always desirable, particularly if activation is due to non-specific interactions. Here we demonstrate the use of deoxyribozyme-based logic gate networks arranged into visual displays to precisely control activation of biosensors, and demonstrate a prototype molecular automaton able to discriminate between seven different genotypes of Lyssaviruses, including Rabies virus. The device uses novel mixed-base logic gates to enable detection of the large diversity of Lyssavirus sequence populations, while an ANDNOT logic gate prevents non-specific activation across genotypes. The resultant device provides a user-friendly digital-like, but molecule-powered, dot-matrix text output for unequivocal results read-out that is highly relevant for point of care applications.
生物传感器的即时激活并非总是理想的,特别是当激活是由于非特异性相互作用时。在这里,我们展示了基于脱氧核酶的逻辑门网络排列成视觉显示器,以精确控制生物传感器的激活,并展示了一种能够区分包括狂犬病病毒在内的七种不同基因型狂犬病病毒的原型分子自动机。该设备使用新型混合碱基逻辑门来检测狂犬病病毒序列群体的巨大多样性,而与非逻辑门可防止跨基因型的非特异性激活。最终的设备提供了一种用户友好的类似数字但由分子驱动的点阵文本输出,用于明确的结果读出,这与即时护理应用高度相关。