化学
三维细胞培养
微流控芯片
芯片上器官
模型系统
炸薯条
器官系统
生物分析
体内
三维模型
纳米技术
细胞
生化工程
计算生物学
病理
生物技术
人工智能
微流控
电信
生物
工程类
计算机科学
材料科学
医学
生物化学
疾病
色谱法
作者
Agnieszka Żuchowska,Patrycja Baranowska,Magdalena Flont,Zbigniew Brzózka,Elżbieta Jastrzębska
标识
DOI:10.1016/j.aca.2024.342413
摘要
Two-dimensional (2D) cultures do not fully reflect the human organs' physiology and the real effectiveness of the used therapy. Therefore, three-dimensional (3D) models are increasingly used in bioanalytical science. Organ-on-a-chip systems are used to obtain cellular in vitro models, better reflecting the human body's in vivo characteristics and allowing us to obtain more reliable results than standard preclinical models. Such 3D models can be used to understand the behavior of tissues/organs in response to selected biophysical and biochemical factors, pathological conditions (the mechanisms of their formation), drug screening, or inter-organ interactions. This review characterizes 3D models obtained in microfluidic systems. These include spheroids/aggregates, hydrogel cultures, multilayers, organoids, or cultures on biomaterials. Next, the methods of formation of different 3D cultures in Organ-on-a-chip systems are presented, and examples of such Organ-on-a-chip systems are discussed. Finally, current applications of 3D cell-on-a-chip systems and future perspectives are covered.
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