EFFECT OF SILVER NANOPARTICLES ON THE PHYSICAL AND CHEMICAL PROPERTIES OF PLANT OILS AND THEIR ANTIMICROBIAL ACTIVITY
The aim of our research was to investigate the influence of silver nanoparticles on the physical and chemical features of plant oils of dogrose, flax, cedar, amaranth and watermelon and their antimicrobial activity. Plant oils were saturated with silver nanoparticles using electron-beam technology f...
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National Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine.
2017-12-01
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doaj-1130744cac7a44ae93e64b44a14f02c92020-11-24T22:50:32ZengNational Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine.Biotechnologia Acta2410-77512410-776X2017-12-01106354410.15407/biotech10.06.035EFFECT OF SILVER NANOPARTICLES ON THE PHYSICAL AND CHEMICAL PROPERTIES OF PLANT OILS AND THEIR ANTIMICROBIAL ACTIVITYV. M. Minarchenko0 R. V. Kutsyk1N. P. Kovalska2B. O. Movchan3O. V. Hornostai,4O. M. Strumenska5L. M. Makhynia6Bogomolets National Medical University, Kyiv Ivano-Frankivsk National Medical University, UkraineBogomolets National Medical University, Kyiv State Enterprise «International Center for Electron Beam Technology» of the National Academy of Sciences of Ukraine, KyivState Enterprise «International Center for Electron Beam Technology» of the National Academy of Sciences of Ukraine, KyivBogomolets National Medical University, Kyiv Bogomolets National Medical University, Kyiv The aim of our research was to investigate the influence of silver nanoparticles on the physical and chemical features of plant oils of dogrose, flax, cedar, amaranth and watermelon and their antimicrobial activity. Plant oils were saturated with silver nanoparticles using electron-beam technology for depositing a molecular stream of metal in a vacuum. To characterize the rancidity of plant oils, the acid, iodine, peroxide, ester and saponification values were determined. A sharp drop in the iodine number and an increase in the peroxide number in oils saturated with silver nanoparticles were observed, as compared to pure oils, indicating a decrease in the number of unsaturated bonds in fatty acids and the formation of peroxides in oils. All pure plant oils and a separate sample of silver nanoparticles suppressed the growth of only E. faecalis colonies. Plant oils that were saturated with silver nanoparticles delayed the growth of S. aureus, S. epidermidis, E. faecalis, E. coli, P. aeruginosa, and C. albicans; the greatest delay in the growth of colonies was caused by flaxseed oil. Thus, the features of the plant oils under study essentially changed after they are aturated with silver nanoparticles. It can be assumed that the metal acted as a catalyst for peroxide oxidation of lipids in the investigated plant oil samples, the products of which caused toxic effects on cultures of bacteria and fungi in the experiment.http://biotechnology.kiev.ua/images/storage/6_2017/minarchenko_6_2017.pdfplant oils of dogroseflaxcedaramaranthwatermelonnanosilverphysical and chemical features of antimicrobial activity. |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
V. M. Minarchenko R. V. Kutsyk N. P. Kovalska B. O. Movchan O. V. Hornostai, O. M. Strumenska L. M. Makhynia |
spellingShingle |
V. M. Minarchenko R. V. Kutsyk N. P. Kovalska B. O. Movchan O. V. Hornostai, O. M. Strumenska L. M. Makhynia EFFECT OF SILVER NANOPARTICLES ON THE PHYSICAL AND CHEMICAL PROPERTIES OF PLANT OILS AND THEIR ANTIMICROBIAL ACTIVITY Biotechnologia Acta plant oils of dogrose flax cedar amaranth watermelon nanosilver physical and chemical features of antimicrobial activity. |
author_facet |
V. M. Minarchenko R. V. Kutsyk N. P. Kovalska B. O. Movchan O. V. Hornostai, O. M. Strumenska L. M. Makhynia |
author_sort |
V. M. Minarchenko |
title |
EFFECT OF SILVER NANOPARTICLES ON THE PHYSICAL AND CHEMICAL PROPERTIES OF PLANT OILS AND THEIR ANTIMICROBIAL ACTIVITY |
title_short |
EFFECT OF SILVER NANOPARTICLES ON THE PHYSICAL AND CHEMICAL PROPERTIES OF PLANT OILS AND THEIR ANTIMICROBIAL ACTIVITY |
title_full |
EFFECT OF SILVER NANOPARTICLES ON THE PHYSICAL AND CHEMICAL PROPERTIES OF PLANT OILS AND THEIR ANTIMICROBIAL ACTIVITY |
title_fullStr |
EFFECT OF SILVER NANOPARTICLES ON THE PHYSICAL AND CHEMICAL PROPERTIES OF PLANT OILS AND THEIR ANTIMICROBIAL ACTIVITY |
title_full_unstemmed |
EFFECT OF SILVER NANOPARTICLES ON THE PHYSICAL AND CHEMICAL PROPERTIES OF PLANT OILS AND THEIR ANTIMICROBIAL ACTIVITY |
title_sort |
effect of silver nanoparticles on the physical and chemical properties of plant oils and their antimicrobial activity |
publisher |
National Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine. |
series |
Biotechnologia Acta |
issn |
2410-7751 2410-776X |
publishDate |
2017-12-01 |
description |
The aim of our research was to investigate the influence of silver nanoparticles on the physical and chemical features of plant oils of dogrose, flax, cedar, amaranth and watermelon and their antimicrobial activity. Plant oils were saturated with silver nanoparticles using electron-beam technology for depositing a molecular stream of metal in a vacuum. To characterize the rancidity of plant oils, the acid, iodine, peroxide, ester and saponification values were determined. A sharp drop in the iodine number and an increase in the peroxide number in oils saturated with silver nanoparticles were observed, as compared to pure oils, indicating a decrease in the number of unsaturated bonds in fatty acids and the formation of peroxides in oils. All pure plant oils and a separate sample of silver nanoparticles suppressed the growth of only E. faecalis colonies. Plant oils that were saturated with silver nanoparticles delayed the growth of S. aureus, S. epidermidis, E. faecalis, E. coli, P. aeruginosa, and C. albicans; the greatest delay in the growth of colonies was caused by flaxseed oil.
Thus, the features of the plant oils under study essentially changed after they are aturated with silver nanoparticles. It can be assumed that the metal acted as a catalyst for peroxide oxidation of lipids in the investigated plant oil samples, the products of which caused toxic effects on cultures of bacteria and fungi in the experiment. |
topic |
plant oils of dogrose flax cedar amaranth watermelon nanosilver physical and chemical features of antimicrobial activity. |
url |
http://biotechnology.kiev.ua/images/storage/6_2017/minarchenko_6_2017.pdf |
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