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低频电磁场对生长的影响

Growth Alterations by Low-Frequency Electromagnetic Fields.

作者信息

Rodríguez-DE LA Fuente Abraham Octavio, Gomez-Flores Ricardo, Heredia-Rojas José Antonio, García-Muñoz Edna Marbella, Vargasvillarreal Javier, Hernández-García Magda Elizabeth, Gonzálezsalazar Francisco, Garza-González Jesús Norberto, Beltcheva Michaela, Heredia-Rodríguez Omar

机构信息

Department of Exact Sciences and Human Development, Biological Sciences School, Autonomous University of Nuevo León, Sán Nicolás de los Garza, Nuevo León, México.

Department of Immunology and Virology, Biological Sciences School, Autonomous University of Nuevo León, Sán Nicolás de los Garza, Nuevo León, México.

出版信息

Iran J Parasitol. 2019 Oct-Dec;14(4):652-656.

Abstract

BACKGROUND

There is an increasing interest in using physical factors such as magnetic fields as antimicrobial strategy, with variable results. The current study was aimed to evaluate the influence of extremely low-frequency electromagnetic fields (ELF-EMFs) on the axenically-cultured parasite protozoans and growth.

METHODS

Bioassays were developed using , GT-13 and IMSS-0989 strains cultured at 37 ºC in TYI-S-33 medium. The following treatment regimens and controls were considered: (a) cells exposed to ELF-EMFs, (b) untreated cells, (c) cells treated with Metronidazole, used as positive controls, and (d) cells co-exposed to ELF-EMFs and Metronidazole. When cultures reached the end of logarithmic phase, they were exposed to ELF-EMFs for 72 h, in a standardized magnetic field exposure facility. For determining cytotoxic effects, trophozoite density was blindly evaluated in a Neubauer chamber.

RESULTS

A significant decrease in trophozoite growth was observed for , in magnetic field-treated cultures. On the other hand, cultures co-exposed to ELF-EMFs and Metronidazole showed no significant differences when compared with cultures treated with Metronidazole alone. On the contrary, an increased trophozoite density was observed in cultures after exposure to magnetic fields. An absence of a synergistic or antagonistic effect was observed.

CONCLUSION

ELF-EMFs induced and . growth alterations, indicating a potential effect in cell cycle progression.

摘要

背景

将磁场等物理因素用作抗菌策略的兴趣与日俱增,但其结果各不相同。本研究旨在评估极低频电磁场(ELF - EMF)对无菌培养的寄生虫原生动物及其生长的影响。

方法

使用在37℃下于TYI - S - 33培养基中培养的 、GT - 13和IMSS - 0989菌株开展生物测定。考虑了以下处理方案和对照:(a)暴露于ELF - EMF的细胞,(b)未处理的细胞,(c)用甲硝唑处理的细胞,用作阳性对照,以及(d)同时暴露于ELF - EMF和甲硝唑的细胞。当培养物达到对数期末期时,将它们置于标准化磁场暴露设施中暴露于ELF - EMF 72小时。为了确定细胞毒性作用,在血细胞计数板中盲目评估滋养体密度。

结果

在磁场处理的培养物中,观察到 滋养体生长显著下降。另一方面,与单独用甲硝唑处理的培养物相比,同时暴露于ELF - EMF和甲硝唑的培养物没有显著差异。相反,在暴露于磁场后的 培养物中观察到滋养体密度增加。未观察到协同或拮抗作用。

结论

ELF - EMF诱导了 和 生长改变,表明对细胞周期进程有潜在影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59bc/7028241/e30b9821a8fc/IJPA-14-652-g001.jpg

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