초록
본 연구는 마늘속에 alliin을 크로마토그래피에 의하여 함량을 알고 이들이 에탄올추출물에 향균효과를 알아보기 위하여 연구했다. HPLC를 이용하기 위하여 메탄올로 Alliin을 추출하고 유해세균에 대한 향균활성을 알아보기 위하여 Alliin을 에탄을 추출물 시료를 조제하여 사용하였다. 마늘에는 alliin의 함량은 0.34 ∼0.73% fresh weight를 나타내고 에탄을 추출물의 시료에서 동결건조 시료수율이 가장 높았는데 이는 효소적 분해가 최소화되는 것으로 사료되며 에탄을 추출물의 향균효과는 Table 3에서 각 균주에 대하여 억제효과는 각 균주에서 50∼80% 효과를 보았고, 각종 균에 대한 억제차원에서 향균성을 달리하는 것을 알 수 있었으며 유해세균에 대한 향균작용이 마늘 추출물은 미생물의 발육저지력이 강하고 지속적으로 인체에 무해하므로 보존료 개발이 바람직함을 알았고, 독특한 향미를 주는 황화합물이 많아 산도의 증가와 관계없이 항균력이 강함을 보았고, 각종 균에 대한 항균성을 달리 하는 것을 알 수 있었다. 이로 인해 마늘성분중 선택적인 항균물질의 개발이 요구됨을 알았다.
First. the purification and analysis of alliin in garlic from different origins by alliin-HPLC determination method were studied. Allinase in garlic was inactivated by heating in boiling water followed by extraction of alliin in garlic with 80% methanol. To remove free amino acids and alliin homologs in garlic, garlic extract was separated by cation exchange column which was packed with amberlite CG-120 resin using 40L d-water as eluent. Alliin in garlic extract was crystallized in a mixture of acetone (50$^{\circ}C$):H$_2$O:acetic acid=70:29:1 and then recrystallized in a mixture of acetone (50$^{\circ}C$):H$_2$O:acetic acid=75:24:1. Obtained alliin was identified by melting point. TLC, microscope observation and mass spectrometry. High performance liquid chromatography (HPLC) following pre-column derivatization of cystein derivatives with o-phthaldialdehyde/2-mercaptoethanol has succeessfully been applied to the analysis of various garlics. Each alliic of standard solution and garlic extract was derivatized to isoindole derivative by o-phthaldialdehyde /2-mercaptoethanol and then analyzed by HPLC. Six point calibration was done by using alliin peak area. Lineality was observed at 0 ∼ 1.0mg/ml of alliin concentration. Weighted regression line function was Y=6254X - 256077. By this function, alliin contents in various garlics were 0.34 ∼ 0.73% fresh weight. Second study was designed to evaluate the effects of garlic extracts of various concentrations on the growth of various pathogenes (Eubacterium limonsum, Bacteroides fragilis, Salmonella typhimurium, Salmonella typhi, Shigella sonnei, Kiebsiella pneumoniae, Enterobacter cloacae, Pserdomonas aeruginosa, Escherichia coli). For antimicrobial effects against microorganism, totally minimal inhibition concentrations (MIC) of alliin were from 5,000 to 20,000ppm. MIC of ethanol extract were 1,250 to 10,000ppm.