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纳升生物反应器:纳米制造规模下的长期哺乳动物细胞培养

NanoLiterBioReactor: long-term mammalian cell culture at nanofabricated scale.

作者信息

Prokop Ales, Prokop Zdenka, Schaffer David, Kozlov Eugene, Wikswo John, Cliffel David, Baudenbacher Franz

机构信息

NanoDelivery, Inc., Nashville, TN 3721, USA.

出版信息

Biomed Microdevices. 2004 Dec;6(4):325-39. doi: 10.1023/B:BMMD.0000048564.37800.d6.

Abstract

There is a need for microminiaturized cell-culture environments, i.e. NanoLiter BioReactors (NBRs), for growing and maintaining populations of up to several hundred cultured mammalian cells in volumes three orders of magnitude smaller than those contained in standard multi-well screening plates. These devices would enable the development of a new class of miniature, automated cell-based bioanalysis arrays for monitoring the immediate environment of multiple cell lines and assessing the effects of drug or toxin exposure. We fabricated NBR prototypes, each of which incorporates a culture chamber, inlet and outlet ports, and connecting microfluidic conduits. The fluidic components were molded in polydimethylsiloxane (PDMS) using soft-lithography techniques, and sealed via plasma activation against a glass slide, which served as the primary culture substrate in the NBR. The input and outlet ports were punched into the PDMS block, and enabled the supply and withdrawal of culture medium into/from the culture chamber (10-100 nL volume), as well as cell seeding. Because of the intrinsically high oxygen permeability of the PDMS material, no additional CO(2)/air supply was necessary. The developmental process for the NBR typically employed several iterations of the following steps: Conceptual design, mask generation, photolithography, soft lithography, and proof-of-concept culture assay. We have arrived at several intermediate designs. One is termed "circular NBR with a central post (CP-NBR)," another, "perfusion (grid) NBR (PG-NBR)," and a third version, "multitrap (cage) NBR (MT-NBR)," the last two providing total cell retention. Three cells lines were tested in detail: a fibroblast cell line, CHO cells, and hepatocytes. Prior to the culturing trials, extensive biocompatibility tests were performed on all materials to be employed in the NBR design. To delineate the effect of cell seeding density on cell viability and survival, we conducted separate plating experiments using standard culture protocols in well-plate dishes. In both experiments, PicoGreen assays were used to evaluate the extent of cell growth achieved in 1-5 days following the seeding. Low seeding densities resulted in the absence of cell proliferation for some cell lines because of the deficiency of cell-cell and extracellular matrix (ECM)-cell contacts. High viabilities were achieved in all designs. We conclude that an instrumented microfluidics-based NanoBioReactor (NBR) will represent a dramatic departure from the standard culture environment. The employment of NBRs for mammalian cell culture opens a new paradigm of cell biology, so far largely neglected in the literature.

摘要

需要微型化的细胞培养环境,即纳升级生物反应器(NBRs),用于培养和维持多达数百个培养的哺乳动物细胞群体,其体积比标准多孔筛选板中的体积小三个数量级。这些设备将能够开发出一类新型的基于微型自动化细胞的生物分析阵列,用于监测多种细胞系的即时环境,并评估药物或毒素暴露的影响。我们制造了NBR原型,每个原型都包含一个培养室、入口和出口端口以及连接的微流体管道。流体组件使用软光刻技术在聚二甲基硅氧烷(PDMS)中模制而成,并通过等离子体活化与用作NBR主要培养基质的载玻片密封。输入和输出端口冲压在PDMS块中,能够将培养基供应到培养室(体积为10 - 100 nL)中以及从培养室中取出,以及进行细胞接种。由于PDMS材料固有的高氧渗透性,无需额外供应CO₂/空气。NBR的开发过程通常采用以下步骤的多次迭代:概念设计、掩膜生成、光刻、软光刻和概念验证培养测定。我们已经得出了几种中间设计。一种被称为“带有中心柱的圆形NBR(CP - NBR)”,另一种是“灌注(网格)NBR(PG - NBR)”,第三种版本是“多阱(笼)NBR(MT - NBR)”,后两种能够完全保留细胞。详细测试了三种细胞系:成纤维细胞系、CHO细胞和肝细胞。在进行培养试验之前,对NBR设计中使用的所有材料进行了广泛的生物相容性测试。为了描述细胞接种密度对细胞活力和存活的影响,我们使用标准培养方案在孔板中进行了单独的接种实验。在这两个实验中,使用PicoGreen测定法评估接种后1 - 5天内细胞生长的程度。低接种密度导致一些细胞系由于细胞 - 细胞和细胞外基质(ECM) - 细胞接触不足而没有细胞增殖。在所有设计中都实现了高活力。我们得出结论,基于微流体的仪器化纳升级生物反应器(NBR)将与标准培养环境有很大不同。将NBR用于哺乳动物细胞培养开创了细胞生物学的新范式,而这在文献中迄今大多被忽视。

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