收缩性
人的心脏
生物医学工程
芯片上器官
神经科学
刺激
计算机科学
医学
细胞生物学
纳米技术
材料科学
生物
心脏病学
微流控
作者
Roberta Visone,Paola Occhetta,Marco Rasponi
标识
DOI:10.1007/978-1-0716-1693-2_9
摘要
Modeling human cardiac tissues in vitro is essential to elucidate the biological mechanisms related to the heart physiopathology, possibly paving the way for new treatments. Organs-on-chips have emerged as innovative tools able to recreate tissue-specific microenvironments, guiding the development of miniaturized models and offering the opportunity to directly analyze functional readouts. Here we describe the fabrication and operational procedures for the development of a heart-on-chip model, reproducing cardiac biomimetic microenvironment. The device provides 3D cardiac microtissue with a synchronized electromechanical stimulation to support the tissue development. We additionally describe procedures for characterizing tissue evolution and functionality through immunofluorescence, real time qPCR, calcium imaging and microtissue contractility investigations.
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