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通过在单个腔室内组合间质灌注、电刺激、在线监测和测试,增强用于心脏构建体的一体化生物反应器。

Enhancing all-in-one bioreactors by combining interstitial perfusion, electrical stimulation, on-line monitoring and testing within a single chamber for cardiac constructs.

机构信息

Department of Electronics, Information and Bioengineering, Politecnico di Milano, Milan, Italy.

Cell and Tissue Engineering Laboratory, IRCCS Istituto Ortopedico Galeazzi, Milan, Italy.

出版信息

Sci Rep. 2018 Nov 16;8(1):16944. doi: 10.1038/s41598-018-35019-w.

Abstract

Tissue engineering strategies have been extensively exploited to generate functional cardiac patches. To maintain cardiac functionality in vitro, bioreactors have been designed to provide perfusion and electrical stimulation, alone or combined. However, due to several design limitations the integration of optical systems to assess cardiac maturation level is still missing within these platforms. Here we present a bioreactor culture chamber that provides 3D cardiac constructs with a bidirectional interstitial perfusion and biomimetic electrical stimulation, allowing direct cellular optical monitoring and contractility test. The chamber design was optimized through finite element models to house an innovative scaffold anchoring system to hold and to release it for the evaluation of tissue maturation and functionality by contractility tests. Neonatal rat cardiac fibroblasts subjected to a combined perfusion and electrical stimulation showed positive cell viability over time. Neonatal rat cardiomyocytes were successfully monitored for the entire culture period to assess their functionality. The combination of perfusion and electrical stimulation enhanced patch maturation, as evidenced by the higher contractility, the enhanced beating properties and the increased level of cardiac protein expression. This new multifunctional bioreactor provides a relevant biomimetic environment allowing for independently culturing, real-time monitoring and testing up to 18 separated patches.

摘要

组织工程策略已被广泛用于生成功能性心脏贴片。为了在体外保持心脏功能,已经设计了生物反应器以单独或组合提供灌注和电刺激。然而,由于设计上的一些限制,在这些平台中,光学系统的集成仍然缺失,以评估心脏成熟度水平。在这里,我们提出了一种生物反应器培养室,它为 3D 心脏构建体提供双向间质灌注和仿生电刺激,允许直接进行细胞光学监测和收缩性测试。通过有限元模型对腔室设计进行了优化,以容纳一种创新的支架锚固系统,用于固定和释放支架,以通过收缩性测试评估组织成熟度和功能。在组合灌注和电刺激下的新生大鼠心脏成纤维细胞随着时间的推移表现出良好的细胞活力。成功地对新生大鼠心肌细胞进行了整个培养期的监测,以评估其功能。灌注和电刺激的结合增强了贴片的成熟度,这表现在更高的收缩性、增强的搏动特性和更高水平的心脏蛋白表达上。这种新的多功能生物反应器提供了一个相关的仿生环境,允许独立培养、实时监测和测试多达 18 个分离的贴片。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/811c/6240103/046bac2604d8/41598_2018_35019_Fig1_HTML.jpg

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