无接触光刻技术将图形化和半透明的氧化铟锡刺激电极集成到聚二甲基硅氧烷基片上心脏装置中,简化生理记录。

ty10086 提交于 周三, 08/25/2021 - 16:01
文章英文标题
Contact photolithography-free integration of patterned and semi-transparent indium tin oxide stimulation electrodes into polydimethylsiloxane-based heart-on-a-chip devices for streamlining physiological recordings.
正文
控制性电刺激对于评估心-片装置中工程化心肌组织的生理至关重要。然而,现有的刺激技术,如外部铂电极或在玻璃基底上图案的不透明微电极阵列,其吞吐率、重现性有限,或与芯片上心脏系统其他可取的特性兼容,如可调谐培养基底的使用、成像的可及性,或在微流控装置中的封闭性等。本研究采用激光切割胶带掩膜,将导电、半透明、生物相容性材料氧化铟锡( ITO )沉积在玻璃和聚二甲基硅氧烷( PDMS )涂层的盖玻片上,作为平行或点刺激电极。ITO引起衬底变色但不阻止亮场成像。ITO图形基底用纤维连接蛋白阵列线微接触印刷,并与新生大鼠心室肌细胞种子,组装成排列整齐的心肌组织。作为平行电极或点电极沉积的ITO被连接到外部刺激器上,用来成功地刺激微图案的心脏组织产生钙瞬变或传播钙波。ITO电极也被整合到基于悬臂梁的肌肉薄膜( MTF )测试中,以刺激和量化微图形心脏组织的收缩。为了显示多个ITO电极集成到更大的、复用的系统中的潜力,将两组ITO电极沉积在单个基底上,用于独立刺激显微结构的心肌组织收缩。总的来说,这些将ITO电极集成到芯片上心脏器件的方法相对简单、模块化和可扩展,可以在可兴奋组织的微生理系统中得到不同的应用。
文章内容(英文)
Controlled electrical stimulation is essential for evaluating the physiology of cardiac tissues engineered in heart-on-a-chip devices. However, existing stimulation techniques, such as external platinum electrodes or opaque microelectrode arrays patterned on glass substrates, have limited throughput, reproducibility, or compatibility with other desirable features of heart-on-a-chip systems, such as the use of tunable culture substrates, imaging accessibility, or enclosure in a microfluidic device. In this study, indium tin oxide (ITO), a conductive, semi-transparent, and biocompatible material, was deposited onto glass and polydimethylsiloxane (PDMS)-coated coverslips as parallel or point stimulation electrodes using laser-cut tape masks. ITO caused substrate discoloration but did not prevent brightfield imaging. ITO-patterned substrates were microcontact printed with arrayed lines of fibronectin and seeded with neonatal rat ventricular myocytes, which assembled into aligned cardiac tissues. ITO deposited as parallel or point electrodes was connected to an external stimulator and used to successfully stimulate micropatterned cardiac tissues to generate calcium transients or propagating calcium waves, respectively. ITO electrodes were also integrated into the cantilever-based muscular thin film (MTF) assay to stimulate and quantify the contraction of micropatterned cardiac tissues. To demonstrate the potential for multiple ITO electrodes to be integrated into larger, multiplexed systems, two sets of ITO electrodes were deposited onto a single substrate and used to stimulate the contraction of distinct micropatterned cardiac tissues independently. Collectively, these approaches for integrating ITO electrodes into heart-on-a-chip devices are relatively facile, modular, and scalable and could have diverse applications in microphysiological systems of excitable tissues.
来源出处
Journal|[J]Lab on a ChipVolume 21, Issue 4. 2021. PP 674-687
DOI
https://doi.org/10.1039/D0LC00948B

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产品颜色:保质期限:36个月

存放环境说明:室温,阴凉处保存

备注说明:

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