PHARMACOLOGICAL GROUNDS FOR THE SELECTION OF ACTIVE PHARMACEUTICAL INGREDIENTS FOR THE LOCAL TREATMENT OF BURNS ON THE ASEPTIC BURN WOUNDS MODEL IN RATS

Authors

  • B. V. Vons I. HORBACHEVSKY TERNOPIL STATE MEDICAL UNIVERSITY
  • T. A. Grochovuy I. HORBACHEVSKY TERNOPIL STATE MEDICAL UNIVERSITY

DOI:

https://doi.org/10.11603/mcch.2410-681X.2019.v0.i1.9831

Keywords:

active pharmaceutical ingredient, local treatment of burn, semisolid dosage forms

Abstract

Introduction. Wounds – tissue damage caused by the effect of high temperature, chemicals (acids, alkalis, salts of heavy metals), electric current, solar and X-rays, as well as some medications. The problem of treatment of burn wounds in Ukraine and around the world is relevant for today. The share of burns ranges from 5.6 % to 10 %, and it ranks third place in the structure of general injuries. In Ukraine, 80 000 cases of burn wounds are registered annually, of which children account for 10 %, in 2017, from burns in Ukraine were injured 7 605 children. Therefore, the creation of a new group of original domestic medical products that would stimulate regenerative skin processes and improve the healing of burn wounds are relevant today.

The aim of the study – to learn the therapeutic efficacy of selected active pharmaceutical ingredients with burn injury.

Research Methods. The research was conducted on Wistar rats of both sexes. Thermal burns, degree II according to the clinical classification, reproduced on the shaved area of the back in aseptic conditions, under thiopental anesthesia.

Screening of selected samples with different active pharmaceutical ingredients of chemical, natural and biological material conducted to create a semisolid drug for the local treatment burns.

Results and Discussion. The result of biological research on the model of a superficial burn wound, a high wound healing activity of a mild formulation based on aqueous extraction with a cryoliophilized xenoderm of porcine skin was established. The healing process lasts an average of 17 days. This active pharmaceutical ingredient contributed a reduction of treatment burn wounds for 4 days compared with a control group and on 2–3 days compared with other substances subject to experimental study.

Conclusion. The efficiency of the use of biological material, namely, the cryoliophilized xenoderm of porcine skin as an active pharmaceutical ingredient for the local treatment of burns, was proved.

References

Kaushik, P., Sharma, S., Rana, A., Kaushik, D., & Kamboj, S. (2013). Burn wound: Pathophysiology and its management by herbal plants. Chronicles of Young Scientists, 4 (2), 86. doi: 10.4103/2229-5186.115537.

Burn incidence and treatment in the United States: 2012 fact sheet. American Burn Association. – Retrieved from: http://www.elanix.ch/images/PDFs/Burn_Incidence_and_Treatment_in_the_United_States.pdf.

Bihuniak, V.V., & Foldin, M.Yu. (2004). Termichni urazhennia [Thermal injuries]. Ternopil: Ukrmedknyha [in Ukrainian].

Vons, B.V., Chubka, M.B., & Hroshovyi, T.A. (2018). Problema likuvannia opikovykh travm i kharakterystyka likarskykh zasobiv dlia mistsevoho likuvannia opikiv [The problem of treatment of burns' wounds and characteristic of drugs for the local treatment of burns]. Aktualni pytannia farmatsevtychnoi i medychnoi nauky i praktyky – Actual Questions of Pharmaceutical and Medical Science and Practice, 11, 1 (26), 119-125. DOI: https://doi.org/10.14739/2409-2932.2018.1.123731 [in Ukrainian].

Vons, B., Hroshovyi, T., & Chubka, М. (2016). Comparative study of markets of Ukraine, Poland and Russia on registered medications for local treatment of burns. Pharmaceutical Review, 1. Retrieved from: https://doi.org/10.11603/2312-0967.2016.1.6055

Ministry of Health of Ukraine. Normatyvno-dyrektyvni dokumenty MOZ Ukrainy [Normative-policy documents of the Ministry of Health of Ukraine]. Retrieved from: http://mozdocs.kiev.ua [in Ukrainian].

Reference book "Compendium" [Dovidnyk “Kompendium”]. Retrieved from http://compendium.com.ua

Yakovleva, L.V., Tkacheva, O.V., Sallub, F.A., Yakovleva, L.V., & Sallub, F.A. (2005). Vyvchennia likuvalnoi dii novoi mazi «Biofloryn” na modeli aseptychnoi opikovoi travmy u shchuriv [Study of the therapeutic effect of the new ointment Bioflurin on the model of aseptic burn injury in rats]. Klinichna farmatsiia – Clinical Pharmacy, 2, 57-61. Retrieved from http://dspace.nuph.edu.ua/handle/123456789/3823 [in Ukrainian].

Yakovleva, L.V., Tkacheva, O.V., Horban, O.M., Yakovleva, L.V., Tkacheva, O.V., & Horban, E.N. (2012). Doslidzhennia efektyvnosti mazi “Biofloryn” na modeli opikovoi travmy u shchuriv [Investigation of the effectiveness of Bioflorin ointment on the model of burn injury in rats]. Klinichna farmatsiia – Clinical Pharmacy, 1, 42-47 [in Ukrainian].

Retrieved from http://dspace.nuph.edu.ua/handle/123456789/2365 [in Ukrainian].

Andreyeva, L.I., Kozhemyakin, L.A., & Kishkun, A.A. (1988). Modifikatsiya metoda opredeleniya perekisey lipidov v teste s tiobarbiturovoy kislotoy [Modification of the method for determining lipid peroxides in a test with thiobarbituric acid]. Laboratornoye delo –Laboratory Case, 11, 41-43 [in Russian].

Korolyuk, M.A., Ivanova, L.I., Mayorova, I.G., & Tokarev, V.Ye., (1988). Metod opredeleniya aktivnosti katalazy [The method of determining the activity of catalase]. Laboratornoye delo –Laboratory Case, 1, 16-19 [in Russian]

Nikolaychik, V.V., Moin, V.M., Kirkovskiy, V.V., Mazur, L.I., Lobacheva, G.A., Bychko, G.N., & Baratashvili, G.G. (1991). Sposob opredeleniya srednikh molekul [Method for determining medium molecules]. Laboratornoye delo –Laboratory Case, 10, 13-18 [in Russian].

Published

2019-04-12

How to Cite

Vons, B. V., & Grochovuy, T. A. (2019). PHARMACOLOGICAL GROUNDS FOR THE SELECTION OF ACTIVE PHARMACEUTICAL INGREDIENTS FOR THE LOCAL TREATMENT OF BURNS ON THE ASEPTIC BURN WOUNDS MODEL IN RATS. Medical and Clinical Chemistry, (1), 55–62. https://doi.org/10.11603/mcch.2410-681X.2019.v0.i1.9831

Issue

Section

ORIGINAL INVESTIGATIONS