枸杞植物化学分析及对口腔微生物的体外抗菌活性研究。

Andrés M Rojas, Clara J Durango, Solanlly E García, Diego Castañeda-Peláez, Dabeiba A García, Fredy Gamboa
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引用次数: 0

摘要

口腔感染具有广泛的微生物病原学特征,根据口腔中的每个微环境而变化。这种感染通常需要抗菌素治疗,这可能导致耐药性的发展。因此,有必要寻找基于天然植物衍生化合物的新治疗策略。本研究的目的是测定精心桃叶和茎提取物及其提取物提取物的植物化学核及其对变形链球菌ATCC 25175、金黄色葡萄球菌ATCC 35548、大肠杆菌ATCC 25922、粪肠球菌ATCC 19433和白色念珠菌ATCC 10231的抑菌作用。植物材料是从海拔1500米的Quindío植物园(calarc, Quindío-Colombia)收集的。采用渗透萃取法,获得了香芹叶、茎的水醇提取物和水醇叶提取物的部分。用薄层色谱法对植物化学核进行了鉴定。采用孔扩散法在muller - hinton琼脂上对5种ATCC参比菌进行抑菌活性测定,并对浓度分别为2、5、10、20和40 mg / ml的提取物和组分进行抑菌活性测定。叶提取物对大肠杆菌无抑菌活性,但对变形链球菌、金黄色葡萄球菌、粪球菌和白色念珠菌均有抑菌活性,浓度为10 mg/ml,抑菌区为9 ~ 11 mm。在10 mg/ml浓度下,黄芪叶提取物的乙酸乙酯和丙酮部位的抑菌活性最强。综上所述,(1)香槟榔叶提取物及其乙酸乙酯和丙酮部位对所有微生物的抑菌活性最强;(2)香槟榔叶提取物的植物化学核(乙酸乙酯和丙酮)中含有酚类化合物、单宁、三萜型萜烯和甾体型萜烯,这可能解释了香槟榔叶提取物的抑菌活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Anacardium excelsum phytochemical analysis and in vitro antimicrobial activity against oral cavity microorganisms.

Anacardium excelsum phytochemical analysis and in vitro antimicrobial activity against oral cavity microorganisms.

Anacardium excelsum phytochemical analysis and in vitro antimicrobial activity against oral cavity microorganisms.

Anacardium excelsum phytochemical analysis and in vitro antimicrobial activity against oral cavity microorganisms.

Infections of the oral cavity have a broad microbial etiological profile that varies according to each microenvironment in the mouth. Such infections often require antimicrobial treatment, which can lead to the development of resistance. There is thus a need to find new therapeutic strategies based on natural plant-derived compounds. The aim of this study was to determine the phytochemical nuclei and the antimicrobial effect of Anacardium excelsum leaf and stem extracts, and of fractions derived from the leaf extract, against Streptococcus mutans ATCC 25175, Staphylococcus aureus ATCC 35548, Escherichia coli ATCC 25922, Enterococcus faecalis ATCC 19433 and Candida albicans ATCC 10231. The plant material was collected from the Quindío Botanical Garden (Calarcá, Quindío-Colombia), located at an altitude of 1500 meters above sea level. Hydroalcoholic extracts of A. excelsum leaves and stems, and fractions of the hydroalcoholic leaf extract, were obtained by percolation extraction. Phytochemical nuclei were identified by thin layer chromatography. The antimicrobial activity of the extracts and fractions (at concentrations of 2, 5, 10, 20 and 40 mg / ml) against the five ATCC reference strains was evaluated using the well diffusion technique on Mueller-Hinton agar. The leaf extract showed no antimicrobial activity against E. coli, but it did show antimicrobial activity against S. mutans, S. aureus, E. faecalis and C. albicans, at a concentration of 10 mg/ml, with zones of inhibition of 9 to 11 mm. The ethyl acetate and acetone fractions obtained from A. excelsum leaf extract had greatest antimicrobial activity at 10 mg/ml. In conclusion, (1) the A. excelsum leaf extract, and the ethyl acetate and acetone fractions obtained from the leaf extract, had the greatest antimicrobial activity on all the study microorganisms, and (2) the phytochemical nuclei in the fractions (ethyl acetate and acetone) were found to contain phenolic-type compounds, tannins, triterpene-type terpenes and steroidal-type terpenes, which might explain the antimicrobial activity observed.

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