Yamazaki Takehiro, Taniguchi Hiroaki, Tsuji Shoto, Sato Shiho, Kenmotsu Takahiro, Yoshikawa Kenichi, Sadakane Koichiro
Faculty of Life and Medical Sciences, Doshisha University.
The Institute of Genetics and Animal Breeding, Polish Academy of Sciences.
J Vis Exp. 2018 Oct 26(140):57815. doi: 10.3791/57815.
Regenerative medicine and tissue engineering offer several advantages for the treatment of intractable diseases, and several studies have demonstrated the importance of 3-dimensional (3D) cellular assemblies in these fields. Artificial scaffolds have often been used to construct 3D cellular assemblies. However, the scaffolds used to construct cellular assemblies are sometimes toxic and may change the properties of the cells. Thus, it would be beneficial to establish a non-toxic method for facilitating cell-cell contact. In this paper, we introduce a novel method for constructing stable cellular assemblies by using optical tweezers with dextran. One of the advantages of this method is that it establishes stable cell-to-cell contact within a few minutes. This new method allows the construction of 3D cellular assemblies in a natural hydrophilic polymer and is expected to be useful for constructing next-generation 3D single-cell assemblies in the fields of regenerative medicine and tissue engineering.
再生医学和组织工程为治疗难治性疾病提供了诸多优势,多项研究已证明三维(3D)细胞组装体在这些领域的重要性。人工支架常被用于构建3D细胞组装体。然而,用于构建细胞组装体的支架有时具有毒性,可能会改变细胞的特性。因此,建立一种促进细胞间接触的无毒方法将是有益的。在本文中,我们介绍了一种利用带有葡聚糖的光镊构建稳定细胞组装体的新方法。该方法的优点之一是能在几分钟内建立稳定的细胞间接触。这种新方法允许在天然亲水性聚合物中构建3D细胞组装体,有望在再生医学和组织工程领域用于构建下一代3D单细胞组装体。