INFLUENCE OF SPEED, TIME OF HOMOGENIZATION, TYPE OF SURFACE ACTIVE SUBSTANCE ON THE SIZE OF PENTOXYPHILLINE NANOPARTICLES BASED ON POLY-DL-LAKTIDE-CO-GLICOLIDE

Nanopharmacology is a set of methods and techniques used in the creation, study, production and use of nanostructures (size about 1–700 nm) with new chemical, physical, and biological properties. For a long time pharmacologists have been working on molecular, and sometimes even on a submolecular lev...

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Main Authors: T. V. Timchenko, A. V. Blinov, A. V. Serov, L. I. Shcherbakova, V. A. Kompantsev, O. M. Мarkova, A. I. Medvetskiy, A. Y. Platonova
Format: Article
Language:Russian
Published: Pyatigorsk Medical and Pharmaceutical Institute - branch of Volgograd State Medical University 2017-07-01
Series:Farmaciâ i Farmakologiâ (Pâtigorsk)
Subjects:
Online Access:https://www.pharmpharm.ru/jour/article/view/247
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spelling doaj-ac8099de32174cdfb2e682ec86c826cd2021-07-29T08:07:37ZrusPyatigorsk Medical and Pharmaceutical Institute - branch of Volgograd State Medical University Farmaciâ i Farmakologiâ (Pâtigorsk)2307-92662413-22412017-07-015217719410.19163/2307-9266-2017-5-2-177-194230INFLUENCE OF SPEED, TIME OF HOMOGENIZATION, TYPE OF SURFACE ACTIVE SUBSTANCE ON THE SIZE OF PENTOXYPHILLINE NANOPARTICLES BASED ON POLY-DL-LAKTIDE-CO-GLICOLIDET. V. Timchenko0A. V. Blinov1A. V. Serov2L. I. Shcherbakova3V. A. Kompantsev4O. M. Мarkova5A. I. Medvetskiy6A. Y. Platonova7Pyatigorsk Medical and Pharmaceutical Institute – branch of Volgograd State Medical UniversityInstitute of Electric Power Engineering, Electronics and Nanotechnologies FGAOU VO SKFUInstitute of Electric Power Engineering, Electronics and Nanotechnologies FGAOU VO SKFUPyatigorsk Medical and Pharmaceutical Institute – branch of Volgograd State Medical UniversityPyatigorsk Medical and Pharmaceutical Institute – branch of Volgograd State Medical UniversityPyatigorsk Medical and Pharmaceutical Institute – branch of Volgograd State Medical UniversityPyatigorsk Medical and Pharmaceutical Institute – branch of Volgograd State Medical UniversityPyatigorsk Medical and Pharmaceutical Institute – branch of Volgograd State Medical UniversityNanopharmacology is a set of methods and techniques used in the creation, study, production and use of nanostructures (size about 1–700 nm) with new chemical, physical, and biological properties. For a long time pharmacologists have been working on molecular, and sometimes even on a submolecular level for synthesizing new drugs and explaining their mechanism of action. Thanks to this, the interest of pharmacology in nanotechnology is connected with new ways of obtaining and using medicines. One way of obtaining new forms of drugs is the synthesis of nanoparticles, since they allow the active substance to overcome the protective barriers of the body such as, for example, the immune system. Due to the fact that the surface of nanoparticles (nanocapsules) is multilayered, their resistance to the action of the protective mechanisms of the body increases, which allows the drug to retain the activity of the pharmacological action, as well as its structure for a longer time. The possibility of penetration through biological barriers, tissue-specificity, rate of drug release depends largely on the size and surface properties of nanoparticles.The aim of our study was to study the influence of such important factors as time, homogenization rate and the type of surface active substance, on the size of the obtained nanoparticles of pentoxifylline based on poly-DL-lactide-co-glycolide (PLGA).Materials and methods. The research was carried out using the information retrieval database (PubMed), as well as the results of our own research.Results and discussion. It has been found that the dispersion phase of the sample, in which polyvinyl alcohol was used as the surfactant, had the smallest size, particularly, the average hydrodynamic radius of the particles amounted to 175.4 nm. The influence of the speed and time of homogenization on the size of nano particles of pentoxifylline based on PLGA was experimentally proved. Also, microphotographs of nanoparticles of pentoxifylline based on poly-DL-lactide-coglycolide (PLGA) are presented.Conclusion.Our studies prove the effect of the speed and time of homogenization, as well as the type of surfactant, on the size of nanoparticles of pentoxifylline based on poly-DL-lactide-co-glycolide. As a result of the studies, the procedure for obtaining nanoparticles of pentoxifylline was adjusted.https://www.pharmpharm.ru/jour/article/view/247nanopharmacologynanoparticlesnanoparticle sizepentoxifyllinepolydl-lactide-co-glycolidepreparation conditions
collection DOAJ
language Russian
format Article
sources DOAJ
author T. V. Timchenko
A. V. Blinov
A. V. Serov
L. I. Shcherbakova
V. A. Kompantsev
O. M. Мarkova
A. I. Medvetskiy
A. Y. Platonova
spellingShingle T. V. Timchenko
A. V. Blinov
A. V. Serov
L. I. Shcherbakova
V. A. Kompantsev
O. M. Мarkova
A. I. Medvetskiy
A. Y. Platonova
INFLUENCE OF SPEED, TIME OF HOMOGENIZATION, TYPE OF SURFACE ACTIVE SUBSTANCE ON THE SIZE OF PENTOXYPHILLINE NANOPARTICLES BASED ON POLY-DL-LAKTIDE-CO-GLICOLIDE
Farmaciâ i Farmakologiâ (Pâtigorsk)
nanopharmacology
nanoparticles
nanoparticle size
pentoxifylline
polydl-lactide-co-glycolide
preparation conditions
author_facet T. V. Timchenko
A. V. Blinov
A. V. Serov
L. I. Shcherbakova
V. A. Kompantsev
O. M. Мarkova
A. I. Medvetskiy
A. Y. Platonova
author_sort T. V. Timchenko
title INFLUENCE OF SPEED, TIME OF HOMOGENIZATION, TYPE OF SURFACE ACTIVE SUBSTANCE ON THE SIZE OF PENTOXYPHILLINE NANOPARTICLES BASED ON POLY-DL-LAKTIDE-CO-GLICOLIDE
title_short INFLUENCE OF SPEED, TIME OF HOMOGENIZATION, TYPE OF SURFACE ACTIVE SUBSTANCE ON THE SIZE OF PENTOXYPHILLINE NANOPARTICLES BASED ON POLY-DL-LAKTIDE-CO-GLICOLIDE
title_full INFLUENCE OF SPEED, TIME OF HOMOGENIZATION, TYPE OF SURFACE ACTIVE SUBSTANCE ON THE SIZE OF PENTOXYPHILLINE NANOPARTICLES BASED ON POLY-DL-LAKTIDE-CO-GLICOLIDE
title_fullStr INFLUENCE OF SPEED, TIME OF HOMOGENIZATION, TYPE OF SURFACE ACTIVE SUBSTANCE ON THE SIZE OF PENTOXYPHILLINE NANOPARTICLES BASED ON POLY-DL-LAKTIDE-CO-GLICOLIDE
title_full_unstemmed INFLUENCE OF SPEED, TIME OF HOMOGENIZATION, TYPE OF SURFACE ACTIVE SUBSTANCE ON THE SIZE OF PENTOXYPHILLINE NANOPARTICLES BASED ON POLY-DL-LAKTIDE-CO-GLICOLIDE
title_sort influence of speed, time of homogenization, type of surface active substance on the size of pentoxyphilline nanoparticles based on poly-dl-laktide-co-glicolide
publisher Pyatigorsk Medical and Pharmaceutical Institute - branch of Volgograd State Medical University
series Farmaciâ i Farmakologiâ (Pâtigorsk)
issn 2307-9266
2413-2241
publishDate 2017-07-01
description Nanopharmacology is a set of methods and techniques used in the creation, study, production and use of nanostructures (size about 1–700 nm) with new chemical, physical, and biological properties. For a long time pharmacologists have been working on molecular, and sometimes even on a submolecular level for synthesizing new drugs and explaining their mechanism of action. Thanks to this, the interest of pharmacology in nanotechnology is connected with new ways of obtaining and using medicines. One way of obtaining new forms of drugs is the synthesis of nanoparticles, since they allow the active substance to overcome the protective barriers of the body such as, for example, the immune system. Due to the fact that the surface of nanoparticles (nanocapsules) is multilayered, their resistance to the action of the protective mechanisms of the body increases, which allows the drug to retain the activity of the pharmacological action, as well as its structure for a longer time. The possibility of penetration through biological barriers, tissue-specificity, rate of drug release depends largely on the size and surface properties of nanoparticles.The aim of our study was to study the influence of such important factors as time, homogenization rate and the type of surface active substance, on the size of the obtained nanoparticles of pentoxifylline based on poly-DL-lactide-co-glycolide (PLGA).Materials and methods. The research was carried out using the information retrieval database (PubMed), as well as the results of our own research.Results and discussion. It has been found that the dispersion phase of the sample, in which polyvinyl alcohol was used as the surfactant, had the smallest size, particularly, the average hydrodynamic radius of the particles amounted to 175.4 nm. The influence of the speed and time of homogenization on the size of nano particles of pentoxifylline based on PLGA was experimentally proved. Also, microphotographs of nanoparticles of pentoxifylline based on poly-DL-lactide-coglycolide (PLGA) are presented.Conclusion.Our studies prove the effect of the speed and time of homogenization, as well as the type of surfactant, on the size of nanoparticles of pentoxifylline based on poly-DL-lactide-co-glycolide. As a result of the studies, the procedure for obtaining nanoparticles of pentoxifylline was adjusted.
topic nanopharmacology
nanoparticles
nanoparticle size
pentoxifylline
polydl-lactide-co-glycolide
preparation conditions
url https://www.pharmpharm.ru/jour/article/view/247
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