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纳米气泡存在对小鼠成纤维细胞和人白血病细胞培养物的影响。

Effect of Nanobubble Presence on Murine Fibroblasts and Human Leukemia Cell Cultures.

机构信息

Warsaw University of Technology, Faculty of Chemical and Process Engineering, Department of Biotechnology and Bioprocess Engineering, Warynskiego 1, 00-645 Warsaw, Poland.

出版信息

Langmuir. 2022 Jul 19;38(28):8575-8584. doi: 10.1021/acs.langmuir.2c00819. Epub 2022 Jul 1.

Abstract

Nanobubbles can enhance both the proliferation and metabolic activity of microorganisms (mainly bacteria) and the growth of the whole higher organisms such as mice, fish, or plants. The critical fact is that nanobubbles of different gases can affect given cells differently. As animal cell cultures are used in industry and research studies, investigations of their interactions with nanobubbles should be carried out. This study aims to uncover whether the presence of nanobubbles improves the proliferation rate and metabolic activity of L929 fibroblasts and HL60 leukemia cells as exemplary animal cell lines of adherent and non-adherent cells, respectively. The long-term (8-day) cultures of both L929 and HL-60 cells with nanobubble addition to the appropriate medium were carried out. The medium was not exchanged for the whole duration of the culture. Nanobubbles of two gases - oxygen and nitrogen - were dispersed in the appropriate media and then used to culture cells. The density and viability of cells were assessed microscopically while their metabolic activity was determined using PrestoBlue or XTT assays. Additionally, we have performed the analysis of substrate consumption rate during the growth and activity of lactate dehydrogenase. We have shown that nanodispersion of both gases enhances the proliferation rate and metabolic activity of L929. For HL-60 cultures, reference cultures exhibited better viability, cell density, and metabolic activity than those with either oxygen or nitrogen nanobubbles. Obtained results clearly show that nanobubble dispersions of both oxygen and nitrogen positively affect the cultures of L929 while inhibiting the growth of HL-60 cells. We suspect that a similar positive effect would be visible for other adherent cells, similar to L929. Such results are promising for intensifying the growth of animal or human cells in routine cell cultures.

摘要

纳米气泡可以增强微生物(主要是细菌)的增殖和代谢活性,以及老鼠、鱼类或植物等整个高等生物的生长。关键事实是,不同气体的纳米气泡会对特定细胞产生不同的影响。由于动物细胞培养在工业和研究中都有应用,因此应该对它们与纳米气泡的相互作用进行研究。本研究旨在揭示纳米气泡的存在是否能提高 L929 成纤维细胞和 HL60 白血病细胞的增殖率和代谢活性,这两种细胞分别是贴壁和非贴壁细胞的典型动物细胞系。将含有纳米气泡的适当培养基添加到 L929 和 HL-60 细胞的长期(8 天)培养物中,在整个培养过程中不更换培养基。将两种气体(氧气和氮气)的纳米气泡分散在适当的培养基中,然后用于培养细胞。通过显微镜评估细胞密度和活力,通过 PrestoBlue 或 XTT 测定法测定其代谢活性。此外,我们还进行了乳酸脱氢酶在细胞生长和活性过程中的底物消耗速率分析。结果表明,两种气体的纳米分散都能提高 L929 的增殖率和代谢活性。对于 HL-60 培养物,对照培养物的活力、细胞密度和代谢活性均优于含氧气或氮气纳米气泡的培养物。研究结果清楚地表明,氧气和氮气的纳米气泡分散体均能促进 L929 细胞的生长,但抑制 HL-60 细胞的生长。我们怀疑,对于其他类似 L929 的贴壁细胞,也会产生类似的积极效果。这些结果有望在常规细胞培养中促进动物或人类细胞的生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fe4/9301908/99c9c52d6f5a/la2c00819_0002.jpg

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