Piccinini Filippo, Balassa Tamas, Carbonaro Antonella, Diosdi Akos, Toth Timea, Moshkov Nikita, Tasnadi Ervin A, Horvath Peter
Istituto Scientifico Romagnolo per lo Studio e la Cura dei Tumori (IRST) IRCCS, Cancer Research Hospital, Meldola, FC, Italy.
Synthetic and Systems Biology Unit, Biological Research Centre (BRC), Szeged, Hungary.
Comput Struct Biotechnol J. 2020 Jun 3;18:1287-1300. doi: 10.1016/j.csbj.2020.05.022. eCollection 2020.
Today, we are fully immersed into the era of 3D biology. It has been extensively demonstrated that 3D models: () better mimic the physiology of human tissues; () can effectively replace animal models; () often provide more reliable results than 2D ones. Accordingly, anti-cancer drug screenings and toxicology studies based on multicellular 3D biological models, the so-called "-oids" (e.g. spheroids, tumoroids, organoids), are blooming in the literature. However, the complex nature of these systems limit the manual quantitative analyses of single cells' behaviour in the culture. Accordingly, the demand for advanced software tools that are able to perform phenotypic analysis is fundamental. In this work, we describe the freely accessible tools that are currently available for biologists and researchers interested in analysing the effects of drugs/treatments on 3D multicellular -oids at a single-cell resolution level. In addition, using publicly available nuclear stained datasets we quantitatively compare the segmentation performance of 9 specific tools.
如今,我们已全面步入3D生物学时代。大量研究表明,3D模型:()能更好地模拟人体组织的生理机能;()可有效替代动物模型;()相较于二维模型,通常能提供更可靠的结果。因此,基于多细胞3D生物模型(即所谓的“-oids”,如球体、肿瘤球体、类器官)的抗癌药物筛选和毒理学研究在文献中大量涌现。然而,这些系统的复杂性限制了对培养物中单个细胞行为的手动定量分析。因此,对能够进行表型分析的先进软件工具的需求至关重要。在这项工作中,我们描述了目前可供生物学家和研究人员免费使用的工具,这些工具可用于在单细胞分辨率水平上分析药物/处理对3D多细胞-oids的影响。此外,我们使用公开可用的细胞核染色数据集,定量比较了9种特定工具的分割性能。