Daniil E Shoshin, Elena A Sizova, Ayna M Kamirova
Animal Husbandry and Fodder Production. 2022. Vol. 105, no 4. Р. 35-48.
doi:10.33284/2658-3135-105-4-35
Original article
Interaction of Co3O4 cobalt oxide ultrafine particles with oregano herb extract Origanum vulgare
Daniil E Shoshin1, Elena A Sizova2,3, Ayna M Kamirova4
1,2,4Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, Orenburg, Russia
3Orenburg State University, Orenburg, Russia
1daniilshoshin@mail.ru, https://orcid.org/0000-0003-3086-681X
2,3sizova.l78@yandex.ru, https://orcid.org/0000-0002-5125-5981
4ayna.makaeva@mail.ru, https://orcid.org/0000-0003-1474-8223
Abstract. Prospects of phytobiotics and ultrafine materials applying in livestock feeding are presented. The biological activity of Co3O4 ultrafine particles (UFP) and Origanum vulgare extract was evaluated in the bacterial luminescence inhibition test individually and in combination. The results obtained indicate high bactericidal properties of UFP (EC50 at 9.8×10-4 mol/L) and plant extract. It was shown that the applying of these substances in the combination neutralizes the negative effect. The doses recommended for the in situ study were established (from 7.6×10-6 to 6.1×10-5 mol/L for UFP, 64-fold dilution for the extract).
Keywords: plants, Origanum vulgare, luminescence, Co3O4, ultrafine particles, phytobiotics
Acknowledgments: the work was supported by the Russian Science Foundation, Project No. 22-26-00254.
For citation: Shoshin DE, Sizova EA, Kamirova AM. Interaction of Co3O4 cobalt oxide ultrafine particles with oregano herb extract Origanum vulgare. Animal Husbandry and Fodder Production. 2022;105(4):35-48 (In Russ.). https://doi.org/10.33284/2658-3135-105-4-35
References
- Turyspaeva ShZh, Ahmetova MS, Ospangali DS, Umbetzhanov KZh. Effect of infusion from the oregano flowers (Origanum vulgare) on the immunoglobulins dynamics in the blood serum of calves. (Conference proceedings) Achievements of modern science: from theory to practice: materials of the international (correspondence) scientific and practical conference (Minsk, Belarus', 28 November 2019) / under the general editorship Vostretsov AI. Neftekamsk: SPC «Mir nauki» (IE Vostretsov AI); 2019:46-52.
- Postnikova ON, Shevkoplyas LA, Kuevda TA, Sultanova K. The effect of essential oils of oregano and mountain savory on the growth of conditionally pathogenic microorganisms. Bacteriology. 2021;6(3):62.
- Engashev SV. Feed supplement to increase resistance and productivity of livestock and poultry: pat. 2294648 Rus. Federation, Request 25.08.2005; published. 10.03.2007, Bulletin № 7:8 p.
- Sachyuka TV, Kovalenko NA, Supichenko GN, Bosak VM, Naumov MV. Component composition and enantiomers of essential oils of oregano. Agriculture - problems and prospects: collection of scientific papers. Grodno: Grodno State Agricultural University. 2020;51:133-140.
- Orlova AA, Povydysh MN. Review of methods for qualitative and quantitative analysis of tannins in plant materials. Chemistry of Plant Raw Material. 2019;4:29-45. doi: 10.14258/oskyu2019045459
- Ryazanov VA, Sheida EV, Duskaev GK, Rakhmatullin ShG, Kvan OV. Assessment of the effect of phytobiotic drugs Salviae folia, Scutellaria baicalensis, Origanum vulgare on metabolic processes in the rumen model. Agrarian Science. 2022;7(8):86-92. doi: 10.32634/0869-8155-2022-361-7-8-86-92
- Kolesnikov SI, Varduni VM, Timoshenko AN, Denisova TV, Kazeev KSh, Akimenko YV. Estimation of ecotoxicity of nanoparticles of cobalt, copper, nickel and zinc oxides on biological indicators of the state of ordinary black soil. South of Russia: ecology, development. 2020;15(1-54):130-136. doi: 10.18470/1992-1098-2020-1-130-136
- Polyanskiy MM. Feed supplement for farm livestock: pat. 2405374 Rus. Federation, Request 01.12.2008; published 10.12.2010, Bulletin № 34:8 p.
- Sizova EA, Biryukova MS, Danilova YuS. The efficacy of nano forms of trace elements in the feeding of broiler chickens. (Conference proceedings) Nanotechnologies in agriculture: prospects and risks materials of the international scientific and practical conference, (Orenburg, 26-27 September 2018) under the general editorship corresponding member of the RAS Miroshnikov SA. Orenburg: Publishing house FNC BST RAS; 2018:145-149.
- Sizova EA, Miroshnikov SA. Bioecological evaluation of different test objects in contact with metals in nanoform. Actual Biotechnology. 2016;3(18):106-108.
- Sizova EA, Yausheva EV, Kholodilina TN. Biological certification of CuO nanoparticles on bacterial models. Animal Husbandry and Fodder Production. 2018b;101(4):15-20.
- Sizova EA, Yausheva EV, Nechitailo KS, Ivanisheva AP. Comparative characteristics of the toxicity of ultrafine particles of copper, zinc and their alloys in the test of inhibition of bacterial bioluminescence. Animal husbandry and fodder production. 2019;102(4): 10-22. doi: 10.33284/2658-3135-102-4-10
- Ryazanov VA, Kurilkina MYa, Duskaev GK, Gabidulin VM. Phytobiotics as an alternative to antibiotics in animal husbandry (review). Animal Husbandry and Fodder Production. 2021;104(4):108-123. doi: 10.33284/2658-3135-104-4-108
- Abdel-Latif HMR, Abdel-Tawwab M, Khafaga AF, Dawood MAO. Dietary oregano essential oil improved the growth performance via enhancing the intestinal morphometry and hepatorenal functions of common carp (Cyprinus carpio L.) fingerlings. Aquaculture. 2020;526:735432. doi: 10.1016/j.aquaculture.2020.735432
- Afshari A, Sourinejad I, Gharaei A, Johari SA, Ghasemi Z. The effects of diet supplementation with inorganic and nanoparticulate iron and copper on growth performance, blood biochemical parameters, antioxidant response and immune function of snow trout Schizothorax zarudnyi (Nikolskii, 1897). Aquaculture. 2021;539:736638. doi: 10.1016/j.aquaculture.2021.736638
- Agus HH. Terpene toxicity and oxidative stress. In: Patel VB, Preedy VR, editors. Toxicology. Oxidative Stress and Dietary Antioxidants. Academic Press. 2021;4:33-42. doi: 10.1016/B978-0-12-819092-0.00004-2
- Ahmedi S, Pant P, Raj N, Manzoor N. Limonene inhibits virulence associated traits in Candida albicans: In-vitro and in-silico studies. Phytomedicine Plus. 2022;2(3):100285. doi: 10.1016/j.phyplu.2022.100285
- Almeida JM, Crippa BL, Souza VVMA, Alonso VPP, Júnior EDMS, Picone CSF, Silva NCC. Antimicrobial action of Oregano, Thyme, Clove, Cinnamon and Black pepper essential oils free and encapsulated against foodborne pathogens. Food Control. 2022;144:109356. doi: 10.1016/j.foodcont.2022.109356
- An P, Yang X, Yu J, Qi J, Ren X, Kong Q. α-terpineol and terpene-4-ol, the critical components of tea tree oil, exert antifungal activities in vitro and in vivo against Aspergillus niger in grapes by inducing morphous damage and metabolic changes of fungus. Food Control. 2019;98:42-53. doi: 10.1016/j.foodcont.2018.11.013
- Bounar R, Krimat S, Boureghda H, Dob T. Chemical analyses, antioxidant and antifungal effects of oregano and thyme es sential oils alone or in combination against selected Fusarium species. International Food Research Journal. 2020; 27(1): 66-77.
- Dinardo FR, Deflorio M, Casalino E, Crescenzo G, Centoducati G. Effect of feed supplementation with Origanum vulgare L. essential oil on sea bass (Dicentrarchus labrax): A preliminary framework on metabolic status and growth performances. Aquaculture Reports. 2020;18:100511. doi: 10.1016/j.aqrep.2020.100511
- Felici M, Tugnoli B, Ghiselli F, Massi P, Tosi G, Fiorentin, L, Grilli E. In vitro anticoccidial activity of thymol, carvacrol, and saponins. Poultry science. 2020:99(11):5350-5355. doi: 10.1016/j.psj.2020.07.035
- González-Montaña JR, Escalera-Valente F, Alonso AJ, Lomillos JM, Robles R, Alonso ME. Relationship between vitamin B12 and cobalt metabolism in domestic ruminant: an update. Animals. 2020;10(10):1855. doi: 10.3390/ani10101855
- Gupta V, Kant V, Sharma AK, Sharma M. Comparative evaluation of antibacterial potentials of nano cobalt oxide with standard antimicrobials. Journal of the Indian Chemical Society. 2022;99(7):100533. doi: 10.1016/j.jics.2022.100533
- Han F, Ma GQ, Yang M, Yan L, Xiong W, Shu JC, Xu HL. Chemical composition and antioxidant activities of essential oils from different parts of the oregano. Journal of Zhejiang University Science B. 2017;18(1):79-84. doi: 10.1631/jzus.B1600377
- Huang X, Bian Y, Liu T, Xu Z, Song Z, Wang F, Li T, Li S. Antioxidant potential and in vitro inhibition of starch digestion of flavonoids from Crataegus pinnatifida. Heliyon. 2022;8(10):e11058. doi: 10.1016/j.heliyon.2022.e11058
- Kräutler B, Jaun BM. Vitamin B12 and Cofactor F430. In: Brothers PJ, Senge MO, editors. Fundamentals of Porphyrin Chemistry: A 21st Century Approach. 2022;1:777-814. doi: 10.1002/9781119129301.ch18
- Kuralkar P, Kuralkar SV. Role of herbal products in animal production – An updated review. Journal of Ethnopharmacology. 2021;278:114246. doi: 10.1016/j.jep.2021.114246
- Makarov PM, Stepanova IA, Nazarova AA, Polishchuk SD, Churilov GI. Physiological and biochemical parameters of holstein heifers when adding to their diet bio-drugs containing cuprum and cobalt nanoparticles. Nano Hybrids and Composites. 2017;13:123-129. doi: 10.4028/www.scientific.net/NHC.13.123
- Milenković L, Ilić ZS, Šunić L, Tmušić N, Stanojević L, Stanojević J, Cvetković D. Modification of light intensity influence essential oils content, composition and antioxidant activity of thyme, marjoram and oregano. Saudi Journal of Biological Sciences. 2021;28(11):6532-6543. doi: 10.1016/j.sjbs.2021.07.018
- Miranda-Cadena K, Marcos-Arias C, Mateo E, Aguirre-Urizar JM, Quindós G, Eraso E. In vitro activities of carvacrol, cinnamaldehyde and thymol against Candida biofilms. Biomedicine & Pharmacotherapy. 2021;143:112218. doi: 10.1016/j.biopha.2021.112218
- Miroshnikov S, Sizova E, Yausheva E, Uimin M, Konev A, Minin A, Nikiyan H. Comparative toxicity of CuZn nanoparticles with different physical and chemical characteristics. Oriental Journal of Chemistry. 2019;35(3):973-981. doi: 10.13005/ojc/350308
- Mondal AH, Behera T, Swain P, Das R, Sahoo SN, Mishra SS, Ghosh K. Nano zinc vis-à-vis inorganic Zinc as feed additives: Effects on growth, activity of hepatic enzymes and non-specific immunity in rohu, Labeo rohita (Hamilton) fingerlings. Aquaculture Nutrition. 2020;26(4):1211-1222. doi: 10.1111/anu.13077
- Ndomou SCH, Djikeng FT, Teboukeu GB, Doungue HT, Foffe HAK, Tiwo CT, Womeni HM. Nutritional value, phytochemical content, and antioxidant activity of three phytobiotic plants from west Cameroon. Journal of Agriculture and Food Research. 2021;3:100105. doi: 10.1016/j.jafr.2021.100105
- Osman D, Cooke A, Young TR, Deery E, Robinson NJ, Warren MJ. The requirement for cobalt in vitamin B12: A paradigm for protein metalation. Biochimica et Biophysica Acta (BBA)-Molecular Cell Research. 2021;1868(1):118896. doi: 10.1016/j.bbamcr.2020.118896
- Peng K, Lv X, Zhao H, Chen B, Chen X, Huang W. Antioxidant and intestinal recovery function of condensed tannins in Lateolabrax maculatus responded to in vivo and in vitro oxidative stress. Aquaculture. 2022;547:737399. doi: 10.1016/j.aquaculture.2021.737399
- Jane Cypriyana PJ, Saigeetha S, Angalene J LA, Samrot AV et al. Overview on toxicity of nanoparticles, it's mechanism, models used in toxicity studies and disposal methods – A review. Biocatalysis and Agricultural Biotechnology. 2021;36:102117. doi: 10.1016/j.bcab.2021.102117
- Pogribna M, Koonce NA, Mathew A, Word B, Patri AK, Lyn-Cook B, Hammons G. Effect of titanium dioxide nanoparticles on DNA methylation in multiple human cell lines. Nanotoxicology. 2020; 14(4):534-553. doi: https://doi.org/10.1080/17435390.2020.1723730
- Sawosz E, Łukasiewicz M, Łozicki A, Sosnowska M, Jaworski S, Niemiec J, Chwalibog A, et al. Effect of copper nanoparticles on the mineral content of tissues and droppings, and growth of chickens. Archives of Animal Nutrition. 2018;72(5):396-406. doi: 10.1080/1745039X.2018.1505146
- Sharan A, Nara S. Exposure of synthesized Co3O4 nanoparticles to Chlorella minutissima: an ecotoxic evaluation in freshwater microalgae. Aquatic Toxicology. 2020;224:105498. doi: 10.1016/j.aquatox.2020.105498
- Singh AK. A review on plant extract-based route for synthesis of cobalt nanoparticles: photocatalytic, electrochemical sensing and antibacterial applications. Current Research in Green and Sustainable Chemistry. 2022;5:100270. doi: 10.1016/j.crgsc.2022.100270
- Sobrinho ACN, de Morais SM, Marinho MM, de Souza NV, Lima DM. Antiviral activity on the Zika virus and larvicidal activity on the Aedes spp. of Lippia alba essential oil and β-caryophyllene. Industrial Crops and Products. 2021;162:113281. doi: 10.1016/j.indcrop.2021.113281
- Wang H, Ren T, Zhu N, Yu Q, Li M. Co3O4 nanoparticles at sublethal concentrations inhibit cell growth by impairing mitochondrial function. Biochemical and Biophysical Research Communications. 2018;505(3):775-780. doi: 10.1016/j.bbrc.2018.10.002
Information about authors:
Daniil Ye Shoshin, Master, Laboratory Researcher of the Centre for Nanotechnologies in Agriculture, Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, 29, 9 January St., Orenburg, 460000, tel.: 8-965-932-53-67.
Elena A Sizova, Dr. Sci. (Biology), Head of the Centre for Nanotechnologies in Agriculture, Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, 29, 9 January St., Orenburg, 460000; Professor of the Department of Biology and Soil Science, Orenburg State University, 13 Pobedy Ave., Orenburg, 460018, tel.: 8-912-344-99-07.
Ayna M Kamirova, Cand. Sci. (Biology), Researcher of the Centre for Nanotechnologies in Agriculture, Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, 29, 9 January St., Orenburg, 460000, tel.: 8-922-548-44-89.
The article was submitted 03.11.2022; approved after reviewing 17.11.2022; accepted for publication 12.12.2022.
Download