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微筏阵列上干细胞集落的自动传感与分割

Automated sensing and splitting of stem cell colonies on microraft arrays.

作者信息

DiSalvo Matthew, Smiddy Nicole M, Allbritton Nancy L

机构信息

Joint Department of Biomedical Engineering, University of North Carolina at Chapel Hill and North Carolina State University, Chapel Hill/Raleigh, North Carolina 27599/27607, USA.

Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599, USA.

出版信息

APL Bioeng. 2019 Aug 29;3(3):036106. doi: 10.1063/1.5113719. eCollection 2019 Sep.

Abstract

Human induced pluripotent stem cells (hiPSCs) are widely used for disease modeling, tissue engineering, and clinical applications. Although the development of new disease-relevant or customized hiPSC lines is of high importance, current automated hiPSC isolation technologies rely largely on the fluorescent labeling of cells, thus limiting the cell line development from many applications. The objective of this research was to develop a platform for high-throughput hiPSC cytometry and splitting that utilized a label-free cell sensing approach. An image analysis pipeline utilizing background subtraction and standard deviation projections was implemented to detect hiPSC colonies from bright-field microscopy data. The pipeline was incorporated into an automated microscopy system coupling quad microraft cell-isolation arrays, computer-based vision, and algorithms for smart decision making and cell sorting. The pipeline exhibited a hiPSC detection specificity of 98% and a sensitivity of 88%, allowing for the successful tracking of growth for hundreds of microcolonies over 7 days. The automated platform split 170 mother colonies from a microarray within 80 min, and the harvested daughter biopsies were expanded into viable hiPSC colonies suitable for downstream assays, such as polymerase chain reaction (PCR) or continued culture. Transmitted light microscopy offers an alternative, label-free modality for isolating hiPSCs, yet its low contrast and specificity for adherent cells remain a challenge for automation. This novel approach to label-free sensing and microcolony subsampling with the preservation of the mother colony holds the potential for hiPSC colony screening based on a wide range of properties including those measurable only by a cell destructive assay.

摘要

人诱导多能干细胞(hiPSC)被广泛应用于疾病建模、组织工程和临床应用。尽管开发新的疾病相关或定制的hiPSC系非常重要,但目前的自动化hiPSC分离技术在很大程度上依赖于细胞的荧光标记,从而限制了许多应用中的细胞系开发。本研究的目的是开发一个用于高通量hiPSC细胞计数和传代的平台,该平台采用无标记细胞传感方法。利用背景减法和标准差投影的图像分析流程被用于从明场显微镜数据中检测hiPSC集落。该流程被整合到一个自动化显微镜系统中,该系统结合了四微筏细胞分离阵列、基于计算机的视觉以及用于智能决策和细胞分选的算法。该流程显示出hiPSC检测特异性为98%,灵敏度为88%,能够在7天内成功追踪数百个微集落的生长情况。该自动化平台在80分钟内从微阵列中分离出170个母集落,收获的子活检样本被扩增为适合下游检测(如聚合酶链反应(PCR)或继续培养)的有活力的hiPSC集落。透射光显微镜为分离hiPSC提供了一种无标记的替代方式,但其对贴壁细胞的低对比度和特异性仍然是自动化的一个挑战。这种用于无标记传感和微集落二次取样同时保留母集落的新方法,具有基于广泛特性(包括那些只能通过细胞破坏性检测测量的特性)进行hiPSC集落筛选的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cef/6715441/1b326a3d3465/ABPID9-000003-036106_1-g001.jpg

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