Yamazaki Takehiro, Kishimoto Toshifumi, Leszczyński Paweł, Sadakane Koichiro, Kenmotsu Takahiro, Watanabe Hirofumi, Kazama Tomohiko, Matsumoto Taro, Yoshikawa Kenichi, Taniguchi Hiroaki
Faculty of Life and Medical Sciences, Doshisha University, Kyoto 610-0394, Japan.
Institute of Genetics and Animal Breeding, Polish Academy of Sciences, Jastrzebiec, 05-552 Magdalenka, Poland.
Materials (Basel). 2019 May 30;12(11):1759. doi: 10.3390/ma12111759.
To better understand the regulation and function of cellular interactions, three-dimensional (3D) assemblies of single cells and subsequent functional analysis are gaining popularity in many research fields. While we have developed strategies to build stable cellular structures using optical tweezers in a minimally invasive state, methods for manipulating a wide range of cell types have yet to be established. To mimic organ-like structures, the construction of 3D cellular assemblies with variety of cell types is essential. Our recent studies have shown that the presence of nonspecific soluble polymers in aqueous solution is the key to creating stable 3D cellular assemblies efficiently. The present study further expands on the construction of 3D single cell assemblies using two different cell types. We have successfully generated 3D cellular assemblies, using GFP-labeled adipose tissue-derived stem cells and endothelial cells by using optical tweezers. Our findings will support the development of future applications to further characterize cellular interactions in tissue regeneration.
为了更好地理解细胞间相互作用的调控和功能,单细胞的三维(3D)组装及其后续的功能分析在许多研究领域越来越受到关注。虽然我们已经开发出在微创状态下使用光镊构建稳定细胞结构的策略,但操纵多种细胞类型的方法尚未建立。为了模拟类器官结构,构建包含多种细胞类型的3D细胞组装体至关重要。我们最近的研究表明,水溶液中存在非特异性可溶性聚合物是高效创建稳定3D细胞组装体的关键。本研究进一步扩展了使用两种不同细胞类型构建3D单细胞组装体的方法。我们通过光镊成功地利用绿色荧光蛋白(GFP)标记的脂肪组织来源干细胞和内皮细胞生成了3D细胞组装体。我们的研究结果将支持未来应用的开发,以进一步表征组织再生中的细胞间相互作用。