Siwczak Fatina, Hiller Charlotte, Pfannkuche Helga, Schneider Marlon R
Institute of Veterinary Physiology, University of Leipzig, An den Tierkliniken 7, 04103, Leipzig, Germany.
J Biol Eng. 2023 Jun 1;17(1):36. doi: 10.1186/s13036-023-00357-5.
The basic idea behind the use of 3-dimensional (3D) tools in biomedical research is the assumption that the structures under study will perform at the best in vitro if cultivated in an environment that is as similar as possible to their natural in vivo embedding. Tissue slicing fulfills this premise optimally: it is an accessible, unexpensive, imaging-friendly, and technically rather simple procedure which largely preserves the extracellular matrix and includes all or at least most supportive cell types in the correct tissue architecture with little cellular damage. Vibrating microtomes (vibratomes) can further improve the quality of the generated slices because of the lateral, saw-like movement of the blade, which significantly reduces tissue pulling or tearing compared to a straight cut. In spite of its obvious advantages, vibrating microtome slices are rather underrepresented in the current discussion on 3D tools, which is dominated by methods as organoids, organ-on-chip and bioprinting. Here, we review the development of vibrating microtome tissue slices, the major technical features underlying its application, as well as its current use and potential advances, such as a combination with novel microfluidic culture chambers. Once fully integrated into the 3D toolbox, tissue slices may significantly contribute to decrease the use of laboratory animals and is likely to have a strong impact on basic and translational research as well as drug screening.
在生物医学研究中使用三维(3D)工具背后的基本理念是,假设如果在尽可能类似于其天然体内嵌入环境的条件下培养,所研究的结构在体外将表现得最佳。组织切片能最佳地满足这一前提:它是一种易于操作、成本低廉、利于成像且技术上相当简单的程序,能在很大程度上保留细胞外基质,并在正确的组织结构中包含所有或至少大多数支持性细胞类型,同时对细胞的损伤很小。振动切片机由于刀片的横向锯状运动,可以进一步提高所生成切片的质量,与直线切割相比,这显著减少了组织的牵拉或撕裂。尽管振动切片机切片具有明显优势,但在当前关于3D工具的讨论中却较少被提及,目前该讨论主要由类器官、芯片上器官和生物打印等方法主导。在此,我们回顾振动切片机组织切片的发展、其应用背后的主要技术特征,以及其当前的用途和潜在进展,例如与新型微流控培养室的结合。一旦完全整合到3D工具库中,组织切片可能会显著有助于减少实验动物的使用,并可能对基础研究、转化研究以及药物筛选产生重大影响。