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首页> 外文期刊>Lab on a chip >A 96-well microplate bioreactor platform supporting individual dual perfusion and high-throughput assessment of simple or biofabricated 3D tissue models
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A 96-well microplate bioreactor platform supporting individual dual perfusion and high-throughput assessment of simple or biofabricated 3D tissue models

机译:一个96孔微孔板生物反应器平台,支持单个双灌注和高通量评估简单或生物伪造的3D组织模型

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摘要

Traditional 2D monolayer cell cultures and submillimeter 3D tissue construct cultures used widely in tissue engineering are limited in their ability to extrapolate experimental data to predict in vivo responses due to their simplistic organization and lack of stimuli. The rise of biofabrication and bioreactor technologies has sought to address this through the development of techniques to spatially organize components of a tissue construct, and devices to supply these tissue constructs with an increasingly in vivo-like environment. Current bioreactors supporting both parenchymal and barrier tissue constructs in interconnected systems for body-on-a-chip platforms have chosen to emphasize study throughput or system/tissue complexity. Here, we report a platform to address this disparity in throughput and both system complexity (by supporting multiple in situ assessment methods) and tissue complexity (by adopting a construct-agnostic format). We introduce an ANSI/SLAS-compliant microplate and docking station fabricated via stereolithography (SLA), or precision machining, to provide up to 96 samples (empty set6 x 10 mm) with two individually-addressable fluid circuits (192 total), loading access, and inspection window for imaging during perfusion. Biofabricated ovarian cancer models were developed to demonstrate the in situ assessment capabilities via microscopy and a perfused resazurin-based metabolic activity assay. In situ microscopy highlighted flexibility of the sample housing to accommodate a range of sample geometries. Utility for drug screening was demonstrated by exposing the ovarian cancer models to an anticancer drug (doxorubicin) and generating the dose-response curve in situ, while achieving an assay quality similar to static wellplate culture. The potential for quantitative analysis of temporal tissue development and screening studies was confirmed by imaging soft-(gelatin) and hard-tissue (calcium chloride) analogs inside the bioreactor via spectral computed tomography (CT) scanning. As a proof-of-concept for particle tracing studies, flowing microparticles were visualized to inform the design of hydrogel constructs. Finally, the ability for mechanistic yet high-throughput screening was demonstrated in a vascular coculture model adopting endothelial and mesenchymal stem cells (HUVEC-MSC), encapsulated in gelatin-norbornene (gel-NOR) hydrogel cast into SLA-printed well inserts. This study illustrates the potential of a scalable dual perfusion bioreactor platform for parenchymal and barrier tissue constructs to support a broad range of multi-organ-on-a-chip applications.
机译:在组织工程中广泛使用的传统2D单层细胞培养物和亚颌骨3D组织构建培养物的能力是推断实验数据,以预测由于其简单的组织和缺乏刺激而导致的体内反应。生物制造和生物反应器技术的兴起已经寻求通过开发用于在空间组织构建体的组织构成的技术的技术和装置以越来越多的体内环境提供这些组织构建体来解决这一点。在互联系统中支持实质和屏障组织构建体的目前的生物反应器已经选择了用于强调研究的吞吐量或系统/组织复杂性。在这里,我们报告了一个平台,以解决吞吐量和系统复杂性的这种差异(通过支持多个原位评估方法)和组织复杂性(通过采用构造 - 不可知格式)。我们介绍了通过立体光刻(SLA)或精密加工制造的ANSI / SLA标准的微孔板和对接站,提供多达96个样品(空SET6 x 10 mm),其中两个可单独寻址的流体电路(总共),加载访问和灌注期间成像的检查窗口。开发了生物亚铁卵巢癌模型以通过显微镜和灌注的基于转基因的代谢活性测定来证明原位评估能力。原位显微镜突出显示样品外壳的灵活性,以适应一系列样品几何形状。通过将卵巢癌模型暴露于抗癌药物(多柔比星)并原位产生剂量 - 反应曲线,同时实现了与静态井板培养类似的测定质量来证明药物筛选的效用。通过光谱计算断层扫描(CT)扫描,通过对生物反应器内的软(明胶)和硬组织(氯化钙)和硬组织(氯化钙)类似物进行了临时组织发育和筛选研究的定量分析的可能性。作为粒子描绘研究的概念验证,可视化流动的微粒以告知水凝胶构建体的设计。最后,在采用内皮和间充质干细胞(HUVEC-MSC)的血管共培养模型中证明了机械植物的能力,其在明胶 - 降冰片烯(凝胶 - NOR)水凝胶中铸造成SLA印刷井插入件。本研究说明了用于实质和屏障组织构建体的可扩展双灌注生物反应器平台的潜力,以支持广泛的多器件芯片应用。

著录项

  • 来源
    《Lab on a chip》 |2018年第18期|共19页
  • 作者单位

    Univ Otago Christchurch Dept Orthopaed Surg &

    Musculoskeletal Med Christchurch Regenerat Med &

    Tissue Engn CReaTE G Ctr Bioengn &

    Nanomed Christchurch 8140 New Zealand;

    Univ Otago Christchurch Dept Orthopaed Surg &

    Musculoskeletal Med Christchurch Regenerat Med &

    Tissue Engn CReaTE G Ctr Bioengn &

    Nanomed Christchurch 8140 New Zealand;

    Univ Otago Christchurch Dept Orthopaed Surg &

    Musculoskeletal Med Christchurch Regenerat Med &

    Tissue Engn CReaTE G Ctr Bioengn &

    Nanomed Christchurch 8140 New Zealand;

    Univ Otago Christchurch Dept Orthopaed Surg &

    Musculoskeletal Med Christchurch Regenerat Med &

    Tissue Engn CReaTE G Ctr Bioengn &

    Nanomed Christchurch 8140 New Zealand;

    Univ Otago Christchurch Dept Orthopaed Surg &

    Musculoskeletal Med Christchurch Regenerat Med &

    Tissue Engn CReaTE G Ctr Bioengn &

    Nanomed Christchurch 8140 New Zealand;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学实验(实验化学);生物化学;生物科学;化学;
  • 关键词

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