Uzarski Joseph S, DiVito Michael D, Wertheim Jason A, Miller William M
Comprehensive Transplant Center, Northwestern University Feinberg School of Medicine, Chicago, IL 60611, USA; Department of Surgery, Northwestern University Feinberg School of Medicine, Chicago, IL 60611, USA.
Comprehensive Transplant Center, Northwestern University Feinberg School of Medicine, Chicago, IL 60611, USA; Department of Surgery, Northwestern University Feinberg School of Medicine, Chicago, IL 60611, USA; Department of Surgery, Jesse Brown VA Medical Center, Chicago, IL 60612, USA; Simpson Querrey Institute for BioNanotechnology, Northwestern University, Chicago, IL 60611, USA; Department of Biomedical Engineering, Northwestern University, Evanston, IL 60208, USA; Chemistry of Life Processes Institute, Northwestern University, Evanston, IL 60208, USA.
Biomaterials. 2017 Jun;129:163-175. doi: 10.1016/j.biomaterials.2017.02.015. Epub 2017 Feb 16.
Precise measurement of cellularity within bioartificial tissues and extracellular matrix (ECM) scaffolds is necessary to augment rigorous characterization of cellular behavior, as accurate benchmarking of tissue function to cell number allows for comparison of data across experiments and between laboratories. Resazurin, a soluble dye that is reduced to highly fluorescent resorufin in proportion to the metabolic activity of a cell population, is a valuable, noninvasive tool to measure cell number. We investigated experimental conditions in which resazurin reduction is a reliable indicator of cellularity within three-dimensional (3D) ECM scaffolds. Using three renal cell populations, we demonstrate that correlation of viable cell numbers with the rate of resorufin generation may deviate from linearity at higher cell densities, lower resazurin working volumes, or longer incubation times that all contribute to depleting the pool of resazurin. In conclusion, while the resazurin reduction assay provides a powerful, noninvasive readout of metrics enumerating cellularity and growth within ECM scaffolds, assay conditions may strongly influence its applicability for accurate quantification of cell number. The approach and methodological recommendations presented herein may be used as a guide for application-specific optimization of this assay to obtain rigorous and accurate measurement of cellular content in bioengineered tissues.
精确测量生物人工组织和细胞外基质(ECM)支架内的细胞密度,对于加强对细胞行为的严格表征是必要的,因为将组织功能准确对标细胞数量有助于比较不同实验以及不同实验室之间的数据。刃天青是一种可溶性染料,会根据细胞群体的代谢活性成比例地还原为高荧光的试卤灵,它是一种用于测量细胞数量的有价值的非侵入性工具。我们研究了刃天青还原在何种实验条件下可作为三维(3D)ECM支架内细胞密度的可靠指标。使用三种肾细胞群体,我们证明,在较高细胞密度、较低刃天青工作体积或较长孵育时间下,活细胞数量与试卤灵生成速率之间的相关性可能会偏离线性关系,而所有这些因素都会导致刃天青储备耗尽。总之,虽然刃天青还原测定法能有力地非侵入性读出ECM支架内细胞密度和生长的指标,但测定条件可能会强烈影响其对细胞数量进行准确定量的适用性。本文介绍的方法和方法学建议可作为针对特定应用优化该测定法的指南,并以此对生物工程组织中的细胞含量进行严格而准确的测量。