Toscano Elvira, Cimmino Elena, Boccia Angelo, Sepe Leandra, Paolella Giovanni
CEINGE Biotecnologie Avanzate Franco Salvatore, Naples, Italy.
Department of Molecular Medicine and Medical Biotechnology, Università Degli Studi di Napoli "Federico II", Naples, Italy.
NPJ Syst Biol Appl. 2025 May 17;11(1):48. doi: 10.1038/s41540-025-00518-w.
In silico simulations are used to understand cell behaviour by means of different approaches and tools, which range from reproducing average population trends to building lattice-based models to, more recently, creating populations of individual cell agents whose mass, volume and morphology behave according to more or less precise rules and models. In this work, a new agent-based simulator, SimulCell, was conceived, developed and used to predict the behaviour of eukaryotic cell cultures while growing attached to a flat surface. The system, starting from time-lapse microscopy experiments, uses growth, proliferation and migration models to create synthetic populations closely resembling original cultures. Support for cell-cell and cell-environment interaction makes cell agents able to react to changes in medium composition and other events, such as physical damage or chemical modifications occurring in the culture plate. The simulator is accessible through a web application and generates data that can be shown as tables and graphs or exported for further analyses.
计算机模拟通过不同的方法和工具来理解细胞行为,这些方法和工具涵盖从再现平均群体趋势到构建基于晶格的模型,再到最近创建个体细胞智能体群体,其质量、体积和形态根据或多或少精确的规则和模型表现。在这项工作中,构思、开发了一种新的基于智能体的模拟器SimulCell,并用于预测真核细胞培养物在附着于平面生长时的行为。该系统从延时显微镜实验开始,使用生长、增殖和迁移模型来创建与原始培养物非常相似的合成群体。对细胞间和细胞与环境相互作用的支持使细胞智能体能够对培养基成分的变化以及其他事件做出反应,例如培养板中发生的物理损伤或化学修饰。该模拟器可通过网络应用程序访问,并生成可显示为表格和图表的数据,或导出以供进一步分析。