Department of Pharmaceutical Technology, Medical University of Bialystok, Białystok, Poland; Department of Clinical Pharmacy, Medical University of Bialystok, Białystok, Poland.
Department of Pharmaceutical Technology, Medical University of Bialystok, Białystok, Poland.
Pharmacol Rep. 2017 Oct;69(5):861-870. doi: 10.1016/j.pharep.2017.03.014. Epub 2017 Mar 23.
Cell culture systems are essential tools used in a wide range of biomedical and clinical studies. Two dimensional cell culture models (2D) provide basic information on cytotoxicity, penetration and accumulation of drugs in cells and they are of outmost importance when selecting new compounds of the desired biopharmaceutical properties as candidates for novel drugs. The improvement over 2D growing cells are three dimensional (3D) tissue models that mimic in vivo conditions and the functions of living tissue more accurately. These models reduce the cost of drug development, enable more efficient drug screening, minimise failure rate in medicine discovery and eliminate animal use during experiments. The article provides an overview of 2D cell cultures and 3D tissue models - their properties, basic procedures, conditions of culturing and applications.
细胞培养系统是广泛应用于生物医学和临床研究的重要工具。二维细胞培养模型(2D)提供了有关细胞毒性、药物在细胞中的渗透和积累的基本信息,在选择具有所需生物制药特性的新化合物作为候选新药时,它们至关重要。优于 2D 生长细胞的是更能准确模拟体内条件和活组织功能的三维(3D)组织模型。这些模型降低了药物开发的成本,使药物筛选更加高效,减少了药物发现中的失败率,并在实验过程中消除了动物的使用。本文概述了 2D 细胞培养和 3D 组织模型——它们的特性、基本程序、培养条件和应用。