07. Experimental justification of application of colloidal solutions of nano-particles of metals AuNP, AgNP, CuNP and FeNP in biogeotechnology of manufacture of vaccines

https://doi.org/10.31073/agrovisnyk201707-07
Ryzhenko G. F., Gorbatiuk O. I., Andriiaschuk V. O., Zhovnir O. M., Uhovs'ka T. M., Tiutiun S. M., Rieznichenko L. S., Dybkova S. M., Gruzina T. G.
Pages: 36-42.

Full article: 
Abstract
The purpose. To determine perspectives and expediency of use of nano-particles of metals in biogeotechnology of manufacture of vaccines, to determine stimulating densities nano-particles of gold, silver, copper, and iron for vaccine strains of bacteria. Methods. Microscopic, bacteriological, biological, chemical, variation-statistical. Results. The expediency of application of colloidal solutions of nano-particles of metals (gold, silver, copper, and iron), synthesized by method of chemical condensation, as perspective for biogeotechnology of manufacture of vaccines is justified. Biosafety of the selected AuNP, AgNP, FeNP, and CuNP is confirmed by negative tests on cyto- and genotoxicity, and also mutagenicity. Their individual densities which make active metabolic processes in cells of vaccine strains of causal organisms and promote increase of volumes of bacterial mass at manufacture of vaccines are specified. Conclusions. It is expedient to use synthesized by method of chemical condensation colloidal solutions of AuNP, AgNP, FeNP, and CuNP in biogeotechnology of manufacture of vaccines as growth stimulants of cells of vaccine strains of microorganisms


Key words: nano-particles of metals, biosafety, cytotoxicity, geno-toxicity, mutagenicity, H+-ATF activity, bacterial mass, vaccine.



References
  1. Sahoo, S.K., Parveen S., &Panda J.J. (2007). The present and future of nanotechnology in human health care. Nanomedicine, 3, 20—31.
  2. Chen, Po. C., Mwakwari, S. C., & Oyelere, A. C. (2008). Gold nanoparticles: from nanomedicine to nanosensing. Nanotechnology, Science and Application, 1, 45—66.
  3. Aaron, J., E., de la Rosa, Travis, K.et al. (2008). Polarizition microscopy with stellated gold nanoparticles for robust, in-situ monitoring of biomolecules. Optic Express, Vol. 16, 3, 2153—2167.
  4. Kaplunenko V.G., Kosinov N.V., & Poljakov D.V. (2007). Poluchenie novyh biogennyh i biocidnyh nanomaterialov s pomoshh'ju jerozionno-vzryvnogo dispergirovanija metallov [Production of new biogenic and biocidal nanomaterials by erosional explosive dispersion of metals]. Proceedings from The Nanotechnologies and nanomaterials for biology and medicine: Nauchno-prakticheskih konferencij s mezhdunarodnym uchastiem (11—12 oktiabria 2007 goda) — Scientific and practical conferences with international participation. (pp. 134— 137). Novosibirsk SibUPKju [in Russian].
  5. Kosinov, M. V., & Kaplunenko, V. G. Sposib otrymannja koloi'dnyh metalevyh nanochastynok «Erozijno- vybuhova nanotehnologija otrymannja koloi'dnyh metalevyh nanochastynok» [Method of obtaining of colloidal metal nanoparticles “Erosional explosive nanotechnology of colloidal metal nanoparticles obtaining”]. Patent UA on useful model (2008.01) № 29450./ MPK (2006) V01 J13/00 2008 [in Ukrainian].
  6. Ul'berg, Z. R., Gruzina, T. G., & Karpov ,O. V. (2008). Nanotehnologii' v medycyni: rol' koloi'dno-himichnyh procesiv [Nanotechnology in medicine: the role of colloid-chemical processes]. Visnyk NANU — Herald the National Academy of Sciences of Ukraine, 8, 28—41 [in Ukrainian].
  7. Ushkalov V. O., Machus'kyj O. V., & Kovtun V. A. et al. (2014). Vyvchennja mozhlyvostej vykorystannja nanomaterialiv u biotehnologii' preparativ dlja profilaktyky sybirky tvaryn [Exploring the possibilities of using nanomaterials in biotechnology drug for the prevention of anthrax animals]. Veterynarna medycyna — Veterinary medicine, 98, 192—196 [in Ukrainian].
  8. Roman'ko, M. Je. (2010). Membranotropnyj vplyv nanochastynok Aurumu ta Argentumu na intensyvnist' okysnjuval'nyh procesiv u klitynah Escherichia za umov i'h liofilizacii'/regidratacii' [Membranotropic impact of argentum and gold nanoparticles and intensity of oxidative processes in Echerichia cells under conditions of freeze]. Biologija tvaryn — Animal biology,. Vol. 12, 2, 460-473 [in Ukrainian].
  9. Dybkova, S. M. (2010). Ocinka stanu mikroflory shlunkovo-kyshkovogo traktu ljudyny pry dii' nanochastynok zolota i sribla [Assessment of the microflora of the gastrointestinal tract of humans when exposed nanoparticles of gold and silver]. Visnik problem biology ta medycyny — Journal of biology and medicine issues, 3, 223—227 [in Ukrainian].
  10. Arsent'eva, I. P., Glushhenko, N. N., & Folmanis, G. Je. et al. (2007). Realizacija fiziko-himicheskih svojstv nanochastic metallov pri sozdanii biologicheski aktivnyh preparatov v medicine, biologii i sel'skomhozjajstve [Realization of physical and chemical properties of metal nanoparticles in the creation of biologically active means in medicine, biology and agriculture]. Proceedings from The NANO 2007: II Vserossijskaja konferencija po nanomaterialam — All-Russian Conference on Nanomaterials. Novosibirsk , 323 [in Russian].
  11. Rjeznichenko L. S., Gruzina T. G., Vember V. V., & Ulberg Z. R. (2008). Vplyv metaliv-mikroelementiv na biohimichni pokaznyky bakterij-probiontiv [Effect of metals-microelements on biochemical indices of bacteria- probiont]. Ukr. biohim. zhurn. — The Ukrainian Biochemical Journal, Vol. 80, 1, 91—101 [in Ukrainian].
  12. Trachtenberg, I.M., Ulberg, Z.R., Chekman, I.S. et al. (2013). Ocinka bezpeki likarskich nanopreparativ [Safety assessment of drugs nanopreparation]. Guidelines. Kyi’v [in Ukrainian].
  13. Trahtenberg I M., Dmytruha N. M., & Apyhtina O. L. (2011). Pytannja bezpeky vyrobnyctva ta zastosuvannja nanomaterialiv [Security issues production and use of nanomaterials] Proceedings from The Ethics and nanotechnology nanosafety ’11: Mizhnarodnii seminar (13 zhovtnia 2011 roku) — International seminar. (pp. 57-58). Kyi'v [in Ukrainian].
  14. Dybkova, S.M., Gruzina, T.G., & Ulberg, Z.R. et al. (2010). Ocinka bezpeki nanomaterialiv organichnoi ta neorganichnoi prirody metodom vyznachenna genotoksychnosti lujnim gel-electroforezom izoluovanich eukariotychnych clityn [Biosafety assessment of nanomaterials of organic and inorganic nature by definition of genotoxicity using alkaline gel electrophoresis of isolated eukaryotic cells]. Guidelines. Kyi’v [in Ukrainian].
  15. Dybkova, S.M., Rieznichenko, L.S., & Gruzina, T.G. et al. (2011). Ocinka mutagennosti nanomaterialiv [Assessment of nanomarerials’ mutagenicity]. Guidelines. Kyi’v [in Ukrainian].
  16. Imunologichni metody doslidzhen' u laboratorijah veterynarnoi' medycyny Metodychni rekomendacii' [Immunological research methods in laboratories of veterinary medicine]. (1997). Manual. Bila Cerkva [in Ukrainian].
  17. Gorbatjuk O. I., Ryzhenko G. F., Zhovnir O. M., Andrijashhuk V. O., Tjutjun S. M., & Uhovs'ka T. M. (2016). Vyvchennja mozhlyvostej zastosuvannja nanorozmirnogo sribla v biotehnologii' vygotovlennja suchasnyh profilaktychnyh zasobiv [Learning opportunities for application of nanosized silver in modern biotechnology manufacturing facilities care]. Naukovo-tehnichnyj bjuleten' derzhavnogo naukovo-doslidnogo kontrol'nogo instytutu veterynarnyh preparativ ta kormovyh dobavok i instytutu biologii' tvaryn. — Scientific and technical bulletin State Research Institute for Veterinary Medicines and Feed Additives and Animal Biology Institute, Vol.17, 1, 112—117 [in Ukrainian].