Department of Bioengineering; National University of Singapore; Singapore; Duke-NUS Graduate Medical School; Singapore.
Organogenesis. 2013 Jul-Sep;9(3):128-42. doi: 10.4161/org.25425. Epub 2013 Jun 20.
Stem cells in vivo are housed within a functional microenvironment termed the "stem cell niche." As the niche components can modulate stem cell behaviors like proliferation, migration and differentiation, evaluating these components would be important to determine the most optimal platform for their maintenance or differentiation. In this review, we have discussed methods and technologies that have aided in the development of high throughput screening assays for stem cell research, including enabling technologies such as the well-established multiwell/microwell plates and robotic spotting, and emerging technologies like microfluidics, micro-contact printing and lithography. We also discuss the studies that utilized high throughput screening platform to investigate stem cell response to extracellular matrix, topography, biomaterials and stiffness gradients in the stem cell niche. The combination of the aforementioned techniques could lay the foundation for new perspectives in further development of high throughput technology and stem cell research.
体内干细胞位于一个功能微环境中,称为“干细胞龛”。由于龛位成分可以调节干细胞的行为,如增殖、迁移和分化,因此评估这些成分对于确定其维持或分化的最佳平台非常重要。在这篇综述中,我们讨论了有助于开发用于干细胞研究的高通量筛选测定法的方法和技术,包括成熟的多孔/微孔板和机器人点样等使能技术,以及微流控、微接触印刷和光刻等新兴技术。我们还讨论了利用高通量筛选平台研究干细胞对细胞外基质、拓扑结构、生物材料和干细胞龛中硬度梯度的反应的研究。上述技术的结合为高通量技术和干细胞研究的进一步发展开辟了新的视角。