Chen Zhengkun, Luo Xiaohe, Zhao Xin, Yang Mo, Wen Chunyi
Department of Biomedical Engineering, Faculty of Engineering, The Hong Kong Polytechnic University, Hong Kong, China.
J Orthop Translat. 2019 Feb 26;17:55-63. doi: 10.1016/j.jot.2019.01.005. eCollection 2019 Apr.
Isolating active mesenchymal stem cells from a heterogeneous population is an essential step that determines the efficacy of stem cell therapy such as for osteoarthritis. Nowadays, the gold standard of cell sorting, fluorescence-activated cell sorting, relies on labelling surface markers via antibody-antigen reaction. However, sorting stem cells with high stemness usually requires the labelling of multiple biomarkers. Moreover, the labelling process is costly, and the high operating pressure is harmful to cell functionality and viability. Although label-free cell sorting, based on physical characteristics, has gained increasing interest in the past decades, it has not shown the ability to eliminate stem cells with low stemness. Cell motility, as a novel sorting marker, is hence proposed for label-free sorting active stem cells. Accumulating evidence has demonstrated the feasibility in manipulating directional cell migration through patterning the biophysical, biochemical or both gradients of the extracellular matrix. However, applying those findings to label-free cell sorting has not been well discussed and studied. This review thus first provides a brief overview about the effect of biophysical and biochemical gradients of the extracellular matrix on cell migration. State-of-the-art fabrication techniques for generating such gradients of hydrogels are then introduced. Among current research, the authors suggest that hydrogels with dual-gradients of biochemistry and biophysics are potential tools for accurate label-free cell sorting with satisfactory selectivity and efficiency.
The reviewed label-free cell sorting approaches enable us to isolate active cell for cytotherapy. The proposed system can be further modified for single-cell analysis and drug screening.
从异质群体中分离活性间充质干细胞是决定干细胞治疗(如骨关节炎治疗)疗效的关键步骤。如今,细胞分选的金标准——荧光激活细胞分选,依赖于通过抗体 - 抗原反应标记表面标志物。然而,分选具有高干性的干细胞通常需要标记多个生物标志物。此外,标记过程成本高昂,且高操作压力对细胞功能和活力有害。尽管基于物理特性的无标记细胞分选在过去几十年中越来越受到关注,但它尚未显示出消除低干性干细胞的能力。因此,细胞运动性作为一种新的分选标志物,被提出用于无标记分选活性干细胞。越来越多的证据表明,通过构建细胞外基质的生物物理、生化或两者梯度来操纵细胞定向迁移是可行的。然而,将这些发现应用于无标记细胞分选尚未得到充分讨论和研究。因此,本综述首先简要概述细胞外基质的生物物理和生化梯度对细胞迁移的影响。然后介绍了用于生成此类水凝胶梯度的最新制造技术。在当前研究中,作者认为具有生化和生物物理双梯度的水凝胶是用于精确无标记细胞分选的潜在工具,具有令人满意的选择性和效率。
所综述的无标记细胞分选方法使我们能够分离活性细胞用于细胞治疗。所提出的系统可进一步修改用于单细胞分析和药物筛选。