Tang Anson H L, Yeung P, Chan Godfrey C F, Chan Barbara P, Wong Kenneth K Y, Tsia Kevin K
Department of Electrical and Electronic Engineering, The University of Hong Kong, Pokfulam, Hong Kong, China.
Department of Mechanical Engineering, The University of Hong Kong, Pokfulam, Hong Kong, China.
Biomed Opt Express. 2017 Jan 6;8(2):640-652. doi: 10.1364/BOE.8.000640. eCollection 2017 Feb 1.
Cell-based assay based on time-stretch imaging is recognized to be well-suited for high-throughput phenotypic screening. However, this ultrafast imaging technique has primarily been limited to suspension-cell assay, leaving a wide range of solid-substrate assay formats uncharted. Moreover, time-stretch imaging is generally restricted to intrinsic biophysical phenotyping, but lacks the biomolecular signatures of the cells. To address these challenges, we develop a spinning time-stretch imaging assay platform based on the functionalized digital versatile disc (DVD). We demonstrate that adherent cell culture and biochemically-specific cell-capture can now be assayed with time-stretch microscopy, thanks to the high-speed DVD spinning motion that naturally enables on-the-fly cellular imaging at an ultrafast line-scan rate of >10MHz. As scanning the whole DVD at such a high speed enables ultra-large field-of-view imaging, it could be favorable for scaling both the assay throughput and content as demanded in many applications, e.g. drug discovery, and rare cancer cell screening.
基于时间拉伸成像的细胞分析方法被认为非常适合高通量表型筛选。然而,这种超快成像技术主要局限于悬浮细胞分析,大量的固体基质分析形式尚未得到探索。此外,时间拉伸成像通常仅限于内在生物物理表型分析,缺乏细胞的生物分子特征。为应对这些挑战,我们基于功能化数字多功能光盘(DVD)开发了一种旋转时间拉伸成像分析平台。我们证明,由于高速DVD旋转运动自然能够以大于10MHz的超快线扫描速率进行实时细胞成像,现在可以使用时间拉伸显微镜对贴壁细胞培养和生化特异性细胞捕获进行分析。由于以如此高的速度扫描整个DVD能够实现超大视野成像,这对于按许多应用(如药物发现和罕见癌细胞筛选)的要求扩大分析通量和内容可能是有利的。