Department of Pathology, Brown Medical School-Miriam Hospital, Providence, Rhode Island 02906, USA.
Tissue Eng Part B Rev. 2010 Feb;16(1):55-64. doi: 10.1089/ten.TEB.2009.0445.
Tissue engineering for in vitro drug-screening applications based on tissue function is an active area of translational research. Compared to targeted high-throughput drug-screening methods that rapidly analyze hundreds of thousands of compounds affecting a single biochemical reaction or gene expression, high-content screening (HCS) with engineered tissues is more complex and based on the cumulative positive and negative effects of a compound on the multiple pathways altering tissue function. It may therefore serve as better predictor of in vivo activity and serve as a bridge between high-throughput drug screening and in vivo animal studies. In the case of the musculoskeletal system, tissue function includes determining improvements in the mechanical properties of bone, tendon, cartilage, and, for skeletal muscle, contractile properties such as rate of contraction/relaxation, force generation, fatigability, and recovery from fatigue. HCS of compound banks with engineered tissues requires miniature musculoskeletal organs as well as automated functional testing. The resulting technologies should be rapid, cost effective, and reduce the number of small animals required for follow-on in vivo studies. Identification of compounds that improve the repair/regeneration of damaged tissues in vivo would have extensive clinical applications for treating musculoskeletal disorders.
基于组织功能的体外药物筛选应用的组织工程是转化研究的一个活跃领域。与靶向高通量药物筛选方法相比,该方法可以快速分析影响单个生化反应或基因表达的数十万种化合物,而工程组织的高内涵筛选(HCS)更为复杂,并且基于化合物对改变组织功能的多个途径的累积正、负效应。因此,它可能是体内活性的更好预测指标,并可作为高通量药物筛选和体内动物研究之间的桥梁。就肌肉骨骼系统而言,组织功能包括确定骨、肌腱、软骨的机械性能的改善,对于骨骼肌,包括收缩/松弛率、产生力、疲劳性和疲劳恢复等收缩性能的改善。用工程组织进行化合物库的 HCS 需要微型肌肉骨骼器官以及自动化功能测试。所产生的技术应该快速、具有成本效益,并减少后续体内研究所需的小型动物数量。鉴定可改善体内受损组织修复/再生的化合物将对治疗肌肉骨骼疾病有广泛的临床应用。