Local treatment of burn wounds in animals using a new nanocomponent ointment

We have developed an ointment preparation consisting of silver and zinc oxide nanoparticles, which form the basis of the nanocomposition. This drug can reduce the healing time of the wound surface due to the inclusion of nanodispersed particles in the composition. Application of nanoparticles allows...

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Main Authors: Fedota Natalia, Gorchakov Eduard, Bagamaev Bagama, Kireev Ivan, Shahova Valeriya, Kolodkin Vladimir
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/61/e3sconf_itese18_01084.pdf
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author Fedota Natalia
Gorchakov Eduard
Bagamaev Bagama
Kireev Ivan
Shahova Valeriya
Kolodkin Vladimir
author_facet Fedota Natalia
Gorchakov Eduard
Bagamaev Bagama
Kireev Ivan
Shahova Valeriya
Kolodkin Vladimir
author_sort Fedota Natalia
collection DOAJ
description We have developed an ointment preparation consisting of silver and zinc oxide nanoparticles, which form the basis of the nanocomposition. This drug can reduce the healing time of the wound surface due to the inclusion of nanodispersed particles in the composition. Application of nanoparticles allows to reduce inflammatory process, to carry out disinfecting treatment of a wound surface from pathogenic microorganisms, and accordingly to create optimum conditions for reparative process. Nanocomposite preparation has many advantages over existing analogues without irritating and allergic effects. Due to the high adsorption capacity, it allows to accelerate the healing process of the damaged surface of the skin. Initial studies were conducted on laboratory rats at the age of 6 months with a close mass that was up to 250 g in accordance with international requirements for the use of laboratory animals. As a result of the experiment, a new ointment preparation based on silver and zinc oxide nanoparticles, which are active components of the nanocomposition, was obtained. The use of these components allowed to accelerate the process of reparative restoration of the skin with full recovery of the studied animals. As shown by the experience, the recovery rate on average accelerated by seven days, compared with similar drugs available on the pharmaceutical market.
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spelling doaj.art-578bd4a5d7724b27ae3e6a395148391f2022-12-21T22:49:50ZengEDP SciencesE3S Web of Conferences2267-12422019-01-011350108410.1051/e3sconf/201913501084e3sconf_itese18_01084Local treatment of burn wounds in animals using a new nanocomponent ointmentFedota Natalia0Gorchakov Eduard1Bagamaev Bagama2Kireev Ivan3Shahova Valeriya4Kolodkin Vladimir5Stavropol State Agrarian UniversityStavropol State Agrarian UniversityStavropol State Agrarian UniversityStavropol State Agrarian UniversityStavropol State Agrarian UniversityDon State Technical UniversityWe have developed an ointment preparation consisting of silver and zinc oxide nanoparticles, which form the basis of the nanocomposition. This drug can reduce the healing time of the wound surface due to the inclusion of nanodispersed particles in the composition. Application of nanoparticles allows to reduce inflammatory process, to carry out disinfecting treatment of a wound surface from pathogenic microorganisms, and accordingly to create optimum conditions for reparative process. Nanocomposite preparation has many advantages over existing analogues without irritating and allergic effects. Due to the high adsorption capacity, it allows to accelerate the healing process of the damaged surface of the skin. Initial studies were conducted on laboratory rats at the age of 6 months with a close mass that was up to 250 g in accordance with international requirements for the use of laboratory animals. As a result of the experiment, a new ointment preparation based on silver and zinc oxide nanoparticles, which are active components of the nanocomposition, was obtained. The use of these components allowed to accelerate the process of reparative restoration of the skin with full recovery of the studied animals. As shown by the experience, the recovery rate on average accelerated by seven days, compared with similar drugs available on the pharmaceutical market.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/61/e3sconf_itese18_01084.pdf
spellingShingle Fedota Natalia
Gorchakov Eduard
Bagamaev Bagama
Kireev Ivan
Shahova Valeriya
Kolodkin Vladimir
Local treatment of burn wounds in animals using a new nanocomponent ointment
E3S Web of Conferences
title Local treatment of burn wounds in animals using a new nanocomponent ointment
title_full Local treatment of burn wounds in animals using a new nanocomponent ointment
title_fullStr Local treatment of burn wounds in animals using a new nanocomponent ointment
title_full_unstemmed Local treatment of burn wounds in animals using a new nanocomponent ointment
title_short Local treatment of burn wounds in animals using a new nanocomponent ointment
title_sort local treatment of burn wounds in animals using a new nanocomponent ointment
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/61/e3sconf_itese18_01084.pdf
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AT bagamaevbagama localtreatmentofburnwoundsinanimalsusinganewnanocomponentointment
AT kireevivan localtreatmentofburnwoundsinanimalsusinganewnanocomponentointment
AT shahovavaleriya localtreatmentofburnwoundsinanimalsusinganewnanocomponentointment
AT kolodkinvladimir localtreatmentofburnwoundsinanimalsusinganewnanocomponentointment