非贴壁HL-60细胞在静态和波浪型搅拌系统中分批培养的繁殖

IF 0.5 4区 工程技术 Q4 ENGINEERING, CHEMICAL Chemical and Process Engineering-Inzynieria Chemiczna I Procesowa Pub Date : 2023-11-06 DOI:10.24425/CPE.2019.126109
K. Wierzchowski, I. Grabowska, M. Pilarek
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引用次数: 1

摘要

一般来说,通常应用的静态(即非搅拌)培养不能为悬浮非贴壁细胞的有效繁殖提供足够的条件。小型波浪型搅拌一次性生物反应器的可行性,为这种系统在扩大动物细胞脆弱生物量方面的适用性奠定了基础。本研究的基本目的是比较非贴壁HL-60细胞在典型的静态(即非搅拌)一次性培养瓶(50 cm3培养基)和ReadyToProcess WAVETM25生物反应器系统(GE Healthcare)中进行批量培养的结果,该系统配备一次性培养袋(300 cm3培养基),并进行连续波式搅拌。在波浪型搅拌的生物过程中,HL-60细胞的密度和活力明显高于参考静态培养。在两个比较培养的完全相同的时间点上,在连续波型搅拌的系统中维持的HL-60细胞所显示的每个细胞的葡萄糖消耗比(rglc/细胞)的值明显低于静态培养的值(即高达42%以上)。研究结果无疑全面地证实了所研究的波浪诱导搅拌一次性生物反应器作为进行HL-60非贴壁细胞繁殖和提供HL-60细胞持续代谢所需培养条件的合适平台的适用性。
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Propagation of non-adherent HL-60 cells in batch cultures maintained in staticand wave-type agitated systems
Typically applied static (i.e. non-agitated) cultures do not provide sufficient conditions for efficient propagation of suspended non-adherent cells, in general. Feasibility of small-scale wave-type agitated single-use bioreactors for gentle agitation underlies applicability of such systems for scaling-up of fragile biomass of animal cells. The basic aim of the study was to compare the results of non-adherent HL-60 cell propagation performed referentially as the batch culture in typical static (i.e. non-agitated) disposable culture flasks (50 cm3 of culture medium) and in ReadyToProcess WAVETM25 bioreactor system (GE Healthcare) equipped with disposable culture bag (300 cm3 of culture medium) subjected to continuous wave-type agitation. The density and viability of HL-60 cells were significantly higher for the bioprocess subjected to wave-type agitation, than in the reference static culture. The values of the specific rate of glucose consumption per cell (rglc/cell) exhibited by HL-60 cells maintained in the system with continuous wave-type agitation was significantly lower (i.e. up to more than 42%) than the values noted for the static culture, for exactly the same time-points of two compared cultures. The results of the studies undoubtedly and comprehensively confirmed the applicability of the studied disposable bioreactor with wave-induced agitation as the right platform for proceeding the propagation of nonadherent HL-60 cells and for providing the culture conditions required by HL-60 cells for sustainable metabolism.
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期刊介绍: The content, aim and scope of the proposals should comply with the main subject of the journal, i.e. they should deal with mathematical modelling and/or experimental investigations on momentum, heat and mass transfer, unit processes and operations, integrated processes, biochemical engineering, statics and kinetics of chemical reactions. The experiments and modelling may cover different scales and processes ranging from the molecular phenomena up to production systems. The journal language is grammatically correct British English. Chemical and Process Engineering publishes: i) full text research articles, ii) invited reviews, iii) letters to the editor and iv) short communications, aiming at important new results and/or applications. Each of the publication form is peer-reviewed by at least two independent referees.
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