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CoMnFeO铁氧体纳米颗粒对在静磁场下培养的犬C2肥大细胞瘤细胞系和脂肪来源间充质基质干细胞(ASCs)的影响:对犬肥大细胞瘤治疗的潜在意义

The Effect of CoMnFeO Ferrite Nanoparticles on the C2 Canine Mastocytoma Cell Line and Adipose-Derived Mesenchymal Stromal Stem Cells (ASCs) Cultured Under a Static Magnetic Field: Possible Implications in the Treatment of Dog Mastocytoma.

作者信息

Marycz K, Marędziak M, Lewandowski D, Zachanowicz E, Zięcina A, Wiglusz R J, Pązik R

机构信息

Faculty of Biology, Wrocław University of Environmental and Life Sciences, Kożuchowska 5b, 50-631 Wrocław, Poland.

Faculty of Veterinary Medicine, Wroclaw University of Environmental and Life Sciences, Norwida 31, 50-375 Wrocław, Poland.

出版信息

Cell Mol Bioeng. 2017;10(3):209-222. doi: 10.1007/s12195-017-0480-0. Epub 2017 Feb 21.

Abstract

Cobalt manganese ferrite nanoparticles have application potential in the biomedical field, however there is limited information concerning the biological response. The aim of this work was to investigate the cytotoxic potential of cobalt-manganese ferrite nanoparticles in canine mastocytoma tumor cells (C2) and adipose-derived mesenchymal stromal stem cells (ASCs) cultured under a static magnetic field (MF). In this study, we investigated the viability and proliferation rate of ASC and C2 cells cultured with CoMnFeO nanoparticles under 0.5T MF. We observed cells morphology and measured intracellular ROS generation. Thermal observations were used to characterize the thermotrophic cell behavior in different condition and RNA level of heat shock proteins and apoptotic genes was measured. Nanoparticles reduced cell viability, caused cell damage, i.e., through the formation of reactive oxygen species (ROS) and increased transcriptional level of apoptotic genes (Bcl-2, Bax, p53, p21). In addition, we have found that C2 mastocytoma cells cultured with metal oxide nanoparticles under MF exhibited unexpected biological responses, including thermotolerance and apoptotic response induced by the expression of heat shock proteins and ROS produced under a MF. Our results suggest that stimulation using MF and CoMnFeO nanoparticles is involved in mechanisms associated with controlling cell proliferative potential signaling events. We can state that significant differences between normal and cancer cells in response to nanoparticles and MF are apparent. Our results show that nanoparticles and MF elevate the temperature in tumor cells, thereby increasing the expression of ROS as well as heat shock proteins.

摘要

钴锰铁氧体纳米颗粒在生物医学领域具有应用潜力,然而关于其生物反应的信息有限。这项工作的目的是研究钴锰铁氧体纳米颗粒在静态磁场(MF)下培养的犬肥大细胞瘤细胞(C2)和脂肪来源的间充质基质干细胞(ASC)中的细胞毒性潜力。在本研究中,我们研究了在0.5T MF下用CoMnFeO纳米颗粒培养的ASC和C2细胞的活力和增殖率。我们观察了细胞形态并测量了细胞内活性氧的产生。通过热观察来表征不同条件下的热营养细胞行为,并测量热休克蛋白和凋亡基因的RNA水平。纳米颗粒降低了细胞活力,导致细胞损伤,即通过活性氧(ROS)的形成,并增加了凋亡基因(Bcl-2、Bax、p53、p21)的转录水平。此外,我们发现,在MF下用金属氧化物纳米颗粒培养的C2肥大细胞瘤细胞表现出意想不到的生物学反应,包括热耐受性以及由MF下产生的热休克蛋白和ROS的表达诱导的凋亡反应。我们的结果表明,使用MF和CoMnFeO纳米颗粒的刺激参与了与控制细胞增殖潜力信号事件相关的机制。我们可以指出,正常细胞和癌细胞对纳米颗粒和MF的反应存在明显差异。我们的结果表明,纳米颗粒和MF会提高肿瘤细胞的温度,从而增加ROS以及热休克蛋白的表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba25/6816644/e68bfd98811e/12195_2017_480_Fig1_HTML.jpg

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