Jee JooHyun, Jeon HeeKyoung, Hwang DongYoun, Sommer Peter, Park Zewon, Cechetto Jonathan, Dorval Thierry
CHA University, College of Life Science, 502 Ace bldg, Yatap-Dong, Bundang-gu, Seongnam-si, Gyeonggi-do, South Korea.
Comb Chem High Throughput Screen. 2012 Sep;15(8):656-65. doi: 10.2174/138620712802650540.
Embryonic stem cells, due to their self-renewal and pluripotency properties, can be used to repair damaged tissues and as an unlimited source of differentiated cells. Although stem cells represent an important opportunity for cell based therapy and small molecules screening (in the context of drug or target discovery) many drawbacks are still preventing their widespread use. One of the most significant limitations is related to the complexity, as well as the reliability, of current protocols driving stem cells into any homogeneously differentiated cellular population. In this respect there is a strong demand for molecular agents promoting differentiation and thereby enabling robust, efficient and safe production of differentiated cells. In order to identify novel molecules that enhance early stages of differentiation, we developed an image based high content screening (HCS) approach using human embryonic stem cells (hESC). In our approach, we took advantage of custom image mining software specifically adapted for the selection of stem cell differentiation agents and the rejection of false positive hits. As a proof of concept -3500 small molecules originating from commercial libraries were screened and a number of molecules of interests were identified. These molecules show stem cell differentiation properties comparable to the phenotypic signature obtained with the reference compound retinoic acid.
胚胎干细胞因其自我更新和多能性特性,可用于修复受损组织,并作为分化细胞的无限来源。尽管干细胞为基于细胞的治疗和小分子筛选(在药物或靶点发现的背景下)提供了重要契机,但许多缺点仍阻碍着它们的广泛应用。最显著的限制之一与当前将干细胞驱动到任何均匀分化细胞群体的方案的复杂性和可靠性有关。在这方面,对促进分化从而实现分化细胞的强大、高效和安全生产的分子试剂有强烈需求。为了鉴定增强分化早期阶段的新分子,我们开发了一种基于图像的高内涵筛选(HCS)方法,使用人类胚胎干细胞(hESC)。在我们的方法中,我们利用了专门为选择干细胞分化剂和排除假阳性命中而定制的图像挖掘软件。作为概念验证,我们筛选了来自商业文库的3500种小分子,并鉴定出了一些感兴趣的分子。这些分子显示出与参考化合物视黄酸获得的表型特征相当的干细胞分化特性。