Bighi Beatrice, Ragazzini Gregorio, Gallerani Alessia, Mescola Andrea, Scagliarini Chiara, Zannini Chiara, Marcuzzi Martina, Olivi Elena, Cavallini Claudia, Tassinari Riccardo, Bianchi Michele, Corsi Lorenzo, Ventura Carlo, Alessandrini Andrea
Department of Physics, Informatics and Mathematics, University of Modena and Reggio Emilia, via Campi 213/A, 41125 Modena, Italy.
CNR-Nanoscience Institute-S3, via Campi 213/A, 41125 Modena, Italy.
Prog Biomed Eng (Bristol). 2024 Dec 6;7(1). doi: 10.1088/2516-1091/ad9699.
Mechanical stimuli have multiple effects on cell behavior, affecting a number of cellular processes including orientation, proliferation or apoptosis, migration and invasion, the production of extracellular matrix proteins, the activation and translocation of transcription factors, the expression of different genes such as those involved in inflammation and the reprogramming of cell fate. The recent development of cell stretching devices has paved the way for the study of cell reactions to stretching stimuli, reproducing physiological situations that are experienced by cells in many tissues and related to functions such as breathing, heart beating and digestion. In this work, we review the highly-relevant contributions cell stretching devices can provide in the field of mechanobiology. We then provide the details for the in-house construction and operation of these devices, starting from the systems that we already developed and tested. We also review some examples where cell stretchers can supply meaningful insights into mechanobiology topics and we introduce new results from our exploitation of these devices.
机械刺激对细胞行为具有多种影响,会影响许多细胞过程,包括细胞定向、增殖或凋亡、迁移和侵袭、细胞外基质蛋白的产生、转录因子的激活和转位、不同基因的表达(如参与炎症的基因)以及细胞命运重编程。细胞拉伸装置的最新发展为研究细胞对拉伸刺激的反应铺平了道路,再现了许多组织中的细胞所经历的生理情况,这些情况与诸如呼吸、心跳和消化等功能相关。在这项工作中,我们回顾了细胞拉伸装置在力学生物学领域可以做出的高度相关贡献。然后,我们从我们已经开发和测试的系统开始,详细介绍这些装置的内部构建和操作。我们还回顾了一些例子,其中细胞拉伸器可以为力学生物学主题提供有意义的见解,并介绍我们利用这些装置获得的新结果。