Gomes Aurélie, Defaux Matthieu, Lemee Riwanon Michel, Lobjois Valérie, Ducommun Bernard
Institut des Technologies Avancées en Sciences du Vivant, Université de Toulouse and Centre National de la Recherche Scientifique, 31106 Toulouse, France.
Atmosphère Contrôle SAS, 14760 Bretteville sur Odon, France.
Oncol Lett. 2018 Feb;15(2):2006-2009. doi: 10.3892/ol.2017.7465. Epub 2017 Nov 21.
Multicellular tumor spheroids models are of increasing interest in preclinical studies and pharmacological evaluation. However, their storage and transport is often a limitation because it requires adapted and expensive procedures. Here, we propose a very simple method to store 3D spheroids, using a procedure based on oxygen absorber-induced anoxia. We report that oxygen absorbers allow generating an anoxic environment for spheroid storage in culture plates. Oxygen absorber-induced anoxia fully and reversibly arrests spheroid growth for 4 days at 37°C and up to 18 days at 4°C. We then show that the response to etoposide is comparable in spheroids preserved in conditions of absorber-induced anoxia at 4°C and spheroids kept in normoxia at 37°C. These results represent a major improvement that should simplify the storage, transport and use of 3D spheroids.
多细胞肿瘤球体模型在临床前研究和药理学评估中越来越受到关注。然而,它们的储存和运输往往是一个限制因素,因为这需要采用适应性强且昂贵的程序。在此,我们提出一种非常简单的方法来储存三维球体,该方法基于使用吸氧剂诱导缺氧的程序。我们报告称,吸氧剂能够为培养板中球体的储存创造缺氧环境。吸氧剂诱导的缺氧可使球体生长在37°C下完全且可逆地停止4天,在4°C下可长达18天。然后我们表明,在4°C下处于吸氧剂诱导缺氧条件下保存的球体与在37°C常氧条件下保存的球体对依托泊苷的反应相当。这些结果代表了一项重大改进,应能简化三维球体的储存、运输和使用。