Preview

Vestnik Moskovskogo universiteta. Seriya 16. Biologiya

Advanced search

Effect of low-temperature atmospheric pressure plasma on Paramecium caudatum cell culture

Abstract

Influence of low-temperature atmospheric pressure plasma generated by a high-resource arc plasmatron in an air mixture with the addition of an inert gas and in pure inert gas on the culture of Paramecium caudatum cells was studied. The effect of the plasma composition and the time of its exposure on the level of acidity of the aqueous medium and the nature of cell death was found. The obtained results are discussed taking into account the effect of active radicals formed under the action of a plasma jet, as well as the delayed reaction of cells to plasma exposure.

About the Authors

G. A. Gruzdev
Lomonosov Moscow State University
Russian Federation

Department of Human and Animal Physiology

Leninskiye Gory 1–12, Moscow, 119234



O. V. Karpukhina
Lomonosov Moscow State University; Semenov Federal Research Center of Chemical Physics, Russian Academy of Sciences
Russian Federation

Department of Higher Nervous Activity, Faculty of Biology,

Leninskiye Gory 1–12, Moscow, 119234, Russia;

Ulitsa Kosygina 4–1, Moscow, 119334



V. G. Yakunin
Lomonosov Moscow State University
Russian Federation

Department of Semiconductor Physics and Cryoelectronics

Leninskiye Gory 1–2, Moscow, 119234



A. N. Inozemtsev
Lomonosov Moscow State University
Russian Federation

Department of Higher Nervous Activity, Faculty of Biology

Leninskiye Gory 1–12, Moscow, 119234



V. P. Savinov
Lomonosov Moscow State University
Russian Federation

Department of Semiconductor Physics and Cryoelectronics Faculty of Physics

Leninskiye Gory 1–2, Moscow, 119234



V. Yu. Timoshenko
Lomonosov Moscow State University; Lebedev Physical Institute, Russian Academy of Sciences; Moscow Engineering Physics Institute
Russian Federation

Department of Low Temperature Physics and Superconductivity, Faculty of Physics

Leninskiye Gory 1–2, Moscow, 119234;

Leninsky prospect 53, Moscow, 119991

Kashirskoe shosse 31, Moscow, 115409



A. A. Kamensky
Lomonosov Moscow State University
Russian Federation

Department of Human and Animal Physiology

Leninskiye Gory 1–12, Moscow, 119234



References

1. Savinov V.P., Yakunin V.G., Karpukhina O.V., Inozemtsev A.N., Timoshenko V.Y., Riaby V.A. Influence of low-temperature atmospheric pressure plasma on the vital functions of microorganisms // J. Phys. Conf. Ser. 2019. Vol. 1348. N 1: 012007.

2. Kim J., Katsurai M., Kim D., Ohsaki H. Microwave-excited atmospheric-pressure plasma jets using a microstrip line // Appl. Phys. Lett. 2008. Vol. 93. N 19: 191505.

3. Jobiliong E., Suyanto H., Marpaung A.M., Abdulmadjid S.N., Idris N, Hedwig R, Ramli M., Pardede M., Suliyanti M.M., Kagawa K., Fukumoto K.-I., Tjia M.O., Lie T.J., Lie Z.S., Kurniawan K.H. Spectral and dynamical characteristics of he plasma emission and its effect on laserablated target emission in double-pulse laser-induced breakdown spectroscopy (LIBS) experiment // Appl. Spectrosc. 2015. Vol. 69. N 1. P. 115–123.

4. Inozemtsev A.N., Karpukhina O.V., Melikhov I.V., Riaby V.A., Savinov V.P., Timoshenko V.Y., Yakunin V.G. Effect of low temperature plasma of atmospheric pressure on single-cell model organisms of ciliate Paramecium caudatum // J. Phys. Conf. Ser. 2019. Vol. 1238. N 1: 012050.

5. Canesi L. Pro-oxidant and antioxidant processes in aquatic invertebrates // Ann. N. Y. Acad. Sci. 2015. Vol. 1340. N 1. P. 1–7.

6. Morgunov I.G., Kamzolova S.V., Karpukhina O.V., Bokieva S.B., Inozemtsev A.N. Biosynthesis of isocitric acid in repeated-batch culture and testing of its stress-protective activity // Appl. Microbiol. Biotechnol. 2019. Vol. 103 N 8. P. 3549–3558.

7. Morgunov I.G., Karpukhina O.V., Kamzolova S.V., Samoilenko V.A., Inozemtsev A.N. Investigation of the effect of biologically active threo-Ds-isocitric acid on oxidative stress in Paramecium caudatum // Prep. Biochem. Biotechnol. 2018. Vol. 8. N 4. P. 1–5.

8. Schindelin J., Arganda-Carreras I., Frise E., et al. Fiji: An open-source platform for biological-image analysis // Nat. Methods. 2012. Vol. 9. N 7. P. 676–682.

9. Fernando W.T.L.S. Study on atmospheric pressure plasma jet for plasma patterning toward cell culturing. Doctoral dissertation. Nagaoka institute of Technology, 2020. 133 pp.

10. Васин А.Е. Адаптация инфузорий Paramecium multimicronucleatum к солям некоторых тяжелых металлов // Вестн. СамГУ. ест.–науч. сер. 2006. Т. 7. № 47. С. 12–18.

11. Weisse T., Stadler P. Effect of pH on growth, cell volume, and production of freshwater ciliates, and implications for their distribution // Limnol. Oceanogr. 2006. Vol. 51. N 4. P. 1708–1715.

12. Moniruzzaman R., Rehman M.U., Zhao Q.L., Jawaid P., Takeda K., Ishikawa K., Hori M., Tomihara K., Noguchi K., Kondo T., Noguchi M. Cold atmospheric helium plasma causes synergistic enhancement in cell death with hyperthermia and an additive enhancement with radiation // Sci. Rep. 2017. Vol. 7. N 1: 11659.

13. Slaveykova V., Sonntag B., Gutiérrez J.C. Europe PMC Funders group stress and protists: No life without stress // Eur. J. Protistol. 2017. Vol. 55. Pt. A. P. 39–49.


Review

For citations:


Gruzdev G.A., Karpukhina O.V., Yakunin V.G., Inozemtsev A.N., Savinov V.P., Timoshenko V.Yu., Kamensky A.A. Effect of low-temperature atmospheric pressure plasma on Paramecium caudatum cell culture. Vestnik Moskovskogo universiteta. Seriya 16. Biologiya. 2021;76(4):273-277. (In Russ.)

Views: 415


ISSN 0137-0952 (Print)