Suppr超能文献

PhysiCell:一个基于物理的开源细胞模拟器,用于 3D 多细胞系统。

PhysiCell: An open source physics-based cell simulator for 3-D multicellular systems.

机构信息

Lawrence J. Ellison Institute for Transformative Medicine, University of Southern California, Los Angeles, California, United States of America.

Intelligent Systems Engineering, Indiana University, Bloomington, Indiana, United States of America.

出版信息

PLoS Comput Biol. 2018 Feb 23;14(2):e1005991. doi: 10.1371/journal.pcbi.1005991. eCollection 2018 Feb.

Abstract

Many multicellular systems problems can only be understood by studying how cells move, grow, divide, interact, and die. Tissue-scale dynamics emerge from systems of many interacting cells as they respond to and influence their microenvironment. The ideal "virtual laboratory" for such multicellular systems simulates both the biochemical microenvironment (the "stage") and many mechanically and biochemically interacting cells (the "players" upon the stage). PhysiCell-physics-based multicellular simulator-is an open source agent-based simulator that provides both the stage and the players for studying many interacting cells in dynamic tissue microenvironments. It builds upon a multi-substrate biotransport solver to link cell phenotype to multiple diffusing substrates and signaling factors. It includes biologically-driven sub-models for cell cycling, apoptosis, necrosis, solid and fluid volume changes, mechanics, and motility "out of the box." The C++ code has minimal dependencies, making it simple to maintain and deploy across platforms. PhysiCell has been parallelized with OpenMP, and its performance scales linearly with the number of cells. Simulations up to 105-106 cells are feasible on quad-core desktop workstations; larger simulations are attainable on single HPC compute nodes. We demonstrate PhysiCell by simulating the impact of necrotic core biomechanics, 3-D geometry, and stochasticity on the dynamics of hanging drop tumor spheroids and ductal carcinoma in situ (DCIS) of the breast. We demonstrate stochastic motility, chemical and contact-based interaction of multiple cell types, and the extensibility of PhysiCell with examples in synthetic multicellular systems (a "cellular cargo delivery" system, with application to anti-cancer treatments), cancer heterogeneity, and cancer immunology. PhysiCell is a powerful multicellular systems simulator that will be continually improved with new capabilities and performance improvements. It also represents a significant independent code base for replicating results from other simulation platforms. The PhysiCell source code, examples, documentation, and support are available under the BSD license at http://PhysiCell.MathCancer.org and http://PhysiCell.sf.net.

摘要

许多多细胞系统问题只能通过研究细胞如何运动、生长、分裂、相互作用和死亡来理解。组织尺度的动态是由许多相互作用的细胞系统产生的,因为它们对微环境做出反应并影响微环境。这种多细胞系统的理想“虚拟实验室”模拟了生化微环境(“舞台”)和许多机械和生化相互作用的细胞(“舞台”上的“演员”)。PhysiCell-基于物理的多细胞模拟器-是一个开源的基于代理的模拟器,它为研究动态组织微环境中的许多相互作用的细胞提供了舞台和演员。它建立在多底物生物转运求解器的基础上,将细胞表型与多个扩散底物和信号因子联系起来。它包括生物学驱动的子模型,用于细胞循环、细胞凋亡、细胞坏死、固液体积变化、力学和运动“开箱即用”。C++代码依赖性最小,因此在跨平台维护和部署都很简单。PhysiCell 已经使用 OpenMP 进行了并行化,其性能与细胞数量呈线性比例。在四核桌面工作站上可以实现高达 105-106 个细胞的模拟;在单个 HPC 计算节点上可以实现更大的模拟。我们通过模拟坏死核心生物力学、3-D 几何形状和随机性对悬滴肿瘤球体和乳腺原位导管癌(DCIS)的动力学的影响来展示 PhysiCell。我们展示了 PhysiCell 的随机运动性、多种细胞类型的化学和基于接触的相互作用,以及通过在合成多细胞系统(“细胞货物输送”系统,应用于抗癌治疗)、癌症异质性和癌症免疫学中的示例来扩展 PhysiCell 的能力。PhysiCell 是一个功能强大的多细胞系统模拟器,将不断改进新功能和性能改进。它还代表了一个从其他模拟平台复制结果的重要独立代码库。PhysiCell 的源代码、示例、文档和支持可在 BSD 许可证下从 http://PhysiCell.MathCancer.orghttp://PhysiCell.sf.net 获得。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验