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监测工程组织中的局部细胞活力:一种快速、定量且无损的方法。

Monitoring local cell viability in engineered tissues: a fast, quantitative, and nondestructive approach.

作者信息

Breuls Roel G M, Mol Anita, Petterson Rob, Oomens Cees W J, Baaijens Frank P T, Bouten Carlijn V C

机构信息

Department of Biomedical Engineering, Eindhoven University of Technology, Eindhoven, The Netherlands.

出版信息

Tissue Eng. 2003 Apr;9(2):269-81. doi: 10.1089/107632703764664738.

Abstract

Assessment of cell viability is a key issue in monitoring in vitro engineered tissue constructs. In this study we describe a fully automated, quantitative, and nondestructive approach, which is particularly suitable for tissue engineering. The approach offers several advantages above existing methods. Living and dead cell numbers can be separately determined for both isolated cells and cells that form networks during tissue formation. Moreover, viability can be locally monitored in time throughout the three-dimensional tissue. The viability assay is based on a dual fluorescent staining technique using CellTracker Green (CTG) for detection of living cells and propidium iodide (PI) for dead cells. CTG and PI images are created with a confocal laser scanning microscope. To determine the number of living cells, CTG fluorescence intensity is determined from the CTG image. Thereby, novel image-processing techniques have been developed, normalizing for various undesired influences that alter measurements of absolute CTG fluorescence intensities. Dead cell numbers are determined from the PI image, using an improved computerized counting method. The approach was first evaluated on C2C12 monolayers, of which images were taken directly after probe addition and 24 h later. Results show that at both times, computed living and dead cell numbers highly correlate with manually counted cell numbers (r > 0.996). Next, the approach was applied for monitoring viability in three-dimensional engineered skeletal muscle tissue constructs, which were subjected to unfavorable environmental conditions. This example illustrated that local viability can be quantitatively, nondestructively, and locally monitored in three-dimensional tissue constructs, making it a promising tool in the field of tissue engineering.

摘要

评估细胞活力是监测体外工程组织构建体的关键问题。在本研究中,我们描述了一种全自动、定量且非破坏性的方法,该方法特别适用于组织工程。与现有方法相比,该方法具有多个优点。对于分离的细胞以及在组织形成过程中形成网络的细胞,均可分别测定活细胞和死细胞的数量。此外,可在整个三维组织中实时局部监测细胞活力。活力测定基于双重荧光染色技术,使用CellTracker Green(CTG)检测活细胞,碘化丙啶(PI)检测死细胞。通过共聚焦激光扫描显微镜创建CTG和PI图像。为了确定活细胞数量,从CTG图像中测定CTG荧光强度。因此,已开发出新颖的图像处理技术,以对改变绝对CTG荧光强度测量的各种不良影响进行归一化处理。使用改进的计算机计数方法从PI图像中确定死细胞数量。该方法首先在C2C12单层细胞上进行评估,在添加探针后立即以及24小时后拍摄图像。结果表明,在这两个时间点,计算得到的活细胞和死细胞数量与手动计数的细胞数量高度相关(r>0.996)。接下来,该方法应用于监测三维工程化骨骼肌组织构建体中的活力,这些构建体处于不利的环境条件下。这个例子表明,可以在三维组织构建体中对局部活力进行定量、非破坏性和局部监测,使其成为组织工程领域一种有前景的工具。

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