Zhao Xi, Huang Xiaomeng, Wang Xinmei, Wu Yun, Eisfeld Ann-Kathrin, Schwind Sebastian, Gallego-Perez Daniel, Boukany Pouyan E, Marcucci Guido I, Lee Ly James
Center for Affordable Nanoengineering of Polymeric Biomedical Devices The Ohio State University Columbus OH 43212 USA; William G. Lowrie, Department of Chemical and Biomolecular Engineering The Ohio State University Columbus OH 43210 USA.
Center for Affordable Nanoengineering of Polymeric Biomedical Devices The Ohio State University Columbus OH 43212 USA.
Adv Sci (Weinh). 2015 Jul 16;2(12):1500111. doi: 10.1002/advs.201500111. eCollection 2015 Dec.
is demonstrated with analysis of RNAs in single cells. This minimally invasive process is based on individual cells and allows both multi-target analysis and stimulus-response analysis by sequential deliveries. The unique platform possesses a great potential to the comprehensive and lysis-free nucleic acid analysis on rare or hard-to-transfect cells.
通过对单细胞中的RNA进行分析得以证明。这种微创过程基于单个细胞,通过顺序递送实现多靶点分析和刺激-反应分析。该独特平台在对稀有或难以转染的细胞进行全面且无裂解的核酸分析方面具有巨大潜力。