PHARMACOLOGICAL ACTIVITY OF AQUEOUS EXTRACTS OF MULTICOMPONENT PRODUCTS OF NATURAL ORIGIN AND GELS BASED ON THEM

R. V. Krauchanka, S. E. Rzheussky
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Abstract

The purpose of this article was to study pharmacological activity of wax, propolis and oleoresin aqueous extracts and gels based on them obtained in the conditions of the laboratory. Minimum suppressive and minimum bactericidal concentrations of wax, propolis and oleoresin aqueous extracts are obtained by a two-fold dilution method and their combined action with chlorhexidine bigluconate by the “checkerboard method” were studied. Antimicrobial and local anti-inflammatory activity of gels based on them was also studied. It was found that wax and oleoresin aqueous extracts have a weak antimicrobial effect against gram-positive and gram-negative microorganisms. Gels based on propolis and wax have a weak antimicrobial effect in concentration of 5%, gels based on oleoresin have a weak antimicrobial activity in concentration of 1% and an average antimicrobial activity in concentration of 5%. Combinations of aqueous extracts with chlorhexidine bigluconate have neither synergetic nor additive effect, i.e. combination of substances has the same effect on microorganisms as the substances separately. High anti-inflammatory activity of gels based on an aqueous extract of propolis was established.
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天然多组分产物的水萃取物及其凝胶的药理活性
本文研究了在实验室条件下制备的蜡、蜂胶和油树脂水提液及其凝胶的药理活性。用两倍稀释法获得了蜡、蜂胶和油树脂水提物的最小抑菌浓度和最小杀菌浓度,并用棋盘法研究了它们与双酚酸氯己定的联合作用。研究了基于它们的凝胶的抗菌和局部抗炎活性。发现蜡和油树脂水提物对革兰氏阳性和革兰氏阴性微生物的抑菌作用较弱。蜂胶和蜡基凝胶在浓度为5%时抗菌效果较弱,油树脂基凝胶在浓度为1%时抗菌活性较弱,在浓度为5%时抗菌活性平均。水提物与双糖酸氯己定的组合既不具有协同作用,也不具有加和作用,即物质组合对微生物的作用与物质单独组合的作用相同。研究了蜂胶水提物制备的高抗炎活性凝胶。
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PHARMACOLOGICAL ACTIVITY OF AQUEOUS EXTRACTS OF MULTICOMPONENT PRODUCTS OF NATURAL ORIGIN AND GELS BASED ON THEM MULTICOMPONENT MEDICINAL SPECIES AS A SOURCE OF MACRONUTRIENTS MICROSCOPIC ANALYSIS OF ALCEA ROSEA LEAVES COMPARED TO ALTHAEA OFFICINALIS LEAVES DETERMINATION OF SOIL TROPHICITY WITH ELECTROPHYSICAL METHOD. MESSAGE 2. ELECTRODE DESIGN AND THE METHOD OF GEOMETRIC COEFFICIENT CALCULATION FACTORS EFFECTING PROCAINE HYDROCHLORIDE ELECTROMIGRATION UNDER CONDITIONS OF CAPILLARY ELECTROPHORESIS
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